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Dual Diversity Space-Time Coding for Multimedia Broadcast/Multicast Service in MIMO Systems

机译:MIMO系统中用于多媒体广播/组播服务的双分集时空编码

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摘要

Multimedia Broadcast/Multicast Service (MBMS) is a bandwidth efficient broadcast scheme for multimedia communications. To support prioritized transmissions, the unequal error protection (UEP) for multi-resolution multimedia sources can be realized through MBMS. Nevertheless, the enhancement on the transmission fidelity in base layer typically sacrifices the fidelity of enhancement layers. Herein, a novel dual diversity space-time coding (DDSTC) is proposed to exploit the intrinsic UEP capability of space-time codes by utilizing a constellation mapping duo for two consecutive transmission periods in multiple-input multiple-output (MIMO) systems. As compared with Alamouti coding, the DDSTC achieves coding gains on the transmission error rates of base layer without significant degradations on the enhancement layers. At the transmission rates of base and enhancement layers equal to 2 bits per transmission, the DDSTC obtains 1.3 dB and 3.0 dB coding gains for base layer in 2 x 2 and 2 x 3 MIMO systems respectively. Besides, analytical analysis on symbol error probabilities verifies that 6 dB asymptotic coding gain is reachable in rich transmit diversity scenarios. While attaining the considerable improvements on error rates, the DDSTC avoids the high decoding complexity by adopting our proposed decoding schemes. Simulation results show that DDSTC outperforms conventional UEP schemes based on hierarchical modulations or power allocations.
机译:多媒体广播/多播服务(MBMS)是一种用于多媒体通信的带宽有效的广播方案。为了支持优先传输,可以通过MBMS实现多分辨率多媒体源的不平等错误保护(UEP)。然而,基础层中传输保真度的增强通常会牺牲增强层的保真度。在此,提出了一种新颖的双分集空时编码(DDSTC),其通过在多输入多输出(MIMO)系统中利用两个连续传输周期的星座映射二重奏来利用空时码的固有UEP能力。与Alamouti编码相比,DDSTC在基础层的传输错误率上获得了编码增益,而在增强层上没有明显的下降。在基本层和增强层的传输速率等于每次传输2位的情况下,DDSTC在2 x 2和2 x 3 MIMO系统中分别获得1.3 dB和3.0 dB的基本层编码增益。此外,对符号错误概率的分析分析证明,在丰富的发射分集情况下,可以达到6 dB的渐近编码增益。 DDSTC在获得相当大的误码率改善的同时,通过采用我们提出的解码方案避免了高解码复杂度。仿真结果表明,DDSTC优于基于分层调制或功率分配的传统UEP方案。

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