Joint Energy-Efficient Single Relay Selection and Power Allocation for Analog Network Coding with Three Transmission Phases

B. M. Elhalawany, M. Elsabrouty, O. Muta, A. A. El-Rahman, H. Furukawa
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引用次数: 16

Abstract

The multiple access broadcast (MABC) is an effective two phases transmission (2P) ANC protocol for the half-duplex (HD) communication mode. However, MABC does not make use of channel gain of the direct link (DL) no matter how strong it is. On the other hand, the time division broadcast (TDBC) is known as a three phases transmission (3P) protocol which enables transceivers to utilize DL and thus offers the possibility to achieve higher performance compared with the MABC at the expense of a reduced spectral efficiency due to the one extra transmission phase. In this paper, we investigate a joint single relay selection and power allocation schemes for energy-efficient wireless communication systems with analog network coding (ANC) for TDBC, where two-way relay channel with two end nodes and N parallel relay nodes is considered under an assumption of perfect channel-state information (CSI). Our objective is to minimize the total system transmit power consumption under quality-of-service (QoS) constraints for TDBC protocol with joint single relay selection and nodes power allocation. In addition, a zero-forcing based relay signal combining technique that combines the signals received at the 1st and 2nd transmission phases, also known as zero-forcing relay power allocation (ZF-RPA), is also investigated. Numerical simulation shows that the traditional VG-RPA is more energy-efficient than the ZF-RPA scheme for TDBC in cases with and without utilizing DL.
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三传输阶段模拟网络编码联合节能单中继选择与功率分配
MABC (multiple access broadcast)是半双工(HD)通信模式下一种有效的2P (two phase transmission) ANC协议。然而,MABC不利用直接链路(DL)的信道增益,无论它有多强。另一方面,时分广播(TDBC)被称为三相传输(3P)协议,它使收发器能够利用DL,从而提供了与MABC相比实现更高性能的可能性,但代价是由于一个额外的传输相位而降低了频谱效率。本文研究了一种基于TDBC模拟网络编码(ANC)的节能无线通信系统的联合单中继选择和功率分配方案,该方案考虑了具有2个终端节点和N个并行中继节点的双向中继信道,并且假设信道状态信息(CSI)完美。我们的目标是通过联合单中继选择和节点功率分配,在服务质量(QoS)约束下最小化TDBC协议的总系统传输功耗。此外,还研究了一种基于零强迫的继电器信号合并技术,该技术将接收到的第一和第二传输阶段的信号合并,也称为零强迫继电器功率分配(ZF-RPA)。数值模拟结果表明,在使用DL和不使用DL的情况下,传统的VG-RPA方案比ZF-RPA方案更节能。
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