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Performance analysis and optimization of two-way cooperative communications in inter-vehicular networks

机译:车载网络中双向协作通信的性能分析和优化

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In this paper, we investigate a bidirectional communication between two vehicles where there is no direct link between them and other vehicles or roadside access points (AP) act as relays employed to help the communication. The statistical model of source-relay and relay-destination links are assumed cascaded Nakagami under vehicle-assisted scenario, and is assumed Nakagami under AP-assisted scenario. In both scenarios source-destination channel model is considered cascaded Nakagami and the relaying protocol is amplify and forward (AF). We derive a closed form expression for symbol error rate (SER) and present diversity analysis. We demonstrate that the cooperative scheme is able to achieve maximum diversity order in multi-relay cascaded Nakagami fading channels then we analyze and optimize the power allocated to the broadcasting and relaying phases. Optimum power allocation yields performance improvement 2dB to 7dB depending on the relay location and deployed modulation scheme.
机译:在本文中,我们研究了两辆车之间的双向通信,其中两辆车与其他车辆之间没有直接链接,或者路边接入点(AP)充当用于帮助通信的中继。假设源-中继和中继-目的地链路的统计模型在车辆辅助情况下级联为中神,在AP辅助情况下假定为中神。在这两种情况下,源-目标信道模型都被认为是级联的Nakagami,中继协议是放大转发(AF)。我们导出符号错误率(SER)的闭式表达式,并给出分集分析。我们证明了该协作方案能够在多中继级联Nakagami衰落信道中实现最大分集阶数,然后分析和优化分配给广播和中继阶段的功率。最佳功率分配可将性能提高2dB至7dB,具体取决于中继器位置和部署的调制方案。

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