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Global Aeronautical Communications, Navigation, and Surveillance (CNS) : Applications.

By: Material type: TextTextSeries: AIAA Education SeriesPublisher: Reston : American Institute of Aeronautics and Astronautics (AIAA), 2013Copyright date: ©2013Edition: 1st edDescription: 1 online resource (645 pages)Content type:
  • text
Media type:
  • computer
Carrier type:
  • online resource
ISBN:
  • 9781624103308
Subject(s): Genre/Form: Additional physical formats: Print version:: Global Aeronautical Communications, Navigation, and Surveillance (CNS)DDC classification:
  • 629.135/5
LOC classification:
  • TL692 -- .I43 2013eb
Online resources:
Contents:
Intro -- FOREWORD -- CONTENTS -- PREFACE -- ACKNOWLEDGMENTS -- ACRONYMS -- Chapter 1 Inmarsat GEO GMSC System -- 1.2.1 Second and Third Generation of Inmarsat Satellite Constellation -- 1.2.2 Inmarsat MSC Link Budget -- 1.3.1 Inmarsat MES Solutions -- 1.3.2 Inmarsat LES -- 1.3.3 Inmarsat Ground Network (IGN) -- 1.4.1 Inmarsat Maritime and Land Mobile Terminals -- 1.4.2 Inmarsat Aeronautical Mobile Aircraft Earth Station (AES) -- 1.5.1 Mobile ISDN and MPDS Swift Solutions -- 1.5.2 Aeronautical System Architecture and Capabilities -- 1.6.1 SwiftBroadband Baseline Performance -- 1.6.2 Configuration of SwiftBroadband Transceiver -- 1.6.3 SwiftBroadband Service -- 1.6.4 Configuration of SwiftBroadband Peripherals -- 1.6.5 Configuration of SwiftBroadband Hardware -- 1.6.6 SwiftBroadband Performance Applications -- 1.8.1 Virtual Private Networking (VPN) over MPDS -- 1.8.2 Personal Satellite Phone (PSP) and Satellite Global Tracker (SGT) -- 1.8.3 Satellite SCADA (M2M) -- 1.9.1 Global Aeronautical Safety Satellite Communications (GASSC) -- 1.9.2 Aeronautical Weather Report Services (AWRS) -- 1.9.3 Future Air Navigation System (FANS) -- 1.9.4 Global Aeronautical Distress and Safety System (GADSS) -- Chapter 2 Cospas-Sarsat LEO and GEO GMSC System -- 2.1.1 Cospas-Sarsat Organization and Signatories -- 2.1.2 International SAR Program -- 2.2.1 Basic Concept of Cospas-Sarsat System -- 2.2.2 LEOSAR and GEOSAR Satellite System -- 2.3.1 Cospas-Sarsat VHF 121.5/243-MHz System -- 2.3.2 Cospas-Sarsat UHF 406-MHz System -- 2.3.3 Complementarity of the 406-MHz LEOSAR and GEOSAR Systems -- 2.3.4 Distribution of Alert and Location Data -- 2.4.1 LEOSAR Cospas-Sarsat Payload -- 2.4.2 GEOSAR Space Segment -- 2.5.1 Cospas-Sarsat Emergency Satellite Beacons -- 2.5.2 Replacement Batteries for Avionics ELT and PLB Units.
2.5.3 Distress Satellite Beacon Programmers and Testers -- 2.5.4 Local User Terminals (LUT) -- 2.5.5 Medium-Earth-Orbit (MEO) SAR (MEOSAR) System -- 2.5.6 Mission Control Centers (MCC) -- 2.5.7 Rescue Coordination Centers (RCC) -- Chapter 3 Non-GEO GMSC Systems -- 3.1.1 Globalstar Big LEO GMSC System -- 3.1.2 Iridium Big LEO GMSC System -- 3.2.1 Orbcomm Little LEO GMSC System -- Chapter 4 Global Broadcasting Satellite System (GBSS) -- 4.1.1 DVB over Satellite (DVB-S) -- 4.1.2 Error Performance Requirements -- 4.1.3 MPEG-2 Source Coding and Multiplexing DVB-S Streams -- 4.2.1 DVB-RCS Hub and User Terminals Networks -- 4.2.2 DVB-RCS Forward and Return Links -- 4.2.3 DVB-RCS Security -- 4.3.1 New Features of DVB-S2 -- 4.3.2 Transmission System Architecture -- 4.3.3 Migration from DVB-S to DVB-S2 and Related Efficiencies -- 4.3.4 Framing Structure and Backwards-Compatible Modes -- 4.3.5 Physical Layer and Its Performance -- 4.3.6 Integration of DVB-S2 into DVB-RCS Systems -- 4.5.1 VSAT Network Configuration and Concept -- 4.5.2 VSAT Network Applications -- 4.6.1 Advantech Millennium Series DVB-RCS VSAT Hub -- 4.6.2 ViaSat LinkStar Pro Hub -- 4.6.3 Hughes HX Hub -- 4.7.1 Evolution iDirect VSAT Satellite Routers -- 4.7.2 LinkStar ViaSat DVB-S2 Broadband VSAT Satellite Router -- 4.7.3 HX200 Hughes Broadband Satellite Router -- 4.8.1 DVB-RCS Architecture for Maritime Broadband -- 4.8.2 Mobile Broadband Interactive System Configuration -- 4.9.1 ViaSat DVB-RCS Aeronautical Broadband -- 4.9.2 Hughes DVB-RCS Aeronautical Broadband -- 4.9.3 DVB-RCS Infrastructure for Aeronautical Broadband -- 4.9.4 DVB-RCS Broadband Infrastructure for Enhanced Air Traffic Control (ATC) -- 4.9.5 DVB-RCS Infrastructure for Air Traffic Management (ATM) -- 4.9.6 DVB-RCS Infrastructure Onboard Aircraft -- Chapter 5 Global Aeronautical Distress and Safety System (GADSS).
5.1.1 Current Aircraft Control Systems -- 5.1.2 ATC via GADSS System -- 5.2.1 Aeronautical Radio Spectrum and Convergence -- 5.2.2 Channelization and Band Splitting -- 5.3.1 Transmitter Path -- 5.3.2 Receiver Path -- 5.3.3 Rack-Mount Avionics VHF Transceivers -- 5.3.4 VHF Rack-Mounted Large Transceiver Systems -- 5.3.5 VHF Panel-Mounted Transceiver Systems -- 5.3.6 Handheld VHF Transceivers -- 5.3.7 Navigation and Communication VHF Control Panel -- 5.4.1 Universal Access Transceiver (UAT) -- 5.4.2 1090-MHz Mode S Extended Squitter (ES) -- 5.4.3 VHF Data Link (VDL) -- 5.4.4 MC-CDMA Broadband VHF (B-VHF) -- 5.4.5 AeroMACS 802.xx LAN Derivatives (WiMAX) -- 5.4.6 TDMA VHF Broadband (VDL Mode E) -- 5.4.7 VDL-B/ETDMA (VDL Extension) -- 5.4.8 New Generation of Public Safety and Specialized Mobile Radio -- 5.5.1 GNSS Augmentation VDL-Broadcast (GAVDL-B) -- 5.5.2 Radio Automatic Dependent Surveillance- Broadcast (RADS-B) -- 5.5.3 Types of Aeronautical Radio Surveillance -- 5.5.4 RADS-B Ground Segment -- 5.5.5 RADS-B Airborne Segment -- 5.5.6 Integrated Radio Surface Movement Surveillance (I-RSMS) System -- 5.6.1 HF Radio Range and Coverage -- 5.6.2 Legacy of HF Radio -- 5.6.3 HF Radio Equipment -- 5.6.4 System Configuration of HF Transceiver -- 5.6.5 Avionic HF Radio Boxes -- 5.6.6 Selective Calling (SELCAL) -- 5.6.7 HF Data-Link (HDL) System -- 5.7.1 Global Aircraft Tracking (GAT) -- 5.7.2 Satellite Data Link (SDL) -- 5.7.3 GNSS Augmentation SDL (GASDL) -- 5.7.4 Satellite Automatic Dependent Surveillance-Broadcast (SADS-B) -- 5.8.1 Radio Automatic Identification System (R-AIS) -- 5.8.2 Satellite Automatic Identification System (S-AIS) -- Chapter 6 Global Satellite Augmentation Systems -- 6.2.1 Passive GDSS -- 6.2.2 Active GDSS -- 6.2.3 Hybrid GDSS -- 6.3.1 Maritime Navigation Satellite System (MNSS) -- 6.3.2 Land Navigation Satellite System (LNSS).
6.3.3 Aeronautical Navigation Satellite System (ANSS) -- 6.6.1 RSAS EGNOS -- 6.6.2 RSAS MSAT (MTSAS/JMA) -- 6.6.3 RSAS WAAS -- 6.6.4 RSAS SDCM -- 6.6.5 RSAS SNAS -- 6.6.6 RSAS GAGAN -- 6.6.7 RSAS ASAS -- 6.7.1 Current and New Aeronautical CNS Systems -- 6.7.2 RSAS System Configuration -- 6.7.3 Future RSAS Satellite Communications and Navigation (SCN) System -- 6.7.4 Future Satellite Automatic Dependent Surveillance (SADS) System -- 6.7.5 In-Flight Special Effects of the RSAS Networks -- 6.8.1 NovAtel Reference Receiver G-II -- 6.8.2 MCS -- 6.8.3 GES -- 6.8.4 Ground Communication Network (GCN) -- 6.8.5 Space Segment -- Chapter 7 Stratospheric Communication Platforms -- 7.1.1 Technical and Geometry Aspect of SCP -- 7.1.2 Recent Developments of Space Segments -- 7.1.3 SCP Ground Segment -- 7.2.1 General Atomic SCP Network -- 7.2.2 SkyTower (Helios) SCP Global Network -- 7.3.1 Sky Station Global Network -- 7.3.2 TAO (SkyNet) SCP Network -- INDEX -- SUPPORTING MATERIALS.
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Intro -- FOREWORD -- CONTENTS -- PREFACE -- ACKNOWLEDGMENTS -- ACRONYMS -- Chapter 1 Inmarsat GEO GMSC System -- 1.2.1 Second and Third Generation of Inmarsat Satellite Constellation -- 1.2.2 Inmarsat MSC Link Budget -- 1.3.1 Inmarsat MES Solutions -- 1.3.2 Inmarsat LES -- 1.3.3 Inmarsat Ground Network (IGN) -- 1.4.1 Inmarsat Maritime and Land Mobile Terminals -- 1.4.2 Inmarsat Aeronautical Mobile Aircraft Earth Station (AES) -- 1.5.1 Mobile ISDN and MPDS Swift Solutions -- 1.5.2 Aeronautical System Architecture and Capabilities -- 1.6.1 SwiftBroadband Baseline Performance -- 1.6.2 Configuration of SwiftBroadband Transceiver -- 1.6.3 SwiftBroadband Service -- 1.6.4 Configuration of SwiftBroadband Peripherals -- 1.6.5 Configuration of SwiftBroadband Hardware -- 1.6.6 SwiftBroadband Performance Applications -- 1.8.1 Virtual Private Networking (VPN) over MPDS -- 1.8.2 Personal Satellite Phone (PSP) and Satellite Global Tracker (SGT) -- 1.8.3 Satellite SCADA (M2M) -- 1.9.1 Global Aeronautical Safety Satellite Communications (GASSC) -- 1.9.2 Aeronautical Weather Report Services (AWRS) -- 1.9.3 Future Air Navigation System (FANS) -- 1.9.4 Global Aeronautical Distress and Safety System (GADSS) -- Chapter 2 Cospas-Sarsat LEO and GEO GMSC System -- 2.1.1 Cospas-Sarsat Organization and Signatories -- 2.1.2 International SAR Program -- 2.2.1 Basic Concept of Cospas-Sarsat System -- 2.2.2 LEOSAR and GEOSAR Satellite System -- 2.3.1 Cospas-Sarsat VHF 121.5/243-MHz System -- 2.3.2 Cospas-Sarsat UHF 406-MHz System -- 2.3.3 Complementarity of the 406-MHz LEOSAR and GEOSAR Systems -- 2.3.4 Distribution of Alert and Location Data -- 2.4.1 LEOSAR Cospas-Sarsat Payload -- 2.4.2 GEOSAR Space Segment -- 2.5.1 Cospas-Sarsat Emergency Satellite Beacons -- 2.5.2 Replacement Batteries for Avionics ELT and PLB Units.

2.5.3 Distress Satellite Beacon Programmers and Testers -- 2.5.4 Local User Terminals (LUT) -- 2.5.5 Medium-Earth-Orbit (MEO) SAR (MEOSAR) System -- 2.5.6 Mission Control Centers (MCC) -- 2.5.7 Rescue Coordination Centers (RCC) -- Chapter 3 Non-GEO GMSC Systems -- 3.1.1 Globalstar Big LEO GMSC System -- 3.1.2 Iridium Big LEO GMSC System -- 3.2.1 Orbcomm Little LEO GMSC System -- Chapter 4 Global Broadcasting Satellite System (GBSS) -- 4.1.1 DVB over Satellite (DVB-S) -- 4.1.2 Error Performance Requirements -- 4.1.3 MPEG-2 Source Coding and Multiplexing DVB-S Streams -- 4.2.1 DVB-RCS Hub and User Terminals Networks -- 4.2.2 DVB-RCS Forward and Return Links -- 4.2.3 DVB-RCS Security -- 4.3.1 New Features of DVB-S2 -- 4.3.2 Transmission System Architecture -- 4.3.3 Migration from DVB-S to DVB-S2 and Related Efficiencies -- 4.3.4 Framing Structure and Backwards-Compatible Modes -- 4.3.5 Physical Layer and Its Performance -- 4.3.6 Integration of DVB-S2 into DVB-RCS Systems -- 4.5.1 VSAT Network Configuration and Concept -- 4.5.2 VSAT Network Applications -- 4.6.1 Advantech Millennium Series DVB-RCS VSAT Hub -- 4.6.2 ViaSat LinkStar Pro Hub -- 4.6.3 Hughes HX Hub -- 4.7.1 Evolution iDirect VSAT Satellite Routers -- 4.7.2 LinkStar ViaSat DVB-S2 Broadband VSAT Satellite Router -- 4.7.3 HX200 Hughes Broadband Satellite Router -- 4.8.1 DVB-RCS Architecture for Maritime Broadband -- 4.8.2 Mobile Broadband Interactive System Configuration -- 4.9.1 ViaSat DVB-RCS Aeronautical Broadband -- 4.9.2 Hughes DVB-RCS Aeronautical Broadband -- 4.9.3 DVB-RCS Infrastructure for Aeronautical Broadband -- 4.9.4 DVB-RCS Broadband Infrastructure for Enhanced Air Traffic Control (ATC) -- 4.9.5 DVB-RCS Infrastructure for Air Traffic Management (ATM) -- 4.9.6 DVB-RCS Infrastructure Onboard Aircraft -- Chapter 5 Global Aeronautical Distress and Safety System (GADSS).

5.1.1 Current Aircraft Control Systems -- 5.1.2 ATC via GADSS System -- 5.2.1 Aeronautical Radio Spectrum and Convergence -- 5.2.2 Channelization and Band Splitting -- 5.3.1 Transmitter Path -- 5.3.2 Receiver Path -- 5.3.3 Rack-Mount Avionics VHF Transceivers -- 5.3.4 VHF Rack-Mounted Large Transceiver Systems -- 5.3.5 VHF Panel-Mounted Transceiver Systems -- 5.3.6 Handheld VHF Transceivers -- 5.3.7 Navigation and Communication VHF Control Panel -- 5.4.1 Universal Access Transceiver (UAT) -- 5.4.2 1090-MHz Mode S Extended Squitter (ES) -- 5.4.3 VHF Data Link (VDL) -- 5.4.4 MC-CDMA Broadband VHF (B-VHF) -- 5.4.5 AeroMACS 802.xx LAN Derivatives (WiMAX) -- 5.4.6 TDMA VHF Broadband (VDL Mode E) -- 5.4.7 VDL-B/ETDMA (VDL Extension) -- 5.4.8 New Generation of Public Safety and Specialized Mobile Radio -- 5.5.1 GNSS Augmentation VDL-Broadcast (GAVDL-B) -- 5.5.2 Radio Automatic Dependent Surveillance- Broadcast (RADS-B) -- 5.5.3 Types of Aeronautical Radio Surveillance -- 5.5.4 RADS-B Ground Segment -- 5.5.5 RADS-B Airborne Segment -- 5.5.6 Integrated Radio Surface Movement Surveillance (I-RSMS) System -- 5.6.1 HF Radio Range and Coverage -- 5.6.2 Legacy of HF Radio -- 5.6.3 HF Radio Equipment -- 5.6.4 System Configuration of HF Transceiver -- 5.6.5 Avionic HF Radio Boxes -- 5.6.6 Selective Calling (SELCAL) -- 5.6.7 HF Data-Link (HDL) System -- 5.7.1 Global Aircraft Tracking (GAT) -- 5.7.2 Satellite Data Link (SDL) -- 5.7.3 GNSS Augmentation SDL (GASDL) -- 5.7.4 Satellite Automatic Dependent Surveillance-Broadcast (SADS-B) -- 5.8.1 Radio Automatic Identification System (R-AIS) -- 5.8.2 Satellite Automatic Identification System (S-AIS) -- Chapter 6 Global Satellite Augmentation Systems -- 6.2.1 Passive GDSS -- 6.2.2 Active GDSS -- 6.2.3 Hybrid GDSS -- 6.3.1 Maritime Navigation Satellite System (MNSS) -- 6.3.2 Land Navigation Satellite System (LNSS).

6.3.3 Aeronautical Navigation Satellite System (ANSS) -- 6.6.1 RSAS EGNOS -- 6.6.2 RSAS MSAT (MTSAS/JMA) -- 6.6.3 RSAS WAAS -- 6.6.4 RSAS SDCM -- 6.6.5 RSAS SNAS -- 6.6.6 RSAS GAGAN -- 6.6.7 RSAS ASAS -- 6.7.1 Current and New Aeronautical CNS Systems -- 6.7.2 RSAS System Configuration -- 6.7.3 Future RSAS Satellite Communications and Navigation (SCN) System -- 6.7.4 Future Satellite Automatic Dependent Surveillance (SADS) System -- 6.7.5 In-Flight Special Effects of the RSAS Networks -- 6.8.1 NovAtel Reference Receiver G-II -- 6.8.2 MCS -- 6.8.3 GES -- 6.8.4 Ground Communication Network (GCN) -- 6.8.5 Space Segment -- Chapter 7 Stratospheric Communication Platforms -- 7.1.1 Technical and Geometry Aspect of SCP -- 7.1.2 Recent Developments of Space Segments -- 7.1.3 SCP Ground Segment -- 7.2.1 General Atomic SCP Network -- 7.2.2 SkyTower (Helios) SCP Global Network -- 7.3.1 Sky Station Global Network -- 7.3.2 TAO (SkyNet) SCP Network -- INDEX -- SUPPORTING MATERIALS.

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Electronic reproduction. Ann Arbor, Michigan : ProQuest Ebook Central, 2024. Available via World Wide Web. Access may be limited to ProQuest Ebook Central affiliated libraries.

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