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Physical layer DVB-SH performance prediction based on mutual information

机译:基于互信息的物理层DVB-SH性能预测

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摘要

Digital Video Broadcasting-Satellite Handled (DVB-SH) is a hybrid satellite terrestrial broadcasting standard dedicated to provide video or audio services for handheld terminals. On the satellite part, this standard can make use of interleaving mechanisms to mitigate the effects of the Land Mobile Satellite channel. As a result, these mechanisms enable the in-time distribution of a codeword over a duration ranging from 100 ms to about 30 s, depending on their parameters. This mechanism significantly improves the error recovery performance of the code; however in the literature, a theoretical evaluation at system level of this improvement is missing. Moreover, carrying out Monte-Carlo simulations implementing real decoding processes on significant traveled distances is time prohibitive. We propose hereafter a prediction method compatible with fast simulations to quantitatively evaluate the system performance in terms of Rate, Erroneous Second Ratio, and zapping time. This method is based on the computation of the mutual information between emitted and received symbols for QPSK modulation and turbo coding. We demonstrate that our method reaches a prediction precision of the order of 0.1 dB, which is significantly better than two classical prediction methods. Moreover, our solution reduces the simulation time by a factor of 500 compared with Monte-Carlo. Beyond DVB-SH application, the presented approach can be applied in a large panel of satellite mobile systems and is completely new for the satellite community.
机译:卫星数字视频广播(DVB-SH)是一种混合卫星地面广播标准,专用于为手持终端提供视频或音频服务。在卫星方面,该标准可以利用交织机制来减轻陆地移动卫星信道的影响。结果,根据它们的参数,这些机制使得能够在从100ms到大约30s的持续时间内对码字进行及时分配。这种机制大大提高了代码的错误恢复性能;但是,在文献中,缺少在系统层面上对该改进进行的理论评估。而且,进行蒙特卡洛模拟以在较大的行进距离上实现真实的解码过程是禁止时间的。下文中,我们提出一种与快速仿真兼容的预测方法,以定量评估速率,错误的第二比率和切换时间方面的系统性能。该方法基于用于QPSK调制和Turbo编码的发射和接收符号之间的相互信息的计算。我们证明了我们的方法达到了0.1 dB的预测精度,这明显优于两种经典的预测方法。此外,与蒙特卡洛相比,我们的解决方案将仿真时间减少了500倍。除了DVB-SH应用之外,所提出的方法还可以应用在大范围的卫星移动系统中,并且对于卫星社区来说是全新的。

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