Outage probability analysis of WPT systems with multiple-antenna access point

Khaled Maaiuf Rabie, B. Adebisi, M. Rozman
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引用次数: 14

Abstract

This paper analyzes the performance of a multiple-antenna access point (AP) system with an energy-constrained single-antenna destination node in various Bernoulli-Gaussian impulsive noise environments. More specifically, we deploy the harvest-then-transmit protocol where communication is accomplished over two distinct phases: i) power transfer phase (downlink), ii) information transmission phase (up-link). In this respect, an analytical expression for the ergodic outage probability is derived and validated with Monte Carlo simulations. Results have shown that increasing the source transmit power or/and the number of AP antennas will minimize the ergodic outage probability. It is also presented that careful selection of the energy harvesting time is important to enhance the system performance.
多天线接入点WPT系统的中断概率分析
本文分析了具有能量约束的单天线目标节点的多天线接入点(AP)系统在各种伯努利-高斯脉冲噪声环境下的性能。更具体地说,我们部署了收获-传输协议,其中通信在两个不同的阶段完成:i)功率传输阶段(下行链路),ii)信息传输阶段(上行链路)。在这方面,推导了遍历停机概率的解析表达式,并用蒙特卡罗模拟进行了验证。结果表明,增加源发射功率或/和AP天线的数量将使遍历中断概率最小化。同时指出,能量收集时间的合理选择对提高系统性能具有重要意义。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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