期刊文献+

DVB-H系统的关键技术及发展趋势 被引量:1

Key Techniques and Prospects of DVB-H System
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摘要 介绍了手持数字视频广播(DVB-H)的系统结构、网络构架和发展现状,详细讨论了DVB-H系统中的时间分片、多协议封装前向纠错、深度符号交织和无缝业务切换机制等关键技术,从系统参数、建网成本及商用进程等多个角度对DVB-H、地面数字多媒体广播(T-DMB)和MediaFLO三大手机电视地面传输制式进行了分析比较,最后以数字电视广播结合移动通信网络的交互式业务应用为例阐述了未来技术的发展方向。 The system structure, network architecture and current development state of DVB - H are described. Then, the key techniques such as time slicing, Multi -protocol Encapsulation Forward Error Correction ( MPE FEC), in - depth interleaving and seamless handover are discussed in detail. The technical comparison among DVB - H, T - DMB and MediaFLO in system parameter, network cost and business process is also given. Finally, some interactive services through the combination of digital television broadcasting network and mobile communications network are presented and the future development is also presented.
作者 冯伟 卢官明
出处 《电讯技术》 2008年第6期98-104,共7页 Telecommunication Engineering
关键词 手持数字视频广播 时间分片 多协议封装 前向纠错 无缝业务切换 发展趋势 DVB - H time - slicing MPE FEC seamless handover development trend
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参考文献18

  • 1ETSI EN 300 744, Digital Video Broadcasting (DVB) : Framing structure, channel coding and modulation for digital terrestrial television[ S]o
  • 2ETSI EN 302 304, Digital Video Broadcasting (DVB) : Transmission System for Handheld Terminals ( DVB - H) [S].
  • 3ETSI TR 102 377, Digital Video Broadcasting (DVB): DVB - H Implementation Guidelines [ S ].
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二级参考文献2

  • 1DVB Forum homepage, www.dvb.org.
  • 2DVB forum, Draft DVB-H Standard, available from http://www.dvb.org/index.php?id=278.

同被引文献15

  • 1方科,王蔚然.移动数字电视接收与DVB-H[J].电视技术,2005,29(1):42-44. 被引量:3
  • 2李智群;王志功.射频集成电路与系统[M]北京:科学出版社,2008134-137.
  • 3Alam S K. A 2 GHz low power down-conversion quadrature mixer in 0.18-μm CMOS[A].Bangalore,India,2007.146-154.
  • 4Li J,Cheng Z Q,Fu K H. Design and linearity analysis of current bleeding CMOS mixer for GPS application[A].Hangzhou,Chi-na,2008.339-342.
  • 5Salem R F,Galal S H,Tawfik M S. A new highly linear CMOS mixer suitable for deep submicron technologies[A].Dubrovnik,Croatia,2002.81-84.
  • 6Comeau J P,Cressler J D,Lee J. An 8.4-12.0 GHz down-conversion mixer implemented in SiGe HBT technology[A].Atlanta,USA,2004.13-16.
  • 7Li W,Glisic S,Borngraeber J. A single-ended fully integrated SiGe 77/79 GHz receiver for automotive radar[J].IEEE Journal of Solid-State Circuits,2008,(09):1897-1908.doi:10.1109/JSSC.2008.2003994.
  • 8Cui J Q,Lian Y,Li M F. A low voltage dual gate integrated CMOS mixer For 2.4GHz band applications[A].Vancouver,Canada,2004.i-964-7.
  • 9Hermann C,Tiebout M,Klar H. A 0.6-V1.6-mW transformer-based 2.5GHz down conversion mixer with +5.4dB gain and-2.8dBm IIP3 in 0.13μm CMOS[J].IEEE Transactions on Microwave theory and Techniques,2005,(02):488-495.doi:10.1109/TMTT.2004.840762.
  • 10Seo J B,Kim J H,Sun H. A low-power and highgain mixer for UWB systems[J].IEEE Microwave and Wireless Components Letters,2008,(12):803-805.

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