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Optimal Design of SWIPT-Aware Fog Computing Networks

机译:SWIPT感知雾计算网络的优化设计

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This paper studies a simultaneous wireless information and power transfer (SWIPT)-aware fog computing network, where a multiple antenna fog function integrated hybrid access point (F-HAP) transfers information and energy to multiple heterogeneous single-antenna sensors and also helps some of them fulfill computing tasks. By jointly optimizing energy and information beamforming designs at the F-HAP, the bandwidth allocation and the computation offloading distribution, an optimization problem is formulated to minimize the required energy under communication and computation requirements, as well as energy harvesting constraints. Two optimal designs, i.e., fixed offloading time (FOT) and optimized offloading time (OOT) designs, are proposed. As both designs get involved in solving non-convex problems, there are no known solutions to them. Therefore, for the FOT design, the semidefinite relaxation (SDR) is adopted to solve it. It is theoretically proved that the rank-one constraints are always satisfied, so the global optimal solution is guaranteed. For the OOT design, since its non-convexity is hard to deal with, a penalty dual decomposition (PDD)-based algorithm is proposed, which is able to achieve a suboptimal solution. The computational complexity for two designs are analyzed. Numerical results show that the partial offloading mode is superior to binary benchmark modes. It is also shown that if the system is with strong enough computing capability, the OOT design is suggested to achieve lower required energy; Otherwise, the FOT design is preferred to achieve a relatively low computation complexity.
机译:本文研究了同时感知无线信息和功率传输(SWIPT)的雾计算网络,其中多天线雾功能集成混合接入点(F-HAP)将信息和能量传输到多个异构单天线传感器,并且还可以帮助一些他们完成计算任务。通过在F-HAP,带宽分配和计算分流分布上共同优化能量和信息波束成形设计,制定了一个优化问题,以最小化通信和计算要求以及能量收集约束条件下所需的能量。提出了两种最佳设计,即固定卸载时间(FOT)和优化卸载时间(OOT)设计。由于这两种设计都涉及解决非凸问题,因此没有已知的解决方案。因此,对于FOT设计,采用半定松弛(SDR)来解决。从理论上证明了总是满足秩约束,从而保证了全局最优解。对于OOT设计,由于难于处理其非凸性,提出了一种基于惩罚对偶分解(PDD)的算法,该算法能够实现次优解。分析了两种设计的计算复杂度。数值结果表明,部分卸载模式优于二进制基准测试模式。还表明,如果系统具有足够强大的计算能力,则建议采用OOT设计以降低所需能量;否则,为了实现较低的计算复杂度,最好使用FOT设计。

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