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infiniDome Signs Contract with a European Customer for its Anti-Jamming Solutions

Tel Aviv: The heavy use of GPS denial in Ukraine and in the war between Israel and Hezbollah, the Iranian proxy in Lebanon, has increased the demand for protection systems that enable GPS navigation systems to operate without any disturbance.

Israeli company infiniDome has recently signed another contract with a European customer and according to Noam Turgeman, marketing specialist, the interest is growing in many countries.
“All solutions are fully retrofit, making them ideal for protecting almost any platform, without the need for major modifications in the platforms,” the company official stated.

Meet Our New Generation of Anti Jamming, GPSdome-SunStone.

We are thrilled to launch our new resilience navigation solution, GPSdome-SunStone.

This groundbreaking solution offers the most advanced anti jamming technology available to date, optimized to face the most current threats in the battlefield today and field upgradeable to meet future threats tomorrow.

infiniDome Secures Major Deal in Western Europe

Third Purchase by Key Western European Customer Underscores the Critical Need for infiniDome’s GPS Protection Amid Rising Global Threats.

infiniDome, a leading provider of GNSS protection and resilient navigation solutions, announces a significant new deal with a key customer in Western Europe. This marks the third purchase from this esteemed customer, emphasizing the growing trust and demand for infiniDome’s advanced technology. The deal includes more than 1,000 units, reinforcing infiniDome’s position as a global leader in navigation protection. This milestone follows infiniDome’s recent announcement of battle-proven capabilities demonstrated during the conflicts in Israel and Ukraine, where GPS electronic warfare attacks were and are a significant and growing threat.

infiniDome showcases battlefield-proven GPS protection & resilience – By Satnews

infiniDome has recently experienced a significant increase in demand, mainly due to the issue that has escalated over the past two years — GNSS interferences has become a critical concern in conflict zones, such as Israel, Ukraine, and many parts of Europe.

 

The company’s extensive experience on the battlefield, particularly in recent conflicts in Israel and Europe, has positioned infiniDome’s products as trusted and reliable navigation resiliency solutions defending UAVs and other platforms.

Infini Dome’s newest solution — GPSdome2 — is officially recognized for its battlefield readiness and offers flexible GNSS protection of two bands (L1/E1+L2 or L1 + G1 or L1/E1 + L5) from as many as three directions of simultaneous jamming, all in a small box. The unit is C-SWaP (Cost, Size, Weight, and Power) optimized and fully retrofit, making it ideal for protecting almost any platform, even small Class II UAVs, without the need for major modifications.

How To Enable Critical UAV Operations in a GPS-contested World?

The landscape of Electronic Warfare has changed, find out about the challenges and the solutions of protecting navigation capabilities.

A lecture by infiniDome’s CEO, Omer Sharar, in the Unmanned Aerial Vehicle conference in Jerusalm, July 1. 

Birthday (3) (1)

מפרוץ המלחמה: כ-6000 רחפנים התרסקו עקב שיבושי GPS

הפתרון הטכנולוגי לבעיית שיבושי ה-GPS עליו מדברת אטיאס, הוא של חברת אינפינידום (infiniDome) מקיסריה. החברה פיתחה יחד עם חברת הענק האמריקנית, האניוול – משקיעה ושותפה באינפינידום – מערכת הגנה רב שכבתית על כטב”מים ורחפנים, מפני שיבושי GPS.

ישראל היום

הסוף לשיבושי ה-GPS: הישג טכנולוגי ישראלי בצפון

במסגרת ניסוי שנערך ליד בית החולים זיו שבצפת, הודגם פתרון טכנולוגי המאפשר לרחפנים להמשיך לטוס כמתוכנן גם תחת מעטה כבד של שיבושי GPS • השיבושים, שכבר הפכו לשגרה, הם מטרד גדול עבור תושבי הצפון במיוחד, אך נחוצים בעתות מלחמה.

רחפנים וכטב”מים מסתמכים על אותות GPS לווייניים כדי לדעת את מיקומם ולנוע מנקודה לנקודה. ואולם, בשל גובהם הרב של הלוויינים, אותות ה-GPS המתקבלים מהם הינם חלשים מאוד. באמצעות שימוש במערכת שיבוש (spoofing) המציפה את האזור בגלי רדיו חזקים מאוד, אותות ה-GPS עוברים מיסוך וגורמים למערכת הניווט לטעות בחישוב המיקום, מה שבתורו מפריע לרחפנים לבצע את עבודתם.

לפני כשבוע, במסגרת ניסוי שנערך ליד בית החולים זיו שבצפת, אזור אשר רוויי בימים אלה בשיבושי GPS חזקים מאוד, הודגם פתרון טכנולוגי המאפשר לרחפנים להמשיך לטוס כמתוכנן גם תחת מעטה כבד של שיבושי GPS, בשיתוף שתי חברות ישראליות: חברת הרחפנים דאון ווינד (Down Wind) וחברת אינפינידום (infiniDome), שפיתחה רכיב אלקטרוני שהודף ניסיונות שיבוש GPS.

הגנה ישראלית

Meet infiniDome New Anti-Jamming Solution – Israel Defense

The GPSdome2 offers GNSS protection of two bands (L1/E1+L2 or L1 + G1 or L1/E1 + L5) from up to three directions of jamming simultaneously all in a small box

InfiniDome, an Israeli company specializing in advanced GNSS technologies and anti-jamming solutions, is presenting its newest anti-jamming solution, the GPSdome2.

According to InfiniDome, the GPSdome2 offers unmatched and flexible GNSS protection for two bands (L1/E1+L2, L1+G1, or L1/E1+L5) from up to three directions of jamming simultaneously, all within a compact unit. It is C-SWaP optimized (Cost, Size, Weight, and Power) and fully retrofittable, making it ideal for protecting almost any platform, including small Class II UAVs, without the need for major modifications.

אינפינידום GPS

Defensive NAVWAR – Article By Defense Update

infiniDome, an Israeli GPS protection specialist company, has introduced GPSDome, which uses two antennae to perform passive ‘null steering’ by attenuating the reception from the direction of the most powerful signal (the jammer). The company developed a proprietary filter to isolate this signal and implemented it into an integrated circuit.
The latest generation, GPSDome2, is a software-defined GNSS-AJ solution that offers a wider frequency range, higher efficiency, and the ability to simultaneously deal with multiple jammers from three directions. GPSDome2 is packed in a small package weighing only 500 gr. That can be installed as a retrofit or in new systems. Under a collaboration with Honeywell, the system has been integrated into Honeywell’s Resilient Navigation System, introduced in 2022 as an aviation-certified navigation system designed to overcome GNSS vulnerabilities. A similar system is under development in South Korea in cooperation with Hanwha, which has also invested in the company. Both are positioned to provide these navigation capabilities for the Autonomous Air Mobility systems. (AAM).

INFINIDOME (1) (1)

Interview By SafetyDetectives With Omer Sharar – Co-Founder & CEO of infiniDome

In a recent SafetyDetectives interview, Omer Sharar, co-founder and CEO of infiniDome, sheds light on the journey behind his company and the motivation that fueled its inception. With a background in Math and Computer Science, coupled with over a decade of experience as a SW Systems Engineer, Sharar unveils the critical role GPS technology plays in synchronizing essential networks. Highlighting a pivotal moment where the vulnerability of GPS systems became apparent, Sharar shares how this revelation spurred the creation of infiniDome, aiming to provide proportional defense solutions for critical applications such as UAVs and autonomous vehicles. Through innovative GPS protection and navigation resilience solutions, infiniDome strives to safeguard against Electronic Warfare attacks and ensure the reliability of navigation systems in today’s evolving battlefield landscape.

A bit about me, my name is Omer Sharar. I’m the co-founder and CEO at infiniDome. I am a Math and Computer Science BSc and MBA graduate, and I worked as a SW Systems Engineer for over 10 years in large and small companies.

My background in the GPS world comes from the critical infrastructure and timing world. GPS is used extensively for synchronizing critical networks (such as power grids, telecom, financial, defense networks), and I planned and deployed GPS-based time servers to sync them. One of my largest customers back then asked me, “How well does your solution cope, or bounce back from being jammed?” That was an eye-opening event for me because I realized that I could buy a GPS jammer for $50 that “kills” a $10,000 GPS-based time server from 100m away.

Looking for existing protection solutions (from great companies like Elbit, IAI, and more) led me to understand that they are almost entirely irrelevant – not only for the protection of time servers but even more so for mobility applications like UAVs and autonomous vehicles. These solutions were irrelevant primarily because of their large size, heavy weight, and above everything – their skyrocketing price. They are great for the protection of fighter jets, helicopters, and $30M UAVs but are not relevant for smaller applications – whether in the defense market or in the commercial\HLS markets.

Year of the Drone and UAV Tech Growth

2024: Year of the Drone and UAV Tech Growth

As we step into 2024, the landscape of unmanned aerial vehicles (UAVs), drones, and autonomous systems is experiencing unprecedented growth. This growth transcends the confines of traditional applications, heralding a new era, wherein the synergy between technological innovation and navigation precision is reshaping
both military strategies, and civilian enterprises.

Military Innovations: Advancing Beyond the Horizon

The defense sector continues pioneering in the deployment of UAVs, leveraging these assets to fortify national security as never before. Enhanced navigation systems, equipped with anti-jamming capabilities and advanced satellite communications, are enabling drones to execute missions with unprecedented accuracy and stealth. These advancements do not just augment military strength but also ensure operational safety in increasingly contested spaces. The evolution of UAVs in warfare highlights a shift towards intelligent and autonomous systems, capable of decisive actions in critical moments.
Defence spending on UAVs has consistently risen, with countries like the United States, China, and Russia leading the charge. The U.S. Department of Defense allocated approximately 9.39 billion USD for drone procurement, research, and development in its 2020 budget, a figure that was expected to increase as UAVs become integral to modern warfare.

Civilian Ventures: Drones for a Better Tomorrow

Beyond the battlefield, the civilian sector is experiencing a renaissance in drone applications, driven by leaps in navigation technology. From agricultural drones improving crop management through precise GPS mapping, to emergency response UAVs navigating challenging terrain to deliver aid, their impact is profound and far-reaching. The surge in e-commerce has also resulted in a significant uptick in the use of delivery drones, promising a future where logistics are redefined by speed and efficiency. These advancements are predicated on robust and reliable navigation systems, ensuring that drones can safely integrate into crowded airspaces and complex urban environments.
The agricultural drone market alone was forecasted to reach 5.19 billion USD by 2025, illustrating the significant impact of drones on precision farming and crop management.

The Sky is Just the Beginning

The exponential growth of UAVs, drones, and autonomous systems in 2024 is a testament to human ingenuity and the relentless pursuit of progress. As we continue to explore the boundless possibilities of these technologies, the significance of advanced navigation capabilities remains ever-present, guiding us towards a future where the sky is not a limit but a vast expanse of opportunities.

 
Infinidome Expands with New US Operations

Infinidome Expands with New US Operations

We’re Happy to Announces Expansion with New Operation in the United States, infiniDome USA.

infiniDome, the leading provider of GPS protection and resilient navigation solutions, proudly announces the further expansion of its operations with the establishment of infiniDome USA, a new subsidiary designed to enhance service to the United States defense industry and market in general.
This strategic move not only underscores infiniDome commitment to provide cutting-edge GPS protection solutions to a growing global clientele but also builds upon its existing presence and success within the U.S. market, where they already serve a significant and expanding customer base.
By establishing infiniDome USA, infiniDome aims to strengthen its relationships with U.S. customers, offering more localized support and ensuring that its innovative GPS protection technologies meet the specific needs and challenges faced by American aerospace and defense sectors.
This initiative reflects infiniDome’s recognition of the importance of the U.S. market to its global strategy and its dedication to securing GPS-reliant systems against increasing threats worldwide.
infiniDome innovative technology ensures the resilience and reliability of critical systems across various sectors including defense, timing systems, aviation, and autonomous vehicles.
“infiniDome establishment of a dedicated operation in the United States is a significant milestone in our mission to defend critical GPS-based systems and vehicles from attacks,” said Omer Sharar, CEO of infiniDome. “infiniDome USA will enable us to better serve our American customers, deliver our state-of-the-art GPS protection solutions more efficiently, and strengthen our partnerships across the U.S. industry and government” said Ben Sandford, president of infiniDome USA.
The decision to expand into the U.S. market reflects infiniDome’s recognition of the critical need for enhanced proportional GPS security measures amidst the growing threats to GPS-dependent technologies. In direct correlation to government and industry projects, calling for small, light, “attritable” drones, protection for such platforms also must be proportional in size, weight, and cost, which are infiniDome’s strengths.
infiniDome invites industry partners, customers, and the media to learn more about infiniDome USA and its advanced GPS protection and nav resiliency solutions at AUVSI Xponential 2024 in San Diego.

Case Study: How Rewind Ensures Accurate Carbon Storage in Anoxic Zones

Background:
Rewind is a marine terrestrial biomass storage company advancing a natural, scalable solution to remove atmospheric CO₂ and mitigate climate change. Their method uses trees to capture CO₂ and convert it to organic carbon, while deep, oxygen-free waters preserve it for geological time scales. This long-term approach not only reduces atmospheric CO₂ but also aligns with natural carbon cycles, offering a sustainable sequestration solution. At Rewind’s Epsilon pilot site, precision navigation is essential for deploying biomass, conducting environmental monitoring, and ensuring regulatory compliance—tasks that require reliable, uninterrupted positioning systems in remote areas with potential GNSS interference.

The Challenge:
Rewind faced persistent GNSS jamming at the Epsilon site, causing frequent navigation disruptions. This interference, from nearby signal jamming sources, led to partial or complete GPS loss. The impact was significant, halting deep-sea data sampling for months until the GPS signal was restored. These disruptions affected both the operational timeline and cost efficiency, with delays impacting resource allocation and project momentum.

The Solution:
To address this, Rewind collaborated with infiniDome to test the GPSDome2 anti-jamming system.
Testing was conducted on two vessels—a small boat and a larger ship—both equipped with the GPSDome2. The smaller vessel set out from Haifa harbor to the Epsilon site, enduring substantial jamming but successfully reacquiring GPS positioning once in a clearer zone. On the larger ship, where GPSDome2 was directly integrated with the vessel’s navigation system, positioning remained stable throughout, even in high-interference areas.

The Result:
The GPSDome2 system effectively maintained GNSS positioning in interference-heavy environments once an initial GPS fix was obtained. In both tests, it held stable data beyond 2.5 km offshore in minimal interference zones. After total signal loss from jamming, GPSDome2 quickly reacquired positioning upon entering a low-interference zone, allowing accurate navigation back to the Epsilon site. Integrating GPSDome2 into the ship’s navigation system provided real-time tracking and minimized operational disruptions, reducing potential economic impacts.
This successful test confirmed GPSDome2 as a reliable anti-jamming solution, enabling Rewind to operate safely and efficiently in interference-prone zones.

Protecting Dual GNSS Receivers

Case Study: Protecting Dual GNSS Receivers

Background:
The Black-Eagle 50 E RUAV was designed for an advanced missions requiring high location precision. Since the beginning of 2023, Israeli airspace has been full of red and blue GNSS interference. These disruptions have only increased during the current conflict between Israel and Hamas. 

Heading data is vital for flight safety and successful completion of SIGINT and other special OPS missions, and can be received by a compass, a magnetometer, or by calculating the difference between 2 onboard GNSS receivers. Applications that calculate the difference between 2 onboard GNSS receivers and wish to ensure optimal performance, require protection of both of the GNSS receivers.

The Challenge:
The lack of reliable heading data due to GNSS signal disruption threatened the safety and completion of flight missions.  

Furthermore, the need to synchronize two distinct GNSS receivers onboard presented a technical difficulty. This synchronization was essential to maintain accurate and repeatable performance, which was critical for precisely calculating the heading (HDG).

The Solution:
To resolve this issue, we integrated the Black-Eagle 50E platforms with two of our GPSdome 1.03 systems with two antennas connected to each; thus ensuring both receivers get stable and precise GNSS signals.
Our team was hands-on throughout the integration process, including antenna placement, conducting on-site EW tests, and providing technical support as needed.

The Result:
The implementation of heading protection allowed the Black-Eagle 50Es to perform missions with enhanced safety and precision. Our customer reported being able to operate in jammed areas, in which they were unable to operate previously due to GNSS interference. 

Our protection systems provided the Black-Eagle 50E the capability to execute missions with greater safety and accuracy.
Since our GPSdome 1.03 C-SWaP solution is light weight, small size and consumes minimum power, it had a minor impact on the Black-Eagle 50E’s endurance and its payload capacity.
The integration was smooth and utilized advanced 3D Printed brackets for mounting, ensuring the basic configuration of the platform remained unaltered.

Aerial Photography Amid GNSS Disruption

Case Study: Aerial Photography Amid GNSS Disruption

Background:
The Oct. 7th conflict between Israel and Hamas poses significant challenges for manned aircraft operations throughout Israel. The disruptions and blockades not only jeopardize flight safety but also ground flights even in non-combat areas, leading to substantial revenue losses for aviation businesses. An Israeli company specializing in aerial photography using Cessna aircrafts, contact infiniDome for a customized solution as they were unable to complete missions for two months, causing a significant drop in revenue.

The Challenge:
Integrating our solutions into a manned Cessna 208B Caravan aircraft, which can fly at speeds of 185 knots and altitudes of 14,000 feet (higher than 4km), presented new challenges compared to tactical drones. This transition required technical adjustments to meet the specific physical and operational needs of a faster, higher-flying, manned platform. We focused on customizing the installation for this unique application, ensuring safety and reliability, without altering the aircraft’s configuration significantly.

The solution:
We integrated the GPSdome2 system with a special antenna plate to ensure optimal deployment on board and to minimize the need for aircraft configuration changes. Our field engineers provided customer support throughout the integration process and during flights, ensuring the best possible support was given. Due to the high altitude, the aircraft was more exposed to jammers, highlighting the necessity of the GPSdome2. This system offers dual-band protection from up to three jamming directions simultaneously for each band.

The results:
The installation of the GPSdome2 system yielded excellent results. Our solution reinstated the company’s ability to fly safely in areas previously inaccessible due to GNSS jamming and interference. This breakthrough restored the aircraft’s operational capabilities. As a result, the company could resume flights and once again complete photography missions, reinvigorating its income.
The successful deployment of the system on manned planes highlights infinidome’s relevance not only to the unmanned craft of the defense industry, but also for the private commercial sector.

Case Study: HIGH-END LOW-COST GNSS Protection for OWM Drones

Background:
Reliable navigation during GNSS disruptions is of paramount importance in an era where the use of unmanned aerial vehicles,specifically Loitering Munitions designed for one-way missions, continues to grow. infiniDome’s innovative GNSS protection system has been seamlessly integrated into printed aerospace drones. The Size, Weight, Power and Cost (SWaP-C) of GPSdome was vital for this
kind of need.

The challenge:
Operating drones in conflict areas requires protection of the vehicle’s navigation system.
UAVs and drones deployed on One-Way Missions (OWM) in conflict areas, cannot afford to incorporate expensive solutions. They need to be as low-cost and lightweight as possible to minimize the impact on their payload capacity.

The Solution:
We conducted a joint integration with the customer in advance of rigorous field trials in Poland. The testing involved two drones: one equipped with the GPSdome 1.03 system and the other vulnerable with no GNSS protection., Both used the same GNSS receiver and navigated through the same jamming area.

The Position Loader is easy to deploy before take-off, and easy to pack and store within the belly of the helicopter, requiring the simplest technical procedures.
As part of the development process, we designed a dedicated flight test unit for the technical team. 

The Results:
The field test in Poland was critical in demonstrating the effectiveness of GPSdome in real flight conditions.
Launched simultaneously into a GNSS jamming area, the two drones provided a stark contrast in operational capability. The GPSdome-equipped UAV navigated the disruption area without significant performance degradation, however the UAV without GPSdome protection lost all SAT signals and auto-landed immediately at the first indication of jamming. The GPSdome ensures better navigation abilities for loitering Munitions even in the most hostile environments.

Fast GNSS for Search and Rescue

Case Study: Fast GNSS for Search and Rescue

Background:
UH-60 Black Hawk Helicopters are multi-mission platforms, used for Search and Rescue, force mobilization, and other crucial tasks.
Since the beginning of the Oct. 7th conflict, these platforms have been in high demand.
While every minute counts, GNSS interference causes takeoff delays and complicates search and rescue operations for those injured on the battlefield.
infiniDome identified the problem and developed a new and innovative product to assist Black Hawk Helicopters by quickly and accurately logging preflight position data, even in the most challenged GNSS environments.

The challenge:
To complete preflight preparations, the helicopters required an initial GPS fix. Under GNSS interference, the location-fix process takes longer, and could even be impossible.
To enable the Black Hawks to takeoff as quickly as possible, we needed to provide externally clear GNSS signals from a “suitcase” style form factor that enabled rapid plug-in and disengagement from the helicopter.

The Solution:
We developed the GPSdome2 Position Loader – an independent unit that can be easily deployed next to the Black Hawk to ensure the reception of GPS signals. The design resulted in a stand-alone system without any power or data connections. 

The Position Loader is easy to deploy before take-off, and easy to pack and store within the belly of the helicopter, requiring the simplest technical procedures.
As part of the development process, we designed a dedicated flight test unit for the technical team. 

The Results:
The GPSdome2 Position Loader significantly reduced the time needed for getting the GPS fix, enabling immediate take-off, thus leading to more efficient rescue operations and many saved lives.
In Search and Rescue missions, time is of the essence. infiniDome  technology ensures that first responders have time on their side.

The Power of Purchasing Locally

The Power of Purchasing Locally

infiniDome is taking a strategic approach to redefine the essence of business operations by emphasising the importance of buying locally and providing localised support. Committed to bolstering the local economy and providing immediate and accessible assistance to our clients, infiniDome USA is leading by example in the waytech firms can thrive while fostering community connections and resilience. Adding to our commitment to support and secure operations within the United States, infiniDome proudly announces its compliance with the National Defense Authorization Act (NDAA), ensuring that our products meet the stringent requirements of national security and defence.

Now It’s Easier

In addition to bolstering the local economy and reinforcing security commitments, buying locally offers the significant advantage of streamlining operations with less bureaucracy and simplifying import processes. When infiniDome sources products and services within the USA, it eliminates the often cumbersome and time-consuming tasks associated with international procurement, such as navigating customs regulations, dealing with import duties, and managing longer lead times.

This allows us to deliver innovative solutions to our clients while enhancing our flexibility, enabling us to respond in real-time to market demands and customer needs. The reduced bureaucratic overhead and avoidance of complex import processes, highlight our commitment to efficiency and customer satisfaction, further emphasising the intrinsic value of local purchasing.

The Impact of Buying Locally 

A pillar of infiniDome USA’s operations is understanding the critical nature of reliable and timely support for our products. This ensures that assistance is only a call or a message away, providing our customers with the peace of mind that stems from knowing help is readily available. Our local support team is comprised of experts who are both familiar with our products and understand the unique challenges and needs of the American market.
This expertise enables us to offer tailored solutions, and swift resolutions to any issues that may arise.

The Advantage of a Local Contact 

Having a local contact in the USA means that infiniDome is directly accessible to our clients, allowing real-time communication and interaction. This close proximity enhances our responsiveness, enabling us to troubleshoot problems and provide efficient consults.
Additionally, the presence of a local contact facilitates deeper relationships with our clients and a better understanding of their operations.
This approach not only improves customer satisfaction, but also allows us to improve our products and services.

NDAA Compliance: A Commitment to Security

infiniDome’s compliance to NDAA standards highlights our commitment to national security, and protection of critical infrastructure. By ensuring that our products and services meet NDAA rigorous standards, we aim to assure our clients that their operations are supported by high-quality technology, while being aligned with national security protocols.  Such compliance is a testament of our dedication to maintaining the highest levels of integrity and reliability in our products and services, further establishing infiniDome as a trusted partner in the defense sectors.

infiniDome USA at AUVSI Xponential

infiniDome USA at AUVSI Xponential 2024 – Meet Us in San Diego!

We are proud to announce our participation in AUVSI Xponential 2024, the largest global gathering of leaders in unmanned systems, robotics, and autonomy.
Join us this April in San Diego, where we’ll showcase our latest Anti-Jamming solutions.

📅 Date: April 22-25
📍 Location: Booth 5111, San Diego Convention Center, San Diego, CA

We are proudly announcing the further expansion of our operations with the establishment of infiniDome USA, a new subsidiary designed to enhance service to the United States defense industry and the commercial sectors.

This strategic move not only highlights infiniDome’s commitment to provide cutting-edge GPS protection solutions to a growing global clientele, but also builds upon its existing success within the U.S. market, in which we currently serve a significant and ever-expanding customer base.

By establishing infiniDome USA, infiniDome aims to strengthen its relationships with U.S. customers, offering more localized support and ensuring that its innovative GPS protection technologies meet the specific needs and challenges faced by American aerospace and defense sectors.

This initiative reflects infiniDome’s recognition of the importance of the U.S. market to its global strategy, and its dedication to securing GPS-reliant systems against increasing threats worldwide.

Discover Our Latest in Anti-Jamming Technology

At Xponential 2024, we invite you to discover our latest innovations in Anti-Jamming solutions. Our team has been hard at work developing technologies that ensure operational continuity and integrity for critical infrastructure, defense, homeland security, and commercial applications.
Visit our booth to experience firsthand how infiniDome leads the wayin safeguarding the future of autonomous and GPS-dependent technologies.

 Schedule a Meeting

Interested in a deep dive into our technology or discussing partnership opportunities? Schedule a meeting with our experts at AUVSI Xponential 2024.

Stay Connected

Don’t miss out on any updates leading up to the event! Follow us on Social Media for real-time announcements, insights, and more from the infiniDome team.

We’re looking forward to meeting you in San Diego and sharing how our innovative solutions are shaping the future of GPS security.

The Rising Threat of GPS Jamming

The Rising Threat of GPS Jamming: Impacts and Solutions

In recent years, GPS jamming has emerged as a significant challenge, affecting not just military operations but also civilian navigation and safety.

This section delves into the latest incidents of GPS jamming, exploring its potential sources and the wide-ranging effects. Discover how industries and governments worldwide are responding to mitigate these threats and to ensure their navigation capabilities.

Navigating the GPS Jammed Battlefield in Conflict Zones

Ukraine: Amid the ongoing conflict with Russia, Ukraine has faced numerous GPS jamming incidents aimed at disrupting the Ukrainian military’s navigation capabilities. These jamming attacks have been reported to affect not only military drones but also civilian communication and navigation systems, illustrating the wide-reaching impact of electronic warfare in the region. The use of jamming techniques has been part of broader hybrid warfare tactics, complicating efforts to maintain situational awareness and coordinate defense operations.

Baltic Countries: In the face of escalating tensions in Eastern Europe, the Baltic countries have witnessed a series of sophisticated GPS jamming incidents, attributed to efforts aimed at undermining regional security and NATO’s operational effectiveness. These countries, strategically positioned at the forefront of NATO’s eastern defense line, have become testbeds for electronic warfare tactics, including disruptive GPS interference. Such incidents have not only challenged military exercises and readiness, but also posed risks to civilian aviation and maritime safety. These risks emphasize the urgent need for advanced countermeasures, including international collaboration, in order to maintain the security of critical navigation systems against the invisible threats of modern warfare.

Israel: Since the Oct. 7 attack, GPS jamming has occurred throughout Israel. The Israeli Defense Forces have acknowledged that these incidents were intentional military operations, attempting to thwart drone and unmanned aircraft attacks planned by Hamas and Hezbollah. Such an approach is aimed at countering threats and maintaining the tactical advantage in a region marked by persistent tensions and conflict.

Military Moves: UAVs Changing the Game

In response to the increasing prevalence of GNSS jamming attacks, militaries around the globe are taking proactive provisions to adapt and enhance their abilities to safeguard military operations while maintaining the strategic advantage. This evolving landscape has seen significant developments, including Ukraine’s bolstered defenses through international solidarity. In a remarkable step, NATO Secretary General Jens Stoltenberg announced that Ukraine will receive one million drones from its allies in 2024, highlighting the crucial role of unmanned systems in modern warfare and reconnaissance missions amidst ongoing conflicts.

Similarly, the United Kingdom has taken decisive steps to fortify its armed forces against sophisticated threats. The UK Ministry of Defence has committed to invest five billion GBP in drones, aiming to significantly expand its UAV fleet. This investment is part of a broader strategy designed to enhance the UK’s defense capabilities and ensure operational superiority in an era wherein electronic and GPS jamming tactics have become increasingly common.

 The intersection of these developments points to a future where the ability to navigate precisely and resist electronic disruptions will be paramount. Therefore, advancing navigation resilience and anti-jamming technologies has never been more crucial. As nations navigate the complexities of contemporary conflicts and strive for superiority in the digital battlefield, the investment in and enhancement of navigation capabilities will undoubtedly play a pivotal role. The path forward is clear: bolstering our navigation systems is not just a matter of technological advancement, but a strategic imperative that underpins the future of global security and defense strategies.

GNSS Satellites

GNSS Satellites: Challenges of Signal Jamming

In the vast expanse of space, a network of satellites orbits our planet, providing the critical data needed for global navigation, these satellites, part of the Global Navigation Satellite System (GNSS), are the unsung heroes behind the precise positioning and timing information that powers everything from the smartphone in your pocket to the unmanned aerial vehicles (UAVs) soaring above.
Understanding how GNSS satellites work and their distinction from other orbital companions is essential in appreciating their role in our daily lives and the challenges they face.

GNSS is a term that encompasses various satellite constellations, including the United States’ GPS, Russia’s GLONASS, the European Union’s Galileo, and China’s BeiDou, These systems operate by sending signals from space to receivers on the ground, allowing devices to calculate their precise location through a process known as trilateration, By measuring the time it takes for the signal from at least four satellites to reach the receiver, GNSS can pinpoint a location anywhere on Earth with remarkable accuracy.
This capability is pivotal for a myriad of applications, from navigation and mapping to timing and disaster response.

What sets GNSS satellites apart from their orbital counterparts is their specific purpose of providing positioning, navigation, and timing (PNT) services on a global scale, while other satellites may be dedicated to communication, weather monitoring, or scientific research, GNSS satellites are uniquely designed and positioned to cover the entire globe, ensuring that PNT services are available to users anywhere, anytime. This universal coverage is critical for the functioning of modern technology and international infrastructure.

Despite their advanced technology and crucial role, GNSS signals are inherently weak by the time they reach the Earth’s surface. This low signal strength makes them susceptible to interference, whether unintentional from sources like radio towers or intentional through jamming devices, jamming attacks involve broadcasting signals at the same frequency as GNSS satellites, overwhelming the receiver with noise and making it impossible to discern the authentic satellite signal. This vulnerability is particularly concerning for operations reliant on precise timing and location.
When UAVs or other unmanned vehicles are jammed, the consequences can be dire, these applications depend heavily on GNSS for navigation and control.
A successful jamming attack can render them unable to maintain their course, leading to loss of control, potential crashes, or failure to complete critical missions such as emergency medical deliveries or search and rescue operations.

The growing awareness of GNSS vulnerabilities has spurred efforts to enhance the resilience of these systems, measures such as anti-jamming technology, the development of alternative PNT solutions, and international cooperation are vital in safeguarding GNSS services.
As we continue to rely more on GNSS for a wide range of applications, ensuring the security and reliability of these satellite signals is paramount.

In conclusion, GNSS satellites play an indispensable role in modern navigation and timing, setting them apart from other types of satellites orbiting our planet, however, their susceptibility to jamming attacks presents a significant challenge, particularly for UAV operations.
As technology advances, the quest to protect and strengthen these critical assets continues, ensuring that GNSS remains a reliable foundation for global navigation and beyond.

GPS Jamming Attacks on Unmanned Systems

The Consequences of GPS Jamming Attacks on Unmanned Systems

Picture a world where the guiding intelligence of drones and UAVs is abruptly silenced, their navigational prowess rendered useless – a scenario that is part of the reality because GPS jamming attacks.

The prevalence of GPS jamming attacks poses a significant threat to unmanned aerial vehicles (UAVs) and drones, and any other applications that depend on GNSS signals to navigate, disrupting their navigation capabilities with potentially severe consequences.
When subjected to a jamming attack, these devices lose their ability to receive accurate positioning data, leading to complete loss of control.

In real-world scenarios, a drone or UAV experiencing a jamming attack may deviate from its intended course, endangering both the equipment and any payload it may carry.
Moreover, the loss of navigational control can impact critical missions, including surveillance, reconnaissance, and emergency response operations,
The consequences extend beyond financial losses to potential security risks, making it imperative for industries relying on unmanned systems to address the vulnerabilities associated with GPS disruptions.

To mitigate the risks, investing in GPS protection and resilient navigation solutions is crucial. These technologies not only detect and counteract jamming attempts but also ensure the continuity of operations that can be and will be a game changer.

The urgency to enhance GPS resilience stems from the growing reliance on unmanned systems in critical sectors, including transportation, agriculture, and public safety. As these systems become more integrated into our daily lives, the potential fallout from GPS disruptions becomes increasingly severe. For instance, in agriculture, drones are used for precision farming, monitoring crop health, and optimizing resource allocation. A GPS disruption could lead to misapplication of resources, affecting crop yields and sustainability.
In public safety, drones play a pivotal role in search and rescue missions, where timing and precision are paramount, GPS jamming in such scenarios could delay response times and potentially result in loss of life. Thus, developing and implementing advanced GPS protection measures is not just about safeguarding equipment; it’s about ensuring that critical services and operations continue uninterrupted, protecting both economic interests and human lives. Investing in technologies that can withstand GPS vulnerabilities is essential for maintaining the integrity and reliability of these indispensable systems, marking a significant step forward in securing the future of unmanned navigation and the myriad applications that depend on it.

Understanding the Crucial Role of GPS in Navigation (1)

Understanding the Crucial Role of GPS in Navigation

In the dynamic landscape of modern navigation, the guiding of drones, UAVs, and ground vehicles with unparalleled precision is the Global Positioning System (GPS).

Global Positioning System (GPS) technology has become an integral part of modern navigation systems, revolutionizing the way we guide drones, UAVs, and ground vehicles.
The importance of GPS lies in its ability to provide accurate location data, enabling seamless navigation in various industries.

GPS works by utilizing a network of satellites orbiting the Earth, communicating with ground-based receivers to triangulate the device’s position.
In essence, GPS relies on trilateration, a method that calculates the user’s location based on signals received from multiple satellites,
This technology has become indispensable in applications ranging from civilian navigation to military operations. However, despite its widespread use, GPS is not without vulnerabilities.
It operates on radio signals, making it susceptible to interference, jamming, and spoofing.

The critical role of GPS extends beyond basic navigation, significantly enhancing the operational capabilities of drones, UAVs, and ground vehicles.
This technology enables these vehicles to perform complex missions with a high degree of accuracy and autonomy. For instance, in military operations, GPS is essential for the precise targeting of locations, navigation through challenging terrains, and coordination among multiple units. Similarly, in civilian applications, drones rely on GPS for tasks ranging from aerial photography to delivering goods in hard-to-reach places. The accuracy and reliability of GPS data are paramount, as they directly impact the success of these missions. As such, the integration of GPS into these systems has not only expanded their operational possibilities but also increased their efficiency and safety.

Furthermore, the evolution of GPS technology continues to push the boundaries of what is possible with autonomous and semi-autonomous vehicles. With advancements in GPS accuracy and the development of augmentation systems that improve signal reliability, vehicles are now capable of navigating more precisely in complex environments. This progress is crucial for the future of autonomous cars, drones, and other types of robotic vehicles, enabling them to operate safely alongside human-driven vehicles and in densely populated areas. The enhanced capabilities afforded by GPS technology are leading to innovative applications in environmental monitoring, search and rescue operations, and smart city infrastructures, demonstrating the technology’s indispensable role in the next generation of navigation and mission planning.

As technology advances, the need for resilient and protected GPS navigation systems becomes increasingly apparent. Ensuring the reliability of GPS is crucial for maintaining the integrity of operations in sectors such as defense, logistics, and autonomous transportation.

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