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Downlink Cooperative Broadcast Transmission Based on Superposition Coding in a Relaying System for Future Wireless Sensor Networks

机译:未来无线传感器网络中继系统中基于叠加编码的下行协作广播传输

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This study investigates the superiority of cooperative broadcast transmission over traditional orthogonal schemes when applied in a downlink relaying broadcast channel (RBC). Two proposed cooperative broadcast transmission protocols, one with an amplify-and-forward (AF) relay, and the other with a repetition-based decode-and-forward (DF) relay, are investigated. By utilizing superposition coding (SupC), the source and the relay transmit the private user messages simultaneously instead of sequentially as in traditional orthogonal schemes, which means the channel resources are reused and an increased channel degree of freedom is available to each user, hence the half-duplex penalty of relaying is alleviated. To facilitate a performance evaluation, theoretical outage probability expressions of the two broadcast transmission schemes are developed, based on which, we investigate the minimum total power consumption of each scheme for a given traffic requirement by numerical simulation. The results provide details on the overall system performance and fruitful insights on the essential characteristics of cooperative broadcast transmission in RBCs. It is observed that better overall outage performances and considerable power gains can be obtained by utilizing cooperative broadcast transmissions compared to traditional orthogonal schemes.
机译:这项研究调查了协作广播传输在下行链路中继广播信道(RBC)中的应用优于传统正交方案的优势。研究了两种建议的协作广播传输协议,一种具有放大转发(AF)中继,另一种具有基于重复的解码转发(DF)中继。通过使用叠加编码(SupC),源和中继同时发送私人用户消息,而不是像传统的正交方案那样顺序发送私人用户消息,这意味着信道资源被重用,每个用户可以使用增加的信道自由度,因此减轻了中继的半双工损失。为了促进性能评估,开发了两种广播传输方案的理论中断概率表达式,在此基础上,我们通过数值模拟研究了给定流量需求下每种方案的最小总功耗。结果提供了有关整个系统性能的详细信息,以及有关RBC中协作广播传输的基本特征的卓有成效的见解。可以看出,与传统的正交方案相比,利用协作广播传输可以获得更好的总体中断性能和可观的功率增益。

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