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SWIPT-Enabled Relaying in IoT Networks Operating With Finite Blocklength Codes

机译:使用有限块长码运行的IoT网络中启用SWIPT的中继

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This paper considers simultaneous wireless information and power transfer (SWIPT) mechanisms in a relaying-assisted ultra-reliable low latency communication network operating with finite blocklength codes. The reliability of the network is maximized by the optimal selection of SWIPT parameters under both a power splitting (PS) protocol and a time switching (TS) protocol. In addition, we propose a protocol to improve the reliability performance by introducing a tradeoff between the PS and TS protocols. To further improve the reliability, a joint design is provided, which aligns the optimal selection of SWIPT parameters together with a blocklength allocation between two relaying hops. Via simulations, we validate our analytical model and show that the proposed algorithm achieves the same performance as that obtained with exhaustive search. In addition, we evaluate the considered network, and characterize the impact of blocklength, transmit power, and packet size on the reliability of the considered SWIPT-enabled relaying network. Finally, the performance advantages of the proposed protocol (in comparison with the PS and TS protocols) and the proposed joint designs are investigated.
机译:本文考虑了在以有限块长码运行的中继辅助超可靠低延迟通信网络中的同时无线信息和功率传输(SWIPT)机制。通过在功率分配(PS)协议和时间切换(TS)协议下对SWIPT参数的最佳选择,可以最大限度地提高网络的可靠性。另外,我们提出了一种通过引入PS和TS协议之间的折衷来提高可靠性性能的协议。为了进一步提高可靠性,提供了一种联合设计,该设计将SWIPT参数的最佳选择与两个中继跳之间的块长分配对齐。通过仿真,我们验证了我们的分析模型,并表明所提出的算法与穷举搜索所获得的性能相同。此外,我们评估了所考虑的网络,并表征了所考虑的启用SWIPT的中继网络的块长,发射功率和数据包大小对可靠性的影响。最后,研究了所提出的协议(与PS和TS协议相比)和所提出的联合设计的性能优势。

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