Direct-To-Device Satellite Communications Handbook (Paperback)
Language: English
Published by Independently Published, 2026
- Softcover
- New

Seller: Grand Eagle Retail, Bensenville, IL, U.S.A.Grand Eagle Retail
AbeBooks seller since October 12, 2005
Condition: New
US$ 106.46
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Paperback. HOW DO YOU CONNECT AN ORDINARY SMARTPHONE TO A SATELLITE HUNDREDS OF KILOMETRES ABOVE EARTH-AND MAKE THE LINK ACTUALLY WORK?A smartphone was never designed to communicate directly with a spacecraft travelling at orbital velocity. Yet direct-to-device satellite connectivity is turning that seemingly impossible link into a practical communications architecture.The challenge is not simply putting a cellular radio in space. It is closing the link-despite limited handset power, small antennas, extreme Doppler, long propagation paths, fading, interference, spectrum constraints, and rapidly changing orbital geometry.Direct-to-Device Satellite Communications Handbook takes you through the complete engineering chain, from orbit and link budget to RF payload, waveform, NTN protocols, network architecture, verification, deployment, and constellation economics.WHAT YOU WILL LEARNOrbital mechanics, coverage geometry, slant range, elevation, and pass durationComplete forward- and return-link budget methodologyPropagation loss, fading, shadowing, multipath, and handset body effectsSpacecraft apertures, phased arrays, beamforming, EIRP, G/T, and RF front endsSpectrum licensing, supplemental coverage, PFD limits, and coexistence3GPP Non-Terrestrial Network architecture and protocol adaptationDoppler shift, Doppler rate, propagation delay, timing, and frequency compensationRandom access, mobility, handover, tracking areas, and beam managementWaveforms, coding, repetition, link adaptation, and low-SNR operationCapacity planning, interference management, frequency reuse, and beam hoppingGateways, feeder links, rain attenuation, site diversity, and ground infrastructureTransparent and regenerative payload architecturesMessaging, emergency communications, narrowband voice, IoT, and store-and-forward servicesChannel emulation, satellite emulation, OTA testing, and field validationSecurity, authentication, privacy, GNSS dependency, spoofing, and threat modellingPositioning, timing, ranging, and delay-tolerant networkingMaritime, aviation, vehicular, wearable, and machine-type terminalsConstellation deployment, lifetime, replenishment, reliability, and economicsComplete reference architectures, worked examples, design worksheets, and problem setsFROM ORBIT TO HANDSETThe central engineering reality is simple: THE HANDSET IS THE CONSTRAINED ELEMENT.Its limited transmit power, antenna gain, orientation, blockage, and operating environment place demanding requirements on the spacecraft, waveform, protocol, spectrum plan, and constellation.This handbook develops that relationship quantitatively-showing how orbital geometry becomes a link budget, how the link budget drives payload and waveform decisions, how those decisions affect capacity and interference, and how the resulting architecture must ultimately be verified and deployed.BUILT FOR ENGINEERSDesigned for RF, wireless, telecommunications, satellite, aerospace, 5G/6G, NTN, antenna, payload, modem, chipset, and systems engineers-as well as researchers, graduate students, network architects, satellite operators, and technical programme teams.Prior satellite experience is helpful, but not required. A foundation in electromagnetics, digital communications, and probability is sufficient to follow the engineering chain.DON'T JUST STUDY WHAT DIRECT-TO-DEVICE SATELLITE CONNECTIVITY PROMISES.UNDERSTAND THE ENGINEERING THAT MAKES IT WORK.S Shipping may be from multiple locations in the US or from the UK, depending on stock availability.…
Seller Inventory # 9798171711634
- Title
- Direct-To-Device Satellite Communications Handbook (Paperback)
- Author
- P.E. Marcus R. Whitfield
- Publisher
- Independently Published
- Publication year
- 2026
- Condition
- new
- Binding
- Paperback
- Language
- English
- ISBN 13
- 9798171711634
HOW DO YOU CONNECT AN ORDINARY SMARTPHONE TO A SATELLITE HUNDREDS OF KILOMETRES ABOVE EARTH—AND MAKE THE LINK ACTUALLY WORK?
A smartphone was never designed to communicate directly with a spacecraft travelling at orbital velocity. Yet direct-to-device satellite connectivity is turning that seemingly impossible link into a practical communications architecture.
The challenge is not simply putting a cellular radio in space. It is closing the link—despite limited handset power, small antennas, extreme Doppler, long propagation paths, fading, interference, spectrum constraints, and rapidly changing orbital geometry.
Direct-to-Device Satellite Communications Handbook takes you through the complete engineering chain, from orbit and link budget to RF payload, waveform, NTN protocols, network architecture, verification, deployment, and constellation economics.
WHAT YOU WILL LEARN-
Orbital mechanics, coverage geometry, slant range, elevation, and pass duration
-
Complete forward- and return-link budget methodology
-
Propagation loss, fading, shadowing, multipath, and handset body effects
-
Spacecraft apertures, phased arrays, beamforming, EIRP, G/T, and RF front ends
-
Spectrum licensing, supplemental coverage, PFD limits, and coexistence
-
3GPP Non-Terrestrial Network architecture and protocol adaptation
-
Doppler shift, Doppler rate, propagation delay, timing, and frequency compensation
-
Random access, mobility, handover, tracking areas, and beam management
-
Waveforms, coding, repetition, link adaptation, and low-SNR operation
-
Capacity planning, interference management, frequency reuse, and beam hopping
-
Gateways, feeder links, rain attenuation, site diversity, and ground infrastructure
-
Transparent and regenerative payload architectures
-
Messaging, emergency communications, narrowband voice, IoT, and store-and-forward services
-
Channel emulation, satellite emulation, OTA testing, and field validation
-
Security, authentication, privacy, GNSS dependency, spoofing, and threat modelling
-
Positioning, timing, ranging, and delay-tolerant networking
-
Maritime, aviation, vehicular, wearable, and machine-type terminals
-
Constellation deployment, lifetime, replenishment, reliability, and economics
-
Complete reference architectures, worked examples, design worksheets, and problem sets
The central engineering reality is simple: THE HANDSET IS THE CONSTRAINED ELEMENT.
Its limited transmit power, antenna gain, orientation, blockage, and operating environment place demanding requirements on the spacecraft, waveform, protocol, spectrum plan, and constellation.
This handbook develops that relationship quantitatively—showing how orbital geometry becomes a link budget, how the link budget drives payload and waveform decisions, how those decisions affect capacity and interference, and how the resulting architecture must ultimately be verified and deployed.
BUILT FOR ENGINEERSDesigned for RF, wireless, telecommunications, satellite, aerospace, 5G/6G, NTN, antenna, payload, modem, chipset, and systems engineers—as well as researchers, graduate students, network architects, satellite operators, and technical programme teams.
Prior satellite experience is helpful, but not required. A foundation in electromagnetics, digital communications, and probability is sufficient to follow the engineering chain.
DON’T JUST STUDY WHAT DIRECT-TO-DEVICE SATELLITE CONNECTIVITY PROMISES.
UNDERSTAND THE ENGINEERING THAT MAKES IT WORK.
START WITH THE LINK BUDGET. BUILD THE SYSTEM FROM THERE.
"Synopsis" may belong to another edition of this title.
Grand Eagle Retail
Bensenville, IL, U.S.A.
AbeBooks seller since October 12, 2005
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