能量收集两跳半双工中继系统的能量效率优化

Jing Zhao, Chenchen Liu, Zhengyu Zhang, Shibin Zhang, Ming Zhao
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引用次数: 0

摘要

在未来的移动卫星通信系统中,为了延长光伏板存储的能量耗尽后的卫星寿命,可能需要部署能量收集(EH)中继。考虑给定时间内的平均吞吐量约束,研究了燃料电池供电卫星与半双工EH中继协同工作时的能效优化问题。考虑到中继系统的非理想电路功率和能量到达的随机性,将卫星和中继的休眠模式都加入到功率分配策略中。首先,我们用动态规划(DP)算法解决了这个问题。由于计算复杂度高,DP算法在实际卫星系统中并不可行。然后,我们提出了一种启发式算法来实现次优解。数值计算结果表明,启发式算法的性能接近DP算法,表明启发式算法在实际应用中是一种很好的选择。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Energy Efficiency Optimization in Energy Harvesting Two-Hop Half-duplex Relay Systems
To prolong the lifetime of satellites when the energy stored in photovoltaic panels is used up, it may need deploy some energy harvesting (EH) relays in the future mobile satellite communication system. In this paper, considering an average throughput constraint within a given time, we investigate the energy efficiency (EE) optimization problem of the fuel-cell-powered satellite in collaboration with a decode-and-forward (DF) half-duplex EH relay. Paying regard to the non-ideal circuit power in the relay system and the randomness of energy arrivals, the sleep mode of both the satellite and the relay is joined into the power allocation strategy. Firstly, we solve this problem by the dynamic programming (DP) algorithm. Due to the high computational complexity, the DP algorithm is not feasible in real satellite systems. We then propose a heuristic algorithm to achieve the suboptimal solution. Numerical results show that the performance of the heuristic algorithm approaches that of the DP algorithm, which indicates the heuristic algorithm can be an good alternative in practice.
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