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Zero-forcing relay power allocation for TDBC-based bidirectional relay networks

机译:基于TDBC的双向中继网络的零强制中继功率分配

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Although the amplify-and-forward (AF) relaying is an effective and simple technique for cooperative communication networks, it introduces a noise enhancement problem. This problem occurs when the effects of interference and the multipath fades are amplified during the transmission from the source to the relay. AF is usually used with the multiple access broadcast (MABC) protocol which is a two phases transmission (2P) analog network coding (ANC) protocol for the half-duplex (HD) communication mode. However, MABC is not designed to utilize the direct link (DL) signal no matter how strong it is. To utilize the DL signal, a three transmission phases protocol known as time-division broadcast protocol (TDBC) was proposed at which both end nodes transmit their message at consecutive time slots and the relay nodes broadcasts a combined signal at the 3 time slot. To deal with the noise enhancement problem and improve the system performance, this paper proposes a zero-forcing based relay power allocation (ZF-RPA) scheme to be used with TDBC protocol, where the noise enhancement is mitigated by introducing adaptive ZF gains at the relay node that inverses the channels effects between sources and relay when the signal is constructed to be transmitted at the third phase of the TDBC. Analytical results of the ZF-RPA scheme is compared to the traditional variable-gain (VG-RPA) scheme under the same nodes power allocation. Simulation results show that the ZF-RPA is superior for all channel qualities in terms of the outage probability compared to the traditional VG-RPA. The total system sum rate comparison reveals that the ZF-RPA scheme could outperform the VG-RPA scheme as long as the channel qualities of the relay-transceiver links are less than certain threshold. This paper also clarifies that it is effective to select either ZF or VG-RPA according to the channel qualities and it can be implemented with VHDL by introducing an adaptive control unit (ACU).
机译:尽管放大转发(AF)中继是一种用于协作通信网络的有效且简单的技术,但它引入了噪声增强问题。在从源到中继的传输过程中,干扰和多径衰落的影响被放大时,就会出现此问题。 AF通常与多址广播(MABC)协议一起使用,该协议是用于半双工(HD)通信模式的两阶段传输(2P)模拟网络编码(ANC)协议。但是,MABC并非设计为利用直接链路(DL)信号,无论其强度如何。为了利用DL信号,提出了被称为时分广播协议(TDBC)的三个传输阶段协议,在该协议中,两个端节点在连续的时隙处发送它们的消息,而中继节点在3个时隙处广播组合的信号。为了解决噪声增强问题并提高系统性能,本文提出了一种基于零强制的中继功率分配(ZF-RPA)方案,该方案与TDBC协议一起使用,其中通过在信号源处引入自适应ZF增益来缓解噪声增强。当信号被构造为在TDBC的第三阶段传输时,中继节点反转源与中继之间的信道效应。在相同节点功率分配的情况下,将ZF-RPA方案的分析结果与传统的可变增益(VG-RPA)方案进行了比较。仿真结果表明,与传统的VG-RPA相比,ZF-RPA在所有通道质量方面的中断概率都更高。总体系统总速率比较显示,只要中继收发器链路的信道质量小于特定阈值,ZF-RPA方案就可以胜过VG-RPA方案。本文还阐明,根据信道质量选择ZF或VG-RPA是有效的,并且可以通过引入自适应控制单元(ACU)来使用VHDL来实现。

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