时延最小化的最优无线电力传输调度

Feng Shan, Junzhou Luo, Weiwei Wu, Xiaojun Shen
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引用次数: 8

摘要

无线电力传输(WPT)技术实现了无线充电/再充电,是一种很有前途的无线设备传输供电方式。由于目前的WPT技术要求无线设备在接收电源时停止传输数据,而且这种方式接收的功率是有限的,因此需要仔细的调度来决定设备何时应该接收电源,何时应该传输数据,以便有效地传输数据。本文假设使用最基本的点对点高斯白噪声信道进行数据传输,并试图获得最优调度,使一系列数据包能够以最小的延迟传输。发现除了最后一个周期外,所有周期(能量接收、数据发送)的最优传输速率都应该是一个常数,称为wOPT速率。基于这一发现,本文最优地解决了离线延迟最小化问题。然后,提出了一种以wOPT速率接收能量或发送能量的在线启发式调度算法。仿真结果证明了该方法的有效性。wOPT率的发现揭示了WPT的一个基本性质,有望在WPT领域产生重大影响。
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Optimal wireless power transfer scheduling for delay minimization
Wireless power transfer (WPT) technique enables wireless charging/recharging, thus is a promising way to power wireless devices' transmissions. Because current WPT technique requires a wireless device to stop transmitting data when receiving power, and also because the received power in this way is limited, careful scheduling is needed to decide when the device should receive power and when it should transmit such that data can be efficiently transmitted. This paper assumes the most fundamental point-to-point White Gaussian Noise channel is used for data transmission and attempts to obtain an optimal scheduling such that a sequence of data packets can be transmitted with the minimum delay. It is discovered that, for all (energy receiving, data transmitting) cycles, except the last one, the optimal transmission rate should be a constant which is called the wOPT rate. Based on this discovery, this paper optimally solves the offline delay minimization problem. Then, an online heuristic scheduling algorithm is proposed, which either receives energy or transmits at the wOPT rate. Simulations have demonstrated its efficiency. The discovery of the wOPT rate reveals an essential property of WPT, thus is expected to make significant impact in the field of WPT.
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