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Enhancing full-duplex information transfer by RF energy harvesting

机译:通过RF能量收集增强全双工信息

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In practical implementations of single-antenna full-duplex (FD) radios, the imperfect isolation between the transmit (TX) and receive (RX) ports of the circulator causes the leakage of a strong self-interference (SI) component. This issue reduces both the spectral and energy efficiency of the device. State-of-the-art SI cancellation (SIC) solutions mitigate this problem, however they also constrain the maximum TX power of the FD radio. To address these issues and restrictions, we propose an energy recycling FD architecture that improves both the SIC capability and the spectral/energy efficiency of FD devices by means of a suitable radio frequency (RF) energy harvesting. The benefits brought by such solution are analyzed in an uplink (UL) scenario where two FD access points (APs), operating according to the proposed FD architecture, exchange signaling messages via a wireless link while communicating with two half-duplex (HD) mobile users (MUs). Our findings highlight non-negligible performance enhancements as compared to state-of-the-art approaches. Specifically, the proposed architecture is shown to yield a rate enhancement up to 29% for both UL transmission and signaling, and the recycling of up to 50% of the wasted energy at the circulator.
机译:在单天线全双工(FD)无线电的实际实现中,循环器的发送(TX)和接收(RX)端口之间的不完美隔离导致强自干扰(SI)组件的泄漏。此问题可降低设备的光谱和能量效率。最先进的SI取消(SIC)解决方案减轻了这个问题,但它们也限制了FD收音机的最大TX功率。为了解决这些问题和限制,我们提出了一种能源回收FD架构,其通过合适的射频(RF)能量收集来提高FD器件的SIC能力和光谱/能量效率。在上行链路(UL)场景中分析了这种解决方案所带来的益处,其中两个FD接入点(AP),根据所提出的FD架构操作,通过无线链路进行交换信令消息,同时与两个半双工(HD)移动通信用户(MU)。与最先进的方法相比,我们的调查结果强调了不可忽略的性能增强功能。具体地,所提出的架构被示出为UL传输和信令的速率增强高达29%,并且在循环器中的浪费能量的再循环率高达50%。

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