ZODIAC AIRCRAFT SYSTEMS ZODIAC DATA SYSTEMS

Similar documents
ZODIAC DATA SYSTEMS. ZODIAC AEROSYSTEMS Control Systems Division

ZODIAC DATA SYSTEMS ZODIAC AIRCRAFT SYSTEMS

ZODIAC DATA SYSTEMS. Satellite Interference Reduction Group (IRG) November 2012 Dubai UAE.

SIECAMS. Siemens Space. SIECAMS Siemens Satellite Monitoring System. Siemens AG Austria All rights reserved.

Digital Communications Theory. Phil Horkin/AF7GY Satellite Communications Consultant

Satellite Link Budget 6/10/5244-1

Payload measurements with digital signals. Markus Lörner, Product Management Signal Generation Dr. Susanne Hirschmann, Signal Processing Development

model 802C HF Wideband Direction Finding System 802C

Keysight Technologies Satellite Signal Monitoring, Reference Solution

Exploring Trends in Technology and Testing in Satellite Communications

TSTE17 System Design, CDIO. General project hints. Behavioral Model. General project hints, cont. Lecture 5. Required documents Modulation, cont.

RECOMMENDATION ITU-R SM * Measuring of low-level emissions from space stations at monitoring earth stations using noise reduction techniques

DYNAMIC BANDWIDTH ALLOCATION IN SCPC-BASED SATELLITE NETWORKS

Using Variable Coding and Modulation to Increase Remote Sensing Downlink Capacity

RESEARCH ON METHODS FOR ANALYZING AND PROCESSING SIGNALS USED BY INTERCEPTION SYSTEMS WITH SPECIAL APPLICATIONS

Figure 1: Overlapping of carriers into common spectral footprint. 328 Innovation Blvd. 1 Wheaton Road, Witham

Chapter 6 Solution to Problems

C/I = log δ 3 log (i/10)

Multiple Access. Difference between Multiplexing and Multiple Access

ITU/ITSO Workshop on Satellite Communications, AFRALTI, Nairobi Kenya, 8-12, August, Link Budget Analysis

120W UHF Transmitter/Repeater

Layered Division Multiplexing (LDM) Summary

Overview ALL RIGHTS RESERVED

IZT C6000 RF Link Emulator

Adoption of this document as basis for broadband wireless access PHY

0.6 kbits/s, the modulation shall be aviation binary phase shift keying (A-BPSK).

Earth Station and Flyaway

Modulation Classification of Satellite Communication Signals Using Cumulants and Neural Networks

Multiple Access Schemes

model 902 H-SLIC HF Wideband Signal Location Intercept and Collection System 902 H-SLIC

MODULATION AND MULTIPLE ACCESS TECHNIQUES

Chapter 2: Wireless Transmission. Mobile Communications. Spread spectrum. Multiplexing. Modulation. Frequencies. Antenna. Signals

Chapter 7. Multiple Division Techniques

Case Study: and Test Wireless Receivers

Selected answers * Problem set 6

Multi-Way Diversity Reception for Digital Microwave Systems

June 09, 2014 Document Version: 1.1.0

OFDMA PHY for EPoC: a Baseline Proposal. Andrea Garavaglia and Christian Pietsch Qualcomm PAGE 1

How To Summon Up Those Darn Clouds When You Need Them

Practical issue: Group definition. TSTE17 System Design, CDIO. Quadrature Amplitude Modulation (QAM) Components of a digital communication system

Satellite Interference Geolocation Considerations May 2016

Ascent Ground and Satellite Demonstration

Evaluating and Optimizing Radio Frequency Identification (RFID) Systems Using Real-Time Spectrum Analysis

Mobile & Wireless Networking. Lecture 2: Wireless Transmission (2/2)

Satellite Basics Term Glossary

ISHIK UNIVERSITY Faculty of Science Department of Information Technology Fall Course Name: Wireless Networks

PGT313 Digital Communication Technology. Lab 3. Quadrature Phase Shift Keying (QPSK) and 8-Phase Shift Keying (8-PSK)

Compact system for wideband interception and technical analysis

Chapter 7 Multiple Division Techniques for Traffic Channels

- 1 - Rap. UIT-R BS Rep. ITU-R BS.2004 DIGITAL BROADCASTING SYSTEMS INTENDED FOR AM BANDS

FM DISTRIBUTION FOR MOTORWAYS AND TUNNELS

Lecture 3: Wireless Physical Layer: Modulation Techniques. Mythili Vutukuru CS 653 Spring 2014 Jan 13, Monday

PROWATCHNeo. PROWATCHNeo monitoring system WEB SERVER CONTROL HEVC H K SNMP COMPATIBLE. High Effciency Video Codec

The Case for Recording IF Data for GNSS Signal Forensic Analysis Using a SDR

White Paper. Linearity of GaN Based Solid State Power Amplifiers. By Cristi Damian, M.E.E. Advantech Wireless

Your reliable partner for Electronic Warfare & ICT solutions. Modular COMMS-ESM/COMINT System. SYMON AKRS & EWMAN options

S32: Specialist Group on Physical Layer. Luke Fay, S32 Chairman Sony

From 2G to 4G UE Measurements from GSM to LTE. David Hall RF Product Manager

PXI LTE/LTE-A Downlink (FDD and TDD) Measurement Suite Data Sheet

Application of a Dual Satellite Geolocation System on Locating Sweeping Interference

2009 Small Satellite Conference Logan, Utah

Multi-Signal, Multi-Format Analysis With Agilent VSA Software

NOISE, INTERFERENCE, & DATA RATES

Digital Modulation Schemes

PXI WiMAX Measurement Suite Data Sheet

SPREAD SPECTRUM CHANNEL MEASUREMENT INSTRUMENT

Downloaded from 1

Contents. IEEE family of standards Protocol layering TDD frame structure MAC PDU structure

Event Detection From RF Sensing Space Symposium 2018 Technical Track. 16 April 2018

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

Digital modulation techniques

Working Party 5B DRAFT NEW RECOMMENDATION ITU-R M.[500KHZ]

SPREAD SPECTRUM (SS) SIGNALS FOR DIGITAL COMMUNICATIONS

An Adaptive Multimode Modulation Modem for Point to Multipoint Broadband Radio

Simulating and Testing of Signal Processing Methods for Frequency Stepped Chirp Radar

A-SAT TM Adaptive Satellite Access Technology John Landovskis

Research on key digital modulation techniques using GNU Radio

Productivity and flexibility for A/D applications

903S VHF/UHF Man-Portable COMINT System

DoubleTalk Carrier-in-Carrier

CT-516 Advanced Digital Communications

UHF Phased Array Ground Stations for Cubesat Applications

With a lot of material from Rich Nicholls, CTL/RCL and Kurt Sundstrom, of unknown whereabouts

AN INTRODUCTION OF ANALOG AND DIGITAL MODULATION TECHNIQUES IN COMMUNICATION SYSTEM

DVB-S2 Demodulator VHDL RTL/structural Macro

Wireless Physical Layer Concepts: Part III

(650536) Prerequisite: Digital Communications (610533) Instructor: Dr. Abdel-Rahman Al-Qawasmi

UNIVERSITY OF NAIROBI Radio Frequency Interference in Satellite Communications Systems

Satellite Communications. Chapter 9

Satellite Communications. Chapter 9

Wireless Communication Systems: Implementation perspective

BER ANALYSIS OF WiMAX IN MULTIPATH FADING CHANNELS

DEVELOPMENT OF A DIGITAL TERRESTRIAL FRONT END

Zaid Hayyeh Department of Electrical Engineering and Computer Science University of Kansas, Lawrence, Kansas

RECOMMENDATION ITU-R SM Method for measurements of radio noise

Prototype Galileo Receiver Development

Implementation of OFDM Modulated Digital Communication Using Software Defined Radio Unit For Radar Applications

Ground Based DVB-S2 Repeater for GEO Satellites

Waveform Generation and Testing with Software-Defined Radios (SDR) and RF instruments

Understanding Probability of Intercept for Intermittent Signals

Transcription:

ZODIAC DATA SYSTEMS

28/06/2015-2

Solutions based on IFoIP One hardware, Multiple applications 28/06/2015-3

Solutions based on IFoIP One hardware, Multiple applications Customized SDR Software Defined Radio Acquisition Service soft Customized applications 28/06/2015-4

Solutions based on IFoIP One hardware, Multiple applications Customized SDR Software Defined Radio Acquisition Service soft Customized applications Inspection Lib Diapason Lib Diapason Modulation detection QoS Control Fast round trip 28/06/2015-5

Solutions based on IFoIP One hardware, Multiple applications Customized SDR Software Defined Radio Acquisition Service soft Customized applications Inspection Lib Diapason Lib Diapason Modulation detection QoS Control Fast round trip Monitoring CSM Carrier Signal Monitoring Database & Alarm management Reporting 28/06/2015-6

Solutions based on IFoIP One hardware, Multiple applications Customized SDR Software Defined Radio Acquisition Service soft Customized applications Inspection Lib Diapason Lib Diapason Modulation detection QoS Control Fast round trip Monitoring CSM Carrier Signal Monitoring Database & Alarm management Reporting Analysis CSA Carrier Signal Analyzer Analyze carriers in blind mode Carrier under carrier 28/06/2015-7

Solutions based on IFoIP One hardware, Multiple applications Customized SDR Software Defined Radio Acquisition Service soft Customized applications Inspection Monitoring Analysis Geolocation Lib Diapason CSM CSA CGL Lib Diapason Modulation detection QoS Control Fast round trip Carrier Signal Monitoring Database & Alarm management Reporting Carrier Signal Analyzer Analyze carriers in blind mode Carrier under carrier Compact Geo Location Locate transmitters 28/06/2015-8

Solutions based on IFoIP One hardware, Multiple applications Customized SDR Software Defined Radio Acquisition Service soft Customized applications Inspection Monitoring Analysis Geolocation Ephemeris Lib Diapason CSM CSA CGL SEE Lib Diapason Modulation detection QoS Control Fast round trip Carrier Signal Monitoring Database & Alarm management Reporting Carrier Signal Analyzer Analyze carriers in blind mode Carrier under carrier Compact Geo Location Locate transmitters Satelitte Ephemeris Estimator Ephemeris estimation Detection of manoeuvre 28/06/2015-9

Solutions based on IFoIP One hardware, Multiple applications Customized SDR Software Defined Radio Acquisition Service soft Customized applications Carrier ID CID Carrier Identifier Transmitter Coordinates Contact details User defined data Inspection Monitoring Analysis Geolocation Ephemeris Lib Diapason CSM CSA CGL SEE Lib Diapason Modulation detection QoS Control Fast round trip Carrier Signal Monitoring Database & Alarm management Reporting Carrier Signal Analyzer Analyze carriers in blind mode Carrier under carrier Compact Geo Location Locate transmitters Satelitte Ephemeris Estimator Ephemeris estimation Detection of manoeuvre 28/06/2015-10

SDR Hardware products 28/06/2015-11

Hardware products : HPC/SPC boards 28/06/2015-12

IFoIP family Reference Product Down-Converters SM01022485A SM01021473A SM01009787A SM01009785B ( MHz L-Band (950-2150 ( MHz Up L-Band (1500-2500 VHF (230-470 MHz) UHF (470-950 MHz) IFoIP-SPC board SM01028766A MODULE IFoIP SPC L Band IFoIP-HPC board SM01026980A MODULE IFoIP HPC IF 140 SM01026979A MODULE IFoIP HPC IF 70 SM01028741A MODULE IFoIP HPC L Band 80MHz BW SDR Chassis SP01032788A SP01039593A SP01039594A Rack V0, 1U, 2 VME slots Rack V2, 2U, 4 VME slots Rack V4, 4U, 8 VME slots 28/06/2015-13

Development toolkit ZDS provide with the IFoIP bd: o Librairies for Linux and windows o Documentation o Example (in C language) Customer can develop his own application o GUI, o demodulation, o spectral analysis o 28/06/2015-14

Lib DIAPASON 28/06/2015-15

Lib Diapason Embedding advanced signal analysis in IFoIP Signal Acquisition Main functions: Powerful and lightweight Signal Processing Library integrated within IFoIP Acquisition Service for customer who wants to develop their own monitoring system or application. Spectrum graph (Video and resolution bandwidth controlled); Carrier detection (Single, TDM carriers), carrier list; Quality of service Blind analysis (Modulations BPSK, QPSK, 8PSK, 8/16QAM, 16/32APSK) Carrier under/over carrier detection Carrier under carrier analysis RF and Digital Fine Characterization 28/06/2015-16

Lib Diapason Detection demo software detected channels raw PSD filtered PSD raw noise filtered noise List of detected channels Configuration - 17 June 15

Lib Diapason Characterization demo software signal power noise remaining (CuC) Check RF Channel characterization Check characterization Configuration - 18 June 15

Carrier & Signal Analyzer CSA 28/06/2015-19

Carrier & Signal Analyzer - CSA Main features Blind recognition of carrier parameters Databases of: - Satellites - Communications Carrier under Carrier: - Carrier cancellation - CuC analysis Display of: - Spectrum - Characterisrics - Spectrogram - Constellation Analysis of: - RF parameters - 24 modulations - FEC - Communication std 28/06/2015-20

Carrier & Signal Analyzer - CSA Burst signal Blind recognition of burst signal Spectrum & Spectrum Waterfall Display Power vs. Time of the carrier of interest Detailed carrier Analysis Burst series VSAT/ TDMA Analysis - Burst Analysis - User separation - Access type - Classification 28/06/2015-21

Carrier & Signal Analyzer - CSA New Features: DVB-S2 Analysis Support DVB-S2 compliant ACM/VCM TDM Stream detected Retrieved Constellation Statistics Full FEC Analysis support (Summer 2015) 28/06/2015-22

Geolocation scenarios 28/06/2015-23

Scenarios for Geolocation 28/06/2015-24

Monitoring station Monitoring System 28/06/2015-25

Transmitter with Carrier ID Carrier with CID Legit Transmitter with CID National Area Monitoring System 28/06/2015-26

Carrier with CID 28/06/2015-27

Carrier ID Case One: Carrier with a carrier ID Carrier with CID Legit Transmitter with CID National Area Monitoring System 28/06/2015-28

Carrier ID Carrier with CID Case Two: X-pol or side lobe interference with a carrier ID Legit Transmitter with CID National Area Monitoring System 28/06/2015-29

Carrier ID Carrier with CID Case Three: Carrier interfered with a carrier ID enabled signal Legit Transmitter with CID National Area Monitoring System 28/06/2015-30

Carrier ID Carrier with CID Case Four: Carrier interfered with a carrier ID enabled signal under carrier Legit Transmitter with CID National Area Monitoring System 28/06/2015-31

Carrier ID Carrier with CID Case Five: Carrier with CID interfered with a carrier with CID Legit Transmitter with CID National Area Monitoring System 28/06/2015-32

Carrier ID Software Defined Demodulation by ZODIAC DATA SYSTEMS Test carriers on SES and Eutelsat Satellites Carrier ID Global Unique Identifier (GUID) Transmitter Coordinates Operator Defined Message 28/06/2015-33

Carrier CID benchmark 28/06/2015-34

Equipment and reception conditions RF Infrastructure Received in Bretteville L Orgueilleuse, France 4.5m Antenna with Ku Band LNB Carrier ID Reception System Data Acquisition based on ZODIAC DATA SYSTEMS IFoIP Technology Spectrum Visualization and Analysis based on ZODIAC DATA SYSTEMS CSA system Carrier ID detection and demodulation performed on ZODIAC DATA SYSTEMS CID Analysis System Search Range to Frequency Offset set to 10kHz (adds 10s to GUID detection speed compared 1kHz search range) Full Analysis enabled: Looks for up to two different carrier ID around the same center frequency and within the same frequency search Tries to decode the full Carrier ID message Carrier ID Detection : Simple mode, with fallback to Deep Detection mode (requiring more processing) in case of detection failure - 35

Type 1 Scenario Robustness to constellation variation Carrier at nominal power, three tests performed in: QPSK / 8PSK / 16APSK No identified difference in processing capabilities - 36 GUID Detection Speed: 40s (30s with 1kHz search range) Full Message decoding 2min to 2min30s

Type 2 Scenario Robustness to power variations To simulate ASI or Xpol interference, Detection tests are performed while decreasing carrier power by steps of 3dB, down to noise floor level 16dB SNR 7dB SNR 1dB SNR! - 37

Type 2 Scenario Robustness to power variations Down to 4dB of SNR (-12dB compared to nominal power) : GUID Detection time is unchanged: ~40s (30s if applying 1kHz search range) Full message decoding is unchanged: ~2min 1dB SNR (-15dB compared to nominal power): GUID detection time : 60s (requires Deep detection) Full message decoding: 2 min 30s (the only overhead is caused by increased GUID detection time) -3dB -3dB -3dB -3dB -3dB - 38

Type 3 Scenario Robustness to interferences Case 1: Comparable power level Same center frequency, same PSD level 1MBd QPSK interference vs. 6.66MBd Main QPSK carrier Both Carriers embeds a Carrier ID Two Carrier ID Detected! GUID Detection Time : ~ 60s to retrieve both GUID Full Message Decoding : ~2 min 30 (the only overhead is caused by increased GUID detection time) - 39

Type 3 Scenario Robustness to interferences Case 1: Comparable power level Same center frequency, same PSD level 1MBd QPSK interference vs. 6.66MBd Main QPSK carrier Both Carriers embeds a Carrier ID Main Carrier Two Carrier ID Detected! Interference Carrier GUID Detection Time : ~ 60s to retrieve both GUID Full Message Decoding : ~2 min 30 (the only overhead is caused by increased GUID detection time) Detection Time is not significantly impaired - 40

Type 3 Scenario Robustness to interferences Case 2: Higher power interference Same center frequency, PSD level is 6 db higher 1MBd QPSK interference vs. 6.66MBd Main QPSK carrier Both Carriers embeds a Carrier ID Synchro Issues! Two Carrier ID Detected! GUID Detection Time : ~ 60s to retrieve both GUID (same as similar power case) Full Message Decoding : ~2 min 30 partial decoding, about 5min for full message - 41

Type 3 Scenario Robustness to interferences Case 2: Higher power interference Same center frequency, PSD level is 6 db higher 1MBd QPSK interference vs. 6.66MBd Main QPSK carrier Both Carriers embeds a Carrier ID Interference Carrier Synchro Issues! Two Carrier ID Detected! GUID Detection Time : ~ 60s to retrieve both GUID (same as similar power case) Full Message Decoding : ~2 min 30 partial decoding, about 5min for full message Main Carrier - 42

Type 3 Scenario Robustness to interferences Case 3: Higher power interference but not colocated in frequency 2MHz center frequency offset, same PSD level 1MBd QPSK interference vs. 6.66MBd Main QPSK carrier Both Carriers embeds a Carrier ID Synchronized interferring carrier Interferred Carrier Two Carrier ID Detected! Synchro Issues! GUID Detection Time : ~ 40s to retrieve each GUID (same as similar power case) Full Message Decoding : ~2 min full decoding each Two different center frequency == Two detection operations - 43

Type 3 Scenario Robustness to interferences Case 3: Higher power interference but not colocated in frequency 2MHz center frequency offset, same PSD level 1MBd QPSK interference vs. 6.66MBd Main QPSK carrier Both Carriers embeds a Carrier ID Synchronized 1 st interferring detection carrier main carrier Interferred Carrier Two Carrier ID Detected! Synchro Issues! GUID Detection Time : ~ 30s to retrieve each GUID (same as similar power case) Full Message Decoding : ~2 min full decoding each Two different center frequency == Two detection operations - 44

Type 3 Scenario Robustness to interferences Case 3: Higher power interference but not colocated in frequency 2MHz center frequency offset, same PSD level 1MBd QPSK interference vs. 6.66MBd Main QPSK carrier Both Carriers embeds a Carrier ID Synchronized interferring carrier Interferred Carrier Two Carrier ID Detected! Synchro Issues! GUID Detection Time : ~ 30s to retrieve each GUID (same as similar power case) Full Message Decoding : ~2 min full decoding each Two different center frequency == Two detection operations 2 nd detection interference - 45

Standard Geolocation 28/06/2015-46

Transmitter Geolocation by ZODIAC DATA SYSTEMS Standard scenario Signal of interest National Area Legit Transmitter National Area Monitoring Monitoring System System 28/06/2015-47

Transmitter Geolocation by ZODIAC DATA SYSTEMS Standard scenario Main satellite Mirror satellite Signal of interest Mirror satellite Main satellite Reference signal National Area Legit Transmitter Reference signal National Area Monitoring System Monitoring & Geolocation System 28/06/2015-48

Transmitter Geolocation by ZODIAC DATA SYSTEMS Standard scenario Down to 3 km accuracy Use case: Two satellites angle gap of 3 degrees Frequency Ku band: 12500 MHz Reference in Hilversum (Netherland) Ephemeris Operator Ephemeris on both satellites Sensisivity Position found maximum difference doppler at the best time of the day : 20 mhz/deg Real position 28/06/2015-49

Complex Geolocation scenario with occupied mirror transponder & NORAD ephemeris 28/06/2015-50

Transmitter Geolocation by ZODIAC DATA SYSTEMS Complex scenario Main satellite Mirror satellite Mirror satellite Main satellite Reference signal Interference National Area Interference Source Reference signal National Area Monitoring System Monitoring & Geolocation System 28/06/2015-51

Transmitter Geolocation by ZODIAC DATA SYSTEMS Main satellite Mirror satellite Carrier cancellation on Mirror satellite Spectrum of Mirror satellite TDMA carriers Harder to correlate create ambiguity TDMA carrier cancelled 28/06/2015-52

Transmitter Geolocation by ZODIAC DATA SYSTEMS Main satellite Signal cancelled on Mirror satellite Carrier cancellation on Mirror satellite Spectrum of Mirror satellite Spectrum of Mirror satellite TDMA carriers Harder to correlate create ambiguity TDMA carrier cancelled 28/06/2015-53

Transmitter Geolocation by ZODIAC DATA SYSTEMS Complex scenario Main satellite Signal cancelled on Mirror satellite Mirror satellite Main satellite Reference signal Interference National Area Interference Source Carrier cancellation gives Easier detection & no ambiguity Reference signal National Area Monitoring System Monitoring & Geolocation System 28/06/2015-54

Transmitter Geolocation by ZODIAC DATA SYSTEMS Complex scenario Not accurate ephemeris! Use case: Two satellites angle gap of 3 degrees Frequency Ku band: 12500 MHz Reference in Hilversum (Netherland) Ephemeris Norad Ephemeris on both satellites Sensisivity Real position maximum difference doppler at the best time of the day : 20 mhz/deg Position found 28/06/2015-55

Satellite Ephemeris Estimation (SEE) by ZODIAC DATA SYSTEMS Passive & Accurate Ephemeris Estimation SEE Terminal #1 SEE Terminal #2 RLM Passive Ranging System solely rely on downlink signals of the satellite of interest. High performance synchronization algorithms make possible systems at the scale of a single country (500km x500km span) Satellite Ephemeris Accuracy < 1km Directly feed the geolocation with updated ephemeris SEE Terminal #3 SEE Terminal #3 Satellite Ephemeris Estimation system (in use for ephemeris data service by ZDS) 14/10/2014-56

Satellite Ephemeris Estimation (SEE) by ZODIAC DATA SYSTEMS Passive & Accurate Ephemeris Estimation Co-located satellites Inclined satellite Example of 3D representation of satellite orbits (using ephemeris data generated by ZODIAC DATA SYSTEMS SEE) 28/06/2015-57

Transmitter Geolocation by ZODIAC DATA SYSTEMS Complex scenario Down to 1 km accuracy Use case: Two satellites angle gap of 3 degrees Frequency Ku band: 12500 MHz Reference in Hilversum (Netherland) Ephemeris SEE Ephemeris on both satellites Sensisivity Position found maximum difference doppler at the best time of the day : 20 mhz/deg Real position 28/06/2015-58

Complex Geolocation scenario TDMA carrier under carrier interferences with occupied mirror transponder & NORAD ephemeris 28/06/2015-59

Transmitter Geolocation by ZODIAC DATA SYSTEMS TDMA gelocation Main satellite Mirror satellite Mirror satellite Main satellite Reference signal VSAT Interference VSAT National Area VSAT Reference signal National Area Monitoring System Monitoring & Geolocation System 28/06/2015-60

Main satellite Transmitter Geolocation by ZODIAC DATA SYSTEMS Mirror satellite TDMA gelocation Target Main carrier cancelled Spectrum of Main satellite Spectrum of Main satellite 14/10/2014-61

Signal cancelled on Main satellite Transmitter Geolocation by ZODIAC DATA SYSTEMS Mirror satellite TDMA gelocation Target Main carrier cancelled Spectrum of Main satellite Spectrum of Main satellite Spectrum of Mirror satellite TDMA carriers Harder to correlate create ambiguity 14/10/2014-62

Transmitter Geolocation by ZODIAC DATA SYSTEMS TDMA gelocation Signal cancelled on Main satellite Signal cancelled on Mirror satellite Target Main carrier cancelled Spectrum of Main satellite Spectrum of Main satellite Spectrum of Mirror satellite Spectrum of Mirror satellite TDMA carriers Harder to correlate create ambiguity TDMA carrier cancelled 14/10/2014-63

Transmitter Geolocation by ZODIAC DATA SYSTEMS TDMA geolocation Signal cancelled on Main satellite Signal cancelled on Mirror satellite Mirror satellite Main satellite Reference signal VSAT Interference VSAT National Area VSAT Reference signal National Area Monitoring System Monitoring & Geolocation System 28/06/2015-64

Transmitter Geolocation by ZODIAC DATA SYSTEMS TDMA geolocation Signal cancelled on Main satellite Signal cancelled on Mirror satellite Using SEE: Geolocation system is constantly feed with updated and accurate ephemeris data Accurate geolocation can be achieved with only one reference in very short processing time. 28/06/2015-65

Transmitter Geolocation by ZODIAC DATA SYSTEMS TDMA geolocation Example Case: Signal cancelled on Main satellite Signal cancelled on Mirror satellite 28/06/2015-66

Transmitter Geolocation by ZODIAC DATA SYSTEMS TDMA geolocation Example Case: Signal cancelled on Main satellite Signal cancelled on Mirror satellite 28/06/2015-67

Transmitter Geolocation by ZODIAC DATA SYSTEMS TDMA geolocation Example Case: Signal cancelled on Main satellite Signal cancelled on Mirror satellite 28/06/2015-68

Transmitter Geolocation by ZODIAC DATA SYSTEMS TDMA geolocation Example Case: Signal cancelled on Main satellite Signal cancelled on Mirror satellite 28/06/2015-69

Transmitter Geolocation by ZODIAC DATA SYSTEMS TDMA geolocation Example Case: Signal cancelled on Main satellite Signal cancelled on Mirror satellite 28/06/2015-70

Transmitter Geolocation by ZODIAC DATA SYSTEMS TDMA geolocation Example Case: Signal cancelled on Main satellite Signal cancelled on Mirror satellite 28/06/2015-71

Transmitter Geolocation by ZODIAC DATA SYSTEMS TDMA geolocation Example Case: Signal cancelled on Main satellite Signal cancelled on Mirror satellite 28/06/2015-72

Transmitter Geolocation by ZODIAC DATA SYSTEMS TDMA geolocation Example Case: Full Network Signal cancelled on Main satellite Signal cancelled on Mirror satellite Interference 28/06/2015-73

Geolocation Performances Summary 28/06/2015-74

Geolocation Performance Pilars 28/06/2015-75

Signal & Carrier Analyser by ZODIAC DATA SYSTEMS Geolocation detection improved by CSA carrier cancellation Acquire Wide band and/or narrow band signals; Automatic Carrier Detection; Full blind analysis : 24 modulation schemes; 50+ types of FEC; Outer code; Scrambler; Standard. Carrier under carrier detection; Carrier cancellation; TDMA detection and characterization Multi-Communication contexts : Monitoring System Fixed satellite, RCS satellite; Microwave link, UHF, VHF, HF 28/06/2015-76

Geolocation Performance Pilars Ephemeris Accuracy 28/06/2015-77

Satellite Ephemeris Estimator by ZODIAC DATA SYSTEMS Geolocation accuracy improved by accurate SEE Ephemeris Use case: Two satellites with an angle gap of 3 degrees Ku band (frequency : 12500 MHz) Non-sensitive (Maximum difference doppler at the best time of the day : 20 mhz / deg ) Reference in Hilversum (Netherland) With NORAD With SEE 28/06/2015-78

Geolocation Performance Pilars Ephemeris Accuracy Schecduling Capability 28/06/2015-79

Macro Task Manager by ZODIAC DATA SYSTEMS Geolocation operation simplified by MTM Full transponder geolocation 28/06/2015-80

Geolocation Performance Pilars Ephemeris Accuracy Scheduling Capability Automated geolocation 28/06/2015-81

Carrier & Signal Monitoring by ZODIAC DATA SYSTEMS Geolocation mitigation speed up by CSM Custom rules: Upon carrier appearance or reappearance Upon carrier diseappearance Upon carrier basic RF Upon advanced parameter update Upon carrier under carrier In case of interference CSM sent: logs, emails, sms, Alarms In case of interference CSM also trigs: CID Analyse carrier to get advanced parameters Record the binary signal Geolocate the signal (semi-automatic mode) 28/06/2015-82

Geolocation Performance Pilars Ephemeris Accuracy Scheduling Capability Automated geolocation 28/06/2015-83

Geolocation & Ephemeris Services 28/06/2015-84

Geolocation & Ephemeris services SEE Terminal #1 SEE Terminal #2 RLM SEE Terminal #3 28/06/2015-85

Now deploying capacities in Asia Main Satellite Mirror Satellite Reference Interception site Target 28/06/2015-86

Geolocation & Ephemeris services Geolocation service Providing you with the location of the source of your interferences Ephemeris service Providing 24/7 high quality ephemeris data for any GEO satellite Maneuver warning bulletin to make sure no geolocation measurement is based on erroneous data 28/06/2015-87 28/06/2015

Satellite Communication QoS Toolkit 28/06/2015-88

Satellite Communication QoS Toolkit One Common HW High-performance Front- End (IFoIP digitizer board) Full Software Defined Radio Approach with decentralized acquisition management Scalable Architecture Integrated Solution with easy upgrade for managed cost of ownership 28/06/2015-89

Thank you for your attention 28/06/2015-90 SEE Sites