GNSS Anti-Jam Technology for the Mass Market



Similar documents
GPS Jamming Quantifying the Threat

Technologies for PRS Receivers

GPS Jamming Threat Scenarios CGSIC 2013 Nashville. Prof. Charles Curry BEng, CEng, FIET Managing Director Chronos Technology Ltd

727 VHF/UHF/SHF Spectrum Monitoring System

Electronic Warfare System Integrated Electronic Warfare System. Own the Enemy s Battlespace

Advanced Electronics Company. Photonics Based ELINT for Interception and Analysis of Radar Signals

What is ? Why are standards important?

Application Note Receiving HF Signals with a USRP Device Ettus Research

A comparison of radio direction-finding technologies. Paul Denisowski, Applications Engineer Rohde & Schwarz

UAV Drone Jammer CPB-4030C with remote control Wireless

Mitigating the Threat of GPS Jamming Anti-Jam Technology

737 LF/HF/VHF/UHF/SHF Spectrum Monitoring System

Raptor RXi Ultra-fast scanning Countersurveillance Receiver

Testing and Verification of 5.8GHz Channel Setting and Frequency in Different Products

ZigBee Propagation for Smart Metering Networks

Video eavesdropping- RF

Software Radio Applications

Distributed Multi-Layer Spectrum Monitoring Systems. Alistair Massarella, CEO 4 th July CRFS All rights reserved

Displayport Extender via 2 multimode fibers LC Duplex Connector Extends Displayport Link up to 200 meters

Energy harvesting in wireless applications

KBA Oktatási Kft OKÉV nyilvántartási szám:

White Paper Assured PNT Inside Military Ground Vehicles Using D3

DRONE DETECTION RADAR

Wireless The answer to all our communications needs?

RFSPACE CLOUD-IQ #CONNECTED SOFTWARE DEFINED RADIO

Modification Details.

TBS Dominator 5G8 Receiver

Engineers from Geodetics select KVH for versatile high-performance inertial sensors. White Paper. kvh.com

Drones Jammer. A simple drone Jammer designed to hack unwelcomed civilian drones within your backyard range.

Baldock radio monitoring station

Antenna Trainer EAN. Technical Teaching Equipment INTRODUCTION

ÇANKAYA ÜNİVERSİTESİ ECE 491 SENIOR PROJECT I ERDİNÇ YILMAZ

Vehicle IOT Gateway Family Datasheet

Secure and Reliable Wireless Communications for Geological Repositories and Nuclear Facilities

Application Note AN-00126

Extended Resolution TOA Measurement in an IFM Receiver

Universal Form-factor. Wi Fi Troubleshooting Made Easy

European best practices in safe transport of dangerous material supported by GNSS

GNSS integrity monitoring for the detection and mitigation of interference

Control Update. Wireless PTC Technology White Paper Positive Train

WIRELESS INSTRUMENTATION TECHNOLOGY

Key Priorities for Sub-GHz Wireless Deployment

Selecting the Optimal 700MHz LTE Antenna for Public Safety Communications. By Jerry Posluszny, Director of Engineering, Mobile Mark

710 ASMS Automated Spectrum Management System

Argos Thuraya Interception L-Band System

Tri-Band RF Transceivers for Dynamic Spectrum Access. By Nishant Kumar and Yu-Dong Yao

Two Novel Technologies Enabling IoT: Mobile Clouds and Visible Light Communications. Centre for Wireless Communications University of Oulu, Finland

Zero-Variable Wireless Infrastructure Deployment. Datasheet. Models: BM2HP, BM5HP. Completely integrated Radio

General Camera Information and use for NuAire Biological Safety Cabinets (BSC) and Isolators

OpenWay Radio Frequency FAQ

ASNE Intelligent Ships Symposium X. Navy Dr. Gary A. Gabriele Drosdick Endowed Dean of Engineering

Totally Wireless Video Security

LTE-Advanced Carrier Aggregation Optimization

Optimizing Wireless Networks.

INTRODUCTION TO COMMUNICATION SYSTEMS AND TRANSMISSION MEDIA

GRF-3300 RF Training Kits

AN Application Note: FCC Regulations for ISM Band Devices: MHz. FCC Regulations for ISM Band Devices: MHz

Indoor/Outdoor airmax CPE. Datasheet. Models: NSM2, NSM3, NSM365, NSM5, locom2, locom5, locom9. Cost-Effective, High-Performance

ALLIED MARITIME COMMAND

DT3: RF On/Off Remote Control Technology. Rodney Singleton Joe Larsen Luis Garcia Rafael Ocampo Mike Moulton Eric Hatch

User manual BETSO WTCS. 16 channel wireless digital TC slate. 1 Copyright BETSO ELECTRONICS Ltd.

Chapter 6 Bandwidth Utilization: Multiplexing and Spreading 6.1

Android based Alcohol detection system using Bluetooth technology

APPLICATION NOTES POWER DIVIDERS. Things to consider

VST-1815Z IP V-Alarm System VST-1852Z IP/GPRS V-Alarm System

PAR-2000 GCA-2000 MPN-25 TASR MPN-14K MPN-26 (MACS) Gilfillan. Air Traffic Control

Conference Equipment Rental

Annex to the joint statement: Exposure of the general public to radiofrequency fields

Federal Communications Commission Office of Engineering and Technology Laboratory Division

How To Use A Sound Card With A Subsonic Sound Card

Testing Gateway LTE Performance

FB-500A User s Manual

AN BGU8009 Matching Options for 850 MHz / 2400 MHz Jammer Immunity. Document information. Keywords

Think GPS Offers High Security? Think Again!

How To Understand The Power Of An Freddi Tag (Rfid) System

Unmatched RF Spectrum Analysis

3D LANZA FAMILY RADARS

Revision of Lecture Eighteen

Citizens Band (CB) radio spectrum use information and operation. Of 364

Both wireless links can be obviously replaced by wired links if preferred by the mission/application.

Remarkable achievements

Digital C4I Interoperability: The EM Protection Issue

Truck Automation for the Ready Mixed Concrete Industry. Michael J. Hoagland (205) ext

Here are the details with pictures of the items for sale as listed below. Please Scroll Down.

This document describes how video signals are created and the conversion between different standards. Four different video signals are discussed:

PROSECUTING 406/121.5 MHZ DISTRESS BEACONS A Guide for Civil Air Patrol Emergency Service Personnel

Secure Navigation and Authentication. Sherman Lo November 2008

RF Communication System. EE 172 Systems Group Presentation

Pixel Addressable Reconfigurable Conformal Antenna

Zigbee-Based Wireless Distance Measuring Sensor System

Radio Frequency Identification (RFID)

MOBILE PHONE JAMMERS ACA Report

primary SURVEILLANCE 3D RADAR

Maximizing Range and Battery Life in Low-Cost Wireless Networks

GPS Forensics Crime, Jamming & Spoofing. Professor David Last

Transcription:

GNSS Anti-Jam Technology for the Mass Market Michael Jones, Senior Consultant Engineer, GNSS Protection Roke Manor Research Ltd Communications Sensors Information Systems Contract R&D Consultancy Specialist Products

2 Barriers to Commercial Exploitation Military products are too large, heavy and expensive Power consumption is too high for mass-market applications Export control applies Military anti-jam performance requirements are classified Lack of demand! (People don t want anti-jam, until they ve experienced jamming) What does the civilian world need? Adaptive antenna technology, as used successfully by the military Small, low power, low weight, low cost Reduced performance, compared to military solutions (to keep military advantage) Unclassified and commercially exploitable Is this achievable? Yes!

The GINCAN Solution GNSS Interference Cancellation 3 A chip containing all the electronics required to perform adaptive jammer cancellation Robust protection against commercially available jammers Suitable for both critical infrastructure and mass-market applications UK sovereign technology 6x6mm package 100 250mW power With thanks to MoD for their funding and support

4 How does GINCAN work? Signal enters receiver, with jamming removed Weighting Network GNSS Receiver 2 or more elements in the antenna Weight calculation processor GINCAN Chip 2.5V power Jammer Detect output

GINCAN Anti-Jam Product for Civilian and Mass Market Applications 5 Using the GINCAN chip, an appliqué product that simply replaces the old antenna on an existing receiver

GINCAN Anti-Jam Product for Civilian and Mass Market Applications 6 Using the GINCAN chip, an appliqué product that simply replaces the old antenna on an existing receiver Various packaging options are available, including internally-mounted antenna The GINCAN chip could also be designed in to a product, for a totally integrated solution Electronics box 3.5x3.5cm Power connector Many antenna options are available RF output to GNSS receiver

7 What are some of the markets for GINCAN? Initially: Police and security services Emergency services Fleet vehicle tracking Network timing providers Civilian UAVs In the medium term: Civil aviation, rail, and maritime Ultimately: Commercial sat-nav? Smart phones? Can I buy one? Possibly. We are currently undertaking a grading process, and customers currently need approval on a case-by-case basis

8 Can Jammers Be Located and Characterised? LOCATE provides a comprehensive spectrum surveillance capability Super-Resolution Direction Finding Simultaneous positions of multiple emitters Order of magnitude improvement in resolution Azimuth and elevation Operates effectively with short duration signals Wideband antenna array N-channel downconverter and wideband receivers (30 MHz to 3 GHz) Geolocation manager software

9 Spectrum Monitoring using Monitor bands of interest Monitor whole spectrum Demodulate and listen to transmissions Waterfall view (spectrum vs. time)

10 Geolocation using Position fix of target transmitters This is a HF example; the map will be more localised for GNSS frequencies

11 GNSS Jammers Can t Hide Jammer located within a moving platform Jammer located to a region in a high rise building Multiple jammer positions can be accurately given in 3D space, in real time

12 The Low-Cost Answer: micro For simply finding GNSS jammers, the full LOCATE suite is probably overkill. LOCATE Micro fuses live video imagery with super-resolution direction finding. Visually see where multiple jammers are, in real time. Original demonstrator product was a police riot shield: Antennas and camera embedded on shield front Electronics and video display on shield rear For GNSS jammers this could be integrated into traffic cameras, recording license plates of offending vehicles Video demo of Monitoring, enforcement and prosecution real GPS jammer DF Shield image used with permission of United Shield International Ltd. www.unitedshield.com

13 Closing Remarks GNSS is vulnerable on its own, but it can be protected Adaptive antennas can protect against jammers, and also protect against almost all types of spoofing attack High-performance direction-finding allows for accurate geolocation of multiple jammers Protection technology, previously only available to the military, is becoming available to the civilian market The UK is very well informed, and has a world-leading sovereign capability in GPS and GNSS protection Thank You