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首页> 外文期刊>IEEE Transactions on Communications >Magnetic Induction-Based Simultaneous Wireless Information and Power Transfer for Single Information and Multiple Power Receivers
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Magnetic Induction-Based Simultaneous Wireless Information and Power Transfer for Single Information and Multiple Power Receivers

机译:基于磁感应的同时无线信息和功率传输,用于单个信息和多个功率接收器

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摘要

Magnetic induction (MI)-based communication systems have gained increased attention in recent years. Typical applications for these systems lie in the area of wireless power transfer, near-field communication (NFC), and wireless sensor networks in challenging environments. In this paper, a system for simultaneous wireless information and power transfer (SWIPT) using MI-based signal transmission is designed for supporting one data stream and multiple parallel power streams. One of the possible applications for this scheme is an NFC-based access point. The overall system is optimized to guarantee a certain quality-of-service for the data stream as well as a maximum sum receive power for all power receivers (max-sum problem) or a maximum receive power for the worst power receiver (max-min problem), respectively. Both optimization problems turn out to be non-convex, such that the optimum solution cannot be found with limited computational complexity. Hence, we provide efficient suboptimal solutions. In this context, a convex approximation of the transmit power constraint in MI-based multiple-input multiple-output systems turns out to be very useful. A very high achievable power efficiency renders the proposed MI-based SWIPT system very promising.
机译:近年来,基于磁感应(MI)的通信系统越来越受到关注。这些系统的典型应用是在充满挑战的环境中的无线功率传输,近场通信(NFC)和无线传感器网络领域。在本文中,使用基于MI的信号传输的同时进行无线信息和功率传输(SWIPT)的系统被设计为支持一个数据流和多个并行功率流。该方案的可能应用之一是基于NFC的接入点。对整个系统进行了优化,以确保数据流具有一定的服务质量,并保证所有受电者的最大接收功率(最大和问题)或最差受电者的最大接收功率(最大-最小)问题)。这两个优化问题都证明是非凸的,因此无法以有限的计算复杂度找到最佳解决方案。因此,我们提供了有效的次优解决方案。在这种情况下,在基于MI的多输入多输出系统中,发射功率约束的凸近似结果非常有用。很高的可实现功率效率使所提出的基于MI的SWIPT系统非常有前途。

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