In this paper we study secure energy efficiency (SEE) for simultaneous wireless information and power transfer (SWIPT) in a distributed antenna system (DAS) based IoT network. We consider a system in which both legitimate users (Bobs) and eavesdroppers (Eves) have power splitting (PS) receivers to simultaneously decode information and harvest energy from the received signal. When the channel state information (CSI) is known at the transmitter, we analyze the effect of an energy harvesting eavesdropper (EHE) over the maximization of SEE of the system. Next, considering the fact that perfect CSI is hard to achieve in practice, we characterize the system performance in terms of the outage probability of SEE. For the given SWIPT-in-DAS setup, we derive the closed form expression for the outage probability of SEE and with the help of numerical results, we study the effect of transmit power levels, number of distributed antenna (DA) ports and the PS ratio of devices. To the best of our knowledge, this is the first attempt to define the outage probability of SEE for SWIPT-in-DAS.
翻译:在本文中,我们研究在分布式天线系统(DAS)基础上的IoT网络中同步无线信息和电力传输的安全能源效率(SWIPT),我们考虑了一个合法用户(Bobs)和Eavesopers(Eves)拥有分电接收器的系统,以便同时从收到的信号中解码信息和获取能量。当发射机知道频道状态信息(CSI)时,我们分析一个能量采集窃听器(EHE)对该系统最大化的影响。接下来,考虑到完美的 CSI在实际中很难实现,我们从SEE的超值概率的角度来描述系统的性能。对于SWIPT-in-DAS的设定,我们从SWIPT-DAS的超值概率中得出封闭式表达方式,并在数字结果的帮助下,我们研究传输电量、分布式天线(DA)端口数和设备的PSVS比率的影响。我们最了解的是,这是第一次尝试确定SWI-DAS-DA的超值概率。