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Adaptive Self-Tuned Controller IC for Resonant-Based Wireless Power Transfer Transmitters

机译:基于谐振的无线电力传输变送器的自适应自调谐控制器IC

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This article introduces an adaptive self-tuned controller IC for resonant wireless power transfer (RWPT) transmitters. The controller IC comprises an on-the-fly very-high-frequency tracking hardware with high resolution and an independent high-resolution digital pulsewidth modulator (PWM)-based (HR-DPWM) current programmed control. These facilitate precise frequency generation as well as adaptive tuning of the reactive components in the matching network, which translate into tight current/power regulation capabilities while retaining optimized power transfer conditions on the transmitting side. The controller IC enables to effectively disengage the power-delivery capabilities from the variations of the resonators, electrical circuits, and wireless medium. The controller core is based on a fully synthesizable digital architecture that has been realized through HDL tools, and several key building blocks have been developed and described in detail: a delay-line-based phase detector, high-resolution digital frequency synthesizer, and HR-DPWM. To fully exploit the benefits of digital electronics, reduce power consumption, and save area, the digital core of the controller has been designed completely through asynchronous architecture, eliminating the need of high-speed clock and its related hardware. The mixed-signal controller IC has been designed, implemented, and fabricated in 0.18-mu m 5-V CMOS process, resulting in effective silicon area of 0.6 mm(2). To demonstrate the mixed-signal controller IC in closed-loop operation of a wireless power system, an experimental 20-W resonant capacitive-based WTP system has been designed and validated. The effectiveness of the controller is well demonstrated and evaluated at the MHz range up to 200 mm misalignment, meeting the strict requirements of resonant-based WPT systems.
机译:本文介绍了一种用于谐振无线电力传输(RWPT)发射机的自适应自调谐控制器IC。控制器IC包括具有高分辨率和独立高分辨率的高分辨率数字脉冲宽度调制器(PWM)的现时高频跟踪硬件(HR-DPWM)电流编程控制。这些促进了精确的频率产生以及匹配网络中的反应分量的自适应调整,这转化为紧密电流/功率调节能力,同时在发送侧保持优化的电力传输条件。控制器IC能够从谐振器,电路和无线介质的变化有效地脱离电力输送能力。控制器核心基于通过HDL工具实现的完全合成的数字架构,并且已经开发了几个键构件块和详细开发和描述:基于延迟线的相位检测器,高分辨率数字频率合成器和HR -dpwm。为了充分利用数字电子设备的好处,降低功耗和节省区域,控制器的数字核心通过异步架构完全设计,无需高速时钟及其相关硬件。混合信号控制器IC在0.18-mu M 5-V CMOS工艺中设计,实施,制造,得到了0.6mm(2)的有效硅面积。为了在无线电力系统的闭环操作中展示混合信号控制器IC,设计并验证了实验的20-W基于基于电容性的WTP系统。控制器的有效性在MHz范围内得到了很好的证明和评估,其未对准,满足基于谐振的WPT系统的严格要求。

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