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Dynamic Coded Cooperation Using Multiple Turbo Codes in Wireless Relay Networks

机译:无线中继网络中使用多个Turbo码的动态编码协作

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摘要

In this paper, we propose a dynamic coded cooperation using multiple turbo codes in wireless relay networks where both relay and destination are equipped with a sensing device and the relay is assumed to determine autonomously if it should cooperate or not. We first elucidate the fact that the puncturing patterns of the multiple turbo codes determine the achievable diversity order by deriving their pairwise error probabilities (PEP). This is followed by a derivation of a simple power detector at the destination that can estimate a precise duration of cooperation phase upon decoding information. Furthermore, we investigate the impact of process delay due to cognitive processing at the relay, which results in the loss of diversity gain, and propose a simple null padding as its countermeasure. Computer simulations show that our proposed approach is able to achieve a full diversity and the frame error rate (FER) performance superior to that of conventional cooperative communications that make use of turbo coding structure even in practical scenarios.
机译:在本文中,我们提出了一种在无线中继网络中使用多个Turbo码的动态编码协作,其中中继器和目的地均配备有传感设备,并假设中继器可以自主确定是否应该协作。我们首先阐明一个事实,即多个turbo码的打孔模式通过推导它们的成对错误概率(PEP)来确定可实现的分集阶数。接下来是在目的地的简单功率检测器的推导,该功率检测器可以在解码信息时估计协作阶段的精确持续时间。此外,我们研究了中继上由于认知处理而导致的过程延迟的影响,这会导致分集增益的损失,并提出了一种简单的空填充作为其对策。计算机仿真表明,即使在实际情况下,我们提出的方法也能够实现完全的分集和优于使用Turbo编码结构的传统协作通信的帧错误率(FER)性能。

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