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Energy-Efficient Resource Allocation for Cognitive Industrial Internet of Things With Wireless Energy Harvesting

机译:具有无线能量收集的认知工业互联网的节能资源分配

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Cognitive industrial Internet of Things (CIIoT) can extend available spectrum resources by accessing the spectrum licensed to primary user (PU) on the premise of not disturbing the PU's communications. However, additional spectrum sensing and long-time working may consume much energy of CIIoT. In this article, a CIIoT with wireless energy harvesting (WEH) is proposed to harvest the radio frequency energy of PU's signal, and energy-efficient resource allocations in different spectrum access modes are presented to maximize the average transmission rate of CIIoT while guaranteeing its energy saving requirements. The underlay and overlay spectrum access modes for CIIoT with WEH are described, respectively, in which the energy-efficient resource allocations are formulated as joint optimization problems that can be solved using the alternating direction optimization and water-filling algorithm. By combining underlay and overlay modes, a hybrid spectrum access mode is proposed to enable the CIIoT to access both idle and busy spectrum without limiting its transmission power at the absence of PU. Simulation results show that the CIIoT with WEH can consume less power to achieve larger transmission rate, and the hybrid mode outperforms the underlay and overlay modes in the aspects of transmission rate and energy saving.
机译:认知工业互联网(CIIT)可以通过在不打扰PU通信的前提下访问给主用户(PU)的频谱来扩展可用频谱资源。然而,额外的频谱感应和长期工作可能会消耗大量的CIIT。在本文中,提出了一种具有无线能量收集(WEH)的CIIT,以收集PU信号的射频能量,并提出了不同频谱接入模式中的节能资源分配,以最大化CIIT的平均传输速率,同时保证其能量。保存要求。分别描述了CIIOT的底层和覆盖频谱访问模式,其中将节能资源分配配制成使用交替方向优化和水填充算法可以解决的联合优化问题。通过组合衬垫和覆盖模式,提出了一种混合频谱访问模式,以使CIIOT能够访问空闲和忙碌的频谱,而不限制其在不存在PU处的传输功率。仿真结果表明,卫卫的CIIT可以消耗较少的电力以实现更大的传输速率,并且混合模式优于传输速率和节能方面的衬垫和覆盖模式。

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