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Anytime Characteristics of Protograph-Based LDPC Convolutional Codes

机译:基于Protograph的LDPC卷积码的随时特性

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摘要

Anytime transmission has been shown to be an effective means of stabilizing an unstable system over noisy channels. A crucial issue in implementing anytime transmission strategies is the design of anytime codes that offer good finite-length performance and asymptotic anytime properties. This paper introduces an efficient anytime code derived from protograph-based low-density parity-check convolutional codes known as extended S-LDPCC (XS-LDPCC) codes. The asymptotic anytime properties of XS-LDPCC codes over both the binary erasure channel (BEC) and the binary-input additive white Gaussian noise (BIAWGN) channel are demonstrated through density evolution. By means of certain observations verified by simulations, we provide accurate estimates of the delay exponents of XS-LDPCC codes over the BEC and the BIAWGN channel. Through simulations, the finite-length performance of XS-LDPCC codes and the effects of different code design parameters are quantified.
机译:传输随时被证明是稳定嘈杂信道上不稳定系统的有效手段。实施随时传输策略的关键问题是随时代码的设计,这些代码可提供良好的有限长度性能和渐近随时属性。本文介绍了一种有效的随时可用代码,该代码是从基于原型的低密度奇偶校验卷积代码派生而来的,称为扩展S-LDPCC(XS-LDPCC)代码。通过密度演化证明了在二进制擦除信道(BEC)和二进制输入加性高斯白噪声(BIAWGN)信道上XS-LDPCC码的渐近随时性。通过仿真验证的某些观察结果,我们提供了在BEC和BIAWGN信道上XS-LDPCC码的延迟指数的准确估计。通过仿真,可以量化XS-LDPCC代码的有限长度性能以及不同代码设计参数的影响。

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