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An Interleaving Structure for Guaranteed QoS in Real-Time Broadcasting Systems

机译:实时广播系统中保证QoS的交错结构

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Providing high-quality broadcast services for soft real-time applications over wireless networks such as CDMA2000, which have high bit error rates, requires the control of errors that occur during data transmission. Reed-Solomon (RS) forward error correction (FEC) in the medium access control (MAC) layer performs this role in 3G broadcast services. We propose new analytic models for predicting the performance of RS coding and its execution time, which take into account the memory property of a fading channel, different channel conditions, and a variable level of block interleaving. We identify RS decoding as a significant cause of variability in execution time, taking the form of jitter, which depends on the channel conditions. We analyze the size of buffer required to absorb the jitter under different channel conditions. We then formulate a trade-off between the performance of RS coding and the delay that it causes in transmitting a fixed amount of data with different levels of block interleaving. Finally, we show how to balance the quality with which content is presented against an acceptable buffering delay, which is very important to soft real-time applications, by using an adequate level of block interleaving. This study offers a guide for the provision of efficient broadcast services in real time with stochastically guaranteed quality.
机译:通过具有高误码率的诸如CDMA2000之类的无线网络为软实时应用提供高质量的广播服务,需要控制在数据传输期间发生的错误。媒体访问控制(MAC)层中的Reed-Solomon(RS)前向纠错(FEC)在3G广播服务中扮演此角色。我们提出了一种新的分析模型来预测RS编码的性能及其执行时间,其中考虑了衰落信道的存储属性,不同的信道条件以及可变的块交织水平。我们将RS解码确定为执行时间可变性的重要原因,采取抖动形式,具体取决于信道条件。我们分析了吸收不同通道条件下的抖动所需的缓冲区大小。然后,我们在RS编码的性能与其在传输具有不同级别的块交错级别的固定数量的数据时引起的延迟之间进行权衡。最后,我们展示了如何通过使用适当级别的块交织,在呈现内容的质量与可接受的缓冲延迟之间进行平衡,这对于软实时应用程序非常重要。这项研究为以随机保证的质量实时提供有效的广播服务提供了指导。

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