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Joint Power Allocation and Splitting (JoPAS) for SWIPT in Time-Variant Wireless Channels

机译:用于时变无线通道的SWITP中的联合功率分配和分裂(JOPAS)

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In recent years, the capacity and charging speed of batteries have become the bottleneck of mobile communications systems. With the development of wireless power transfer technologies, simultaneous wireless information and power transfer (SWIPT) becomes a possible alternative. Due to the limitations of practical circuit implementation, the energy harvesting circuit cannot directly decode the information carried by the same signal. Hence, the problem of optimal power splitting at the receiver arises in addition to the conventional problem of power allocation in communication systems. In this paper, the joint power allocation and splitting (JoPAS) for SWIPT over a timevariant channel is proposed with the objective of maximizing the achievable data rate with constraints on the delivered power. Simulations show significantly improved performance compared with the existing dynamic power splitting scheme. A suboptimal algorithm, named decoupled power allocation and splitting (DePAS), is also proposed with dramatically reduced computational complexity and simulations demonstrate its near optimum performance.
机译:近年来,电池的容量和充电速度已成为移动通信系统的瓶颈。随着无线电力传输技术的发展,同时无线信息和电力传输(SWIPT)成为可能的替代方案。由于实际电路实现的局限性,能量收集电路不能直接解码由相同信号承载的信息。因此,除了通信系统中的电力分配问题之外,还出现了接收器处的最佳功率分离的问题。在本文中,提出了在时间传播通道上使用的关节功率分配和分裂(JOPAS),其目的是最大化可实现的数据速率与输送电力的约束。与现有的动态功率分裂方案相比,模拟显示出显着提高的性能。还提出了一种次优算法,名为Demupuled功率分配和分裂(DEPAS),从而显着降低计算复杂性,并且模拟展示其近最佳性能。

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