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Performance Analysis of Physical Layer Network Coding for Two-Way Relaying over Non-Regenerative Communication Satellites

机译:非再生通信卫星双向中继的物理层网络编码性能分析

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Two-way relaying is one of the major applications of broadband communication satellites, for which Physical Layer Network Coding (PLNC) is an efficient technique. Earlier studies have considered satellites employing PLNC with onboard processing. This paper investigates the performance of PLNC over non-regenerative satellites, as a majority of the operational and planned satellites do not have onboard processing. Assuming that the channel magnitudes of the two users are equal, two operating conditions are considered with uncoded-QPSK relaying. In the first operating condition, both users are completely synchronized in phase and transmit power, and in the second operating condition, phase is not synchronized. The peak power constraint imposed by the satellite amplifier is considered and the error performance bounds are derived for both the conditions. The simulation results for end-to-end Bit Error Rate (BER) and throughput are provided. These results shall enable communication system designers to decide system parameters like power and linearity, and perform trade-off analysis between different relaying schemes.
机译:双向中继是宽带通信卫星的主要应用之一,物理层网络编码(PLNC)是一种有效的技术。早期的研究考虑了采用板载加工的PLNC的卫星。本文调查了PLNC对非再生卫星的表现,因为大多数操作和计划的卫星没有船上加工。假设两个用户的信道幅度是相等的,则用未编码QPSK中继考虑两个操作条件。在第一操作条件中,两个用户在相位和发射功率中完全同步,并且在第二操作条件下,阶段不同步。考虑由卫星放大器施加的峰值功率约束,并且导出误差性能界限。提供了端到端误码率(BER)和吞吐量的仿真结果。这些结果应使通信系统设计人员决定电源和线性等系统参数,并在不同的中继方案之间执行权衡分析。

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