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Simultaneous Wireless Information and Power Transfer for Spectrum Sharing in Cognitive Radio Communication Systems

机译:认知无线电通信系统中的频谱共享的同步无线信息和电力传输

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In this paper, we consider the simultaneous wireless information and power transfer for the spectrum sharing (SS) in cognitive radio (CR) systems with a multi-antenna energy harvesting (EH) primary receiver (PR). The PR uses the antenna switching (AS) technique that assigns a subset of the PR's antennas to harvest the energy from the radio frequency (RF) signals sent by the secondary transmitter (ST), and assigns the rest of the PR's antennas to decode the information data. In this context, the primary network allows the secondary network to use the spectrum as long as the interference induced by the secondary transmitter (ST)'s signals is beneficial for the energy harvesting process at the PR side. The objective of this work is to show that the spectrum sharing is beneficial for both the SR and PR sides and leads to a win-win situation. To illustrate the incentive of the spectrum sharing cognitive system, we evaluate the mutual outage probability (MOP) introduced in [1] which declares an outage event if the PR or the secondary receiver (SR) is in an outage. Through the simulation results, we show that the performance of our system in terms of the MOP is always better than the performance of the system in the absence of ST and improves as the ST-PR interference increases.
机译:在本文中,我们考虑具有多天线能量收集(EH)主接收器(PR)的认知无线电(CR)系统中的频谱共享(SS)的同时无线信息和电力传输。 PR使用天线切换(AS)技术,该技术为PR天线的子集分配,以从辅助发送器(ST)发送的射频(RF)信号中收集能量,并分配PR的其余天线以解码信息数据。在这种情况下,主要网络允许次要网络使用频谱,只要由辅助发射器(ST)信号引起的干扰有利于PR侧的能量收集过程是有益的。这项工作的目的是表明,SPRIVE分享对SR和PR侧面都有益,并导致双赢的情况。为了说明频谱共享认知系统的激励,我们评估[1]中引入的相互中断概率(MOP),如果PR或次级接收器(SR)处于停电,则声明停电事件。通过仿真结果,我们表明,在拖把方面,我们的系统的性能总是比ST的情况下的系统的性能更好,随着ST-PR干扰增加而改善。

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