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首页> 外文期刊>IEEE Transactions on Industrial Electronics >Continuously Adjustable Capacitor for Multiple-Pickup Wireless Power Transfer Under Single-Power-Induced Energy Field
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Continuously Adjustable Capacitor for Multiple-Pickup Wireless Power Transfer Under Single-Power-Induced Energy Field

机译:单功率诱导能源场下的多重拾取无线电力传输连续可调节电容器

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摘要

This article proposes and implements a continuously adjustable capacitor for multiple-pickup wireless power transfer (WPT), aiming to enhance the energy security performance under single-power-induced energy field. With the accelerated development and commercialization of WPT, the energy security issue shows the increasing significance for multiple-pickup WPT systems, where the induced open radial electromagnetic field facilitates all involved pickup coils to access the wirelessly transferred energy. If utilizing no appropriate protection strategy, the energy privacy is inevitably jeopardized, especially for the single-power-induced energy field where the auxiliary technique, such as the radio-frequency identification, cannot identify the multiple pickups. Accordingly, this article proposes a continuously adjustable capacitor that enhances the security/transmission performance for multiple-pickup WPT systems. Differing from impedance adjusting schemes reported in previous studies, the continuously adjustable capacitor can continuously adjust the impedance to match the encrypted switching frequency dynamically and continuously. In such ways, it can effectively enhance the flexibility of the WPT hardware platform for the cryptographic algorithm, thus significantly reduce the possibility of power being hacked. Finally, the simulated and experimental results are provided to verify the feasibility of the proposed continuously adjustable capacitor for the energy encryption of multiple-pickup WPT systems.
机译:本文提出并实现了一种可连续可调节的电容器,用于多重拾取无线电力传输(WPT),旨在提高单功率引起的能源场下的能源安全性能。随着WPT的加速开发和商业化,能源安全问题表明,多重拾取WPT系统的显着性越来越重要,其中诱导的开放式径向电磁场有助于所有所涉及的拾取线圈进入无线传输的能量。如果利用不适当的保护策略,则能够隐私不可避免地危及,特别是对于单功率诱导的能量场,其中辅助技术(例如射频识别)不能识别多个拾取器。因此,本文提出了一种可连续可调的电容器,可增强多拾音器WPT系统的安全性/传输性能。与先前研究中报告的阻抗调整方案不同,可连续可调电容器可以连续调节阻抗以动态和连续地匹配加密的开关频率。通过这种方式,它可以有效地提高WPT硬件平台对加密算法的灵活性,从而显着降低了被攻击的力量的可能性。最后,提供了模拟和实验结果,以验证所提出的连续可调节电容器的可行性,用于多重拾取WPT系统的能量加密。

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