DVB-NGH: The Next Generation of Digital Broadcast Services to Handheld Devices

This paper reviews the main technical solutions adopted by the next-generation mobile broadcasting standard DVB-NGH, the handheld evolution of the second-generation digital terrestrial TV standard DVB-T2. The main new technical elements introduced with respect to DVB-T2 are: layered video coding wit...

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Veröffentlicht in:IEEE transactions on broadcasting Jg. 60; H. 2; S. 246 - 257
Hauptverfasser: Gomez-Barquero, David, Douillard, Catherine, Moss, Peter, Mignone, Vittoria
Format: Journal Article
Sprache:Englisch
Veröffentlicht: New York IEEE 01.06.2014
The Institute of Electrical and Electronics Engineers, Inc. (IEEE)
Institute of Electrical and Electronics Engineers
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ISSN:0018-9316, 1557-9611
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Abstract This paper reviews the main technical solutions adopted by the next-generation mobile broadcasting standard DVB-NGH, the handheld evolution of the second-generation digital terrestrial TV standard DVB-T2. The main new technical elements introduced with respect to DVB-T2 are: layered video coding with multiple physical layer pipes, time-frequency slicing, full support of an IP transport layer with a dedicated protocol stack, header compression mechanisms for both IP and MPEG-2 TS packets, new low-density parity check coding rates for the data path (down to 1/5), nonuniform constellations for 64 Quadrature Amplitude Modulation (QAM) and 256QAM, 4-D rotated constellations for Quadrature Phase Shift Keying (QPSK), improved time interleaving in terms of zapping time, end-to-end latency and memory consumption, improved physical layer signaling in terms of robustness, capacity and overhead, a novel distributed multiple input-single output transmit diversity scheme for single-frequency networks (SFNs), and efficient provisioning of local content in SFNs. All these technological solutions, together with the high performance of DVB-T2, make DVB-NGH a real next-generation mobile multimedia broadcasting technology. In fact, DVB-NGH can be regarded the first third-generation broadcasting system because it allows for the possibility of using multiple input-multiple output antenna schemes to overcome the Shannon limit of single antenna wireless communications. Furthermore, DVB-NGH also allows the deployment of an optional satellite component forming a hybrid terrestrial-satellite network topology to improve the coverage in rural areas where the installation of terrestrial networks could be uneconomical.
AbstractList This paper reviews the main technical solutions adopted by the next-generation mobile broadcasting standard DVB-NGH, the handheld evolution of the second-generation digital terrestrial TV standard DVB-T2. The main new technical elements introduced with respect to DVB-T2 are: layered video coding with multiple physical layer pipes, time-frequency slicing, full support of an IP transport layer with a dedicated protocol stack, header compression mechanisms for both IP and MPEG-2 TS packets, new low-density parity check coding rates for the data path (down to 1/5), nonuniform constellations for 64 Quadrature Amplitude Modulation (QAM) and 256QAM, 4-D rotated constellations for Quadrature Phase Shift Keying (QPSK), improved time interleaving in terms of zapping time, end-to-end latency and memory consumption, improved physical layer signaling in terms of robustness, capacity and overhead, a novel distributed multiple input-single output transmit diversity scheme for single-frequency networks (SFNs), and efficient provisioning of local content in SFNs. All these technological solutions, together with the high performance of DVB-T2, make DVB-NGH a real next-generation mobile multimedia broadcasting technology. In fact, DVB-NGH can be regarded the first third-generation broadcasting system because it allows for the possibility of using multiple input-multiple output antenna schemes to overcome the Shannon limit of single antenna wireless communications. Furthermore, DVB-NGH also allows the deployment of an optional satellite component forming a hybrid terrestrial-satellite network topology to improve the coverage in rural areas where the installation of terrestrial networks could be uneconomical.
This paper reviews the main technical solutions adopted by the next generation mobile broadcasting standard DVB-NGH, the handheld evolution of the second generation digital terrestrial TV standard DVB-T2. The main technical elements introduced with respect to DVB-T2 are: layered video coding with multiple physical layer pipes, time-frequency slicing, full support of an IP transport layer with a dedicated protocol stack, header compression mechanisms for both IP and MPEG-2 TS packets, new LDPC coding rates for the data path (down to 1/5), non-uniform constellations for 64QAM and 256QAM, four-dimensional rotated constellations for QPSK, improved time interleaving in terms of zapping time, end-to-end latency and memory consumption, improved physical layer signaling in terms of robustness, capacity and overhead, a novel distributed MISO transmit diversity scheme for SFNs, and efficient provisioning of local content in SFNs. All these technological solutions, together with the high performance of DVB-T2, make DVB-NGH a real next-generation mobile multimedia broadcasting technology. In fact, DVB-NGH can be regarded the first third-generation broadcasting system because it allows for the possibility of using multiple input multiple output MIMO antenna schemes to overcome the Shannon limit of single antenna wireless communications. Furthermore, DVB-NGH also allows the deployment of an optional satellite component forming a hybrid terrestrial-satellite network topology to improve the coverage in rural areas where the installation of terrestrial networks could be uneconomical.
Author Gomez-Barquero, David
Mignone, Vittoria
Moss, Peter
Douillard, Catherine
Author_xml – sequence: 1
  givenname: David
  surname: Gomez-Barquero
  fullname: Gomez-Barquero, David
  email: dagobar@iteam.upv.es
  organization: iTEAM Res. Inst., Univ. Politec. de Valencia, Valencia, Spain
– sequence: 2
  givenname: Catherine
  surname: Douillard
  fullname: Douillard, Catherine
  email: catherine.douillard@telecom-bretagne.eu
  organization: Inst. Telecom, Telecom Bretagne, Plouzané, France
– sequence: 3
  givenname: Peter
  surname: Moss
  fullname: Moss, Peter
  email: peter.moss@rd.bbc.co.uk
  organization: Dept. of R&D, British Broadcasting Corp., London, UK
– sequence: 4
  givenname: Vittoria
  surname: Mignone
  fullname: Mignone, Vittoria
  email: vittoria.mignone@rai.it
  organization: RAI Res. & Tech. Innovation Centre, Turin, Italy
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Issue 2
Keywords DVB-NGH
hybrid terrestrial satellite
mobile TV
ATSC 30
FoBTV
rotated constellations
single carrier OFDM
MIMO
MISO
time-frequency slicing
DVB-T2
Time-frequency slicing
Hybrid terrestrial-satellite
Mobile TV
Single carrier OFDM
Rotated constellations
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Snippet This paper reviews the main technical solutions adopted by the next-generation mobile broadcasting standard DVB-NGH, the handheld evolution of the...
This paper reviews the main technical solutions adopted by the next generation mobile broadcasting standard DVB-NGH, the handheld evolution of the second...
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SubjectTerms Antennas
ATSC 3.0
Broadcasting
Coding
Computer Science
Constellations
Digital
Digital broadcasting
Digital video broadcasting
DVB-NGH
DVB-T2
Engineering Sciences
FoBTV
hybrid terrestrial satellite
IP (Internet Protocol)
MIMO
MISO
Mobile communication
mobile TV
Multiplexing
Networks
Radio frequency
Robustness
rotated constellations
Rural areas
Signal and Image processing
single carrier OFDM
time-frequency slicing
Title DVB-NGH: The Next Generation of Digital Broadcast Services to Handheld Devices
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