TDS-OFDM based Digital Television Terrestrial Multimedia Broadcasting Standards

Jian Song, Chao Zhang, Jintao Wang, Yonglin Xue, Changyong Pan, Kewu Peng, Fang Yang, Wang Jun, Hui Yang, Yu Zhang, Zhixing Yang
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引用次数: 2

Abstract

As the most popularly utilized broadcasting network, digital terrestrial television broadcasting (DTTB) can provide multimedia information coverage for the broad audience in a very efficient way because of its characteristic of wide-range coverage and mobile reception ability. After promulgating the first generation DTTB standard, digital terrestrial/television multimedia broadcasting (DTMB), in 2006, China began to research and develop the next generation DTTB standard, namely DTMB-advanced (DTMB-A), aiming to support higher spectrum efficiency and further improve transmission reliability. In 2019, DTMB-A was accepted by ITU as the second generation international DTTB standard (as System C). Similar to DTMB, time-domain synchronous - orthogonal frequency division multiplexing (TDS-OFDM) based multi-carrier modulation scheme is adopted by DTMB-A. Thanks to the more flexible frame structure, advanced error correction coding and improved constellation mapping, DTMB-A offers 30% higher transmission capacity than DTMB under the same transmission conditions. Thus, DTMB-A can support both fixed and mobile reception more efficiently, and provide users with higher quality services such as ultra-high definition television (UHDTV). This paper first gives details of key technologies at the transmitter of DTMB/DTMB-A and introduce core algorithms at the receiver. Both laboratory test and field trial results will then be provided and analyzed, especially for the application of 4K UHDTV and single frequency network (SFN).
基于TDS-OFDM的数字电视地面多媒体广播标准
数字地面电视广播(DTTB)是目前使用最广泛的广播网络,由于其覆盖范围广、接收能力强的特点,可以非常有效地为广大受众提供多媒体信息覆盖。在2006年颁布了第一代数字地面/电视多媒体广播(DTMB)标准后,中国开始研究和开发下一代数字地面/电视多媒体广播(DTMB)标准,即DTMB-a,旨在支持更高的频谱效率和进一步提高传输可靠性。2019年,DTMB- a被国际电联接受为第二代国际DTTB标准(作为系统C),与DTMB类似,DTMB- a采用基于时域同步-正交频分复用(TDS-OFDM)的多载波调制方案。由于具有更灵活的帧结构、先进的纠错编码和改进的星座映射,在相同传输条件下,DTMB- a的传输容量比DTMB高30%。因此,DTMB-A可以更有效地支持固定和移动接收,为用户提供更高质量的服务,如超高清电视(UHDTV)。本文首先详细介绍了DTMB/DTMB- a的发射端关键技术,并介绍了接收端的核心算法。然后将提供和分析实验室测试和现场试验结果,特别是4K超高清电视和单频网络(SFN)的应用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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