Rateless space-time coding

U. Erez, G. Wornell, M. Trott
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引用次数: 17

Abstract

Rateless codes are good codes of infinite length that have the property that prefixes of such codes are themselves good codes. This makes them attractive for applications in which the channel quality is uncertain, where systems transmit as much of a codeword as necessary for decoding to be possible. In particular, rateless codes are potentially attractive for wireless communication. In a recent work, a rateless coding scheme was proposed for the AWGN channel, based on layering, repetition and random dithering. We extend this scheme to multiple-input single-output (MISO) Gaussian channels. We show that the rate loss associated with orthogonal design space-time codes may be alleviated by layering and dithering, very similar to the rateless approach for the AWGN channel. We then combine the two schemes and arrive at a close-to-capacity rateless code for MISO channels. The required complexity depends on the fraction of capacity that is targeted, is linear in the capacity of the channel and does not depend on the number of transmit antennas. Furthermore, the coding scheme uses only one base AWGN code
无速率空时编码
无速率码是具有无限长度的好码,这种码的前缀本身就是好码。这使得它们对信道质量不确定的应用程序很有吸引力,在这些应用程序中,系统传输尽可能多的码字以实现解码。特别是,无速率码对于无线通信具有潜在的吸引力。在最近的一项研究中,提出了一种基于分层、重复和随机抖动的无速率AWGN信道编码方案。我们将该方案扩展到多输入单输出(MISO)高斯信道。我们表明,与正交设计空时码相关的速率损失可以通过分层和抖动来减轻,这与AWGN信道的无速率方法非常相似。然后,我们将这两种方案结合起来,得到MISO信道的接近容量的无速率代码。所需的复杂性取决于目标容量的比例,与信道容量呈线性关系,而不取决于发射天线的数量。此外,该编码方案仅使用一个AWGN基码
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