基于单比特调制器的电容式功率传输系统控制器

D. Almakhles, Nathan Pyle, Hossein Mehrabi, A. Swain, A. Hu
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引用次数: 6

摘要

本文提出了一种基于单比特ADC系统的比例积分(PI)控制器来调节电容功率传输(CPT)系统的输出电压。一个简单的单比特ADC系统,即单比特调制器(SBM)被认为是常用的多比特ADC系统的替代方案。采用SBM的独特特点是:1)将模拟信号转换为单比特信号的能力;2)易于与线性可变差动变压器(lvdt)(如fpga)集成在数字芯片中。设计了一种基于SBM的PI (SBM-PI)控制器,该控制器可以保证较少的硬件资源消耗和延迟,并有效地调节输出电压以提供所需的功率传输效率。将所提出的SBM-PI控制器的性能与传统的多位PI控制器的性能进行了比较,结果表明两种控制器的性能相同。但是,SBM-PI消耗的硬件资源要少得多。采用16 MHz ATmega8微控制器的CPT实验样机进一步验证了SBM-PI控制器的有效性。实验室样机的实验结果表明,SBM-PI控制器成功地调节了CPT的输出电压来控制功率流。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Single-bit modulator based controller for capacitive power transfer system
This paper proposes a single-bit ADC system based Proportional and Integral (PI) controller to regulate the output voltage of Capacitive Power Transfer (CPT) systems. A simple single-bit ADC system i.e., Single-Bit Modulator (SBM) is considered as an alternative to the commonly used multi-bit ADC systems. Unique features of employing SBM are 1) its ability to convert analog signals into single-bit signals and 2) its easy integrability in digital chips with linear variable differential transformers (LVDTs) such as FPGAs. A SBM based PI (SBM-PI) controller is designed which guarantees consumption of less hardware resources, latency and effectively regulates the output voltage to provide the desired power transfer efficiency. The performance of the proposed SBM-PI controller is compared to that of a conventional multi-bit PI controller and has been shown that both controllers give identical performance. However, the SBM-PI consumes significantly less hardware resources. The effectiveness of the proposed controller with SBM-PI is further demonstrated using the experimental prototype of CPT using 16 MHz ATmega8 microcontroller. The experimental results from a laboratory prototype illustrate that SBM-PI controller successfully regulates the output voltage of CPT to control the power flow.
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