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Generalized synthesis and applications of zero-impedance converterand its dual

机译:零阻抗转换器及其对偶的广义综合与应用

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We present a synthesis method for converting to zero a nonzero impedance or admittance. The former case is called a zero-impedance converter (ZIC). Its dual is the latter case, called the zero-admittance converter (ZAC). The ZIC comprises a current positive-feedback loop within a voltage negative-feedback loop. The ZAC comprises a voltage positive-feedback loop within a current negative-feedback loop. Exact expressions are derived for the required transfer functions of the feedback circuits in the positive-feedback loops, which perform the functions of the ZIC and the ZAC. In both cases, the negative feedback loop controls the system stability and dynamics. The synthesis method also simplifies the design of standard negative-feedback loops. The ZIC can be used for synthesizing load-independent constant-voltage power converters and voltage-source-fed motor drives. The ZAC can be used for synthesizing load-independent constant-current power converters and current-source-fed motor drives. The converters can be considered to approach the ideal Thevenin voltage source (ZIC) and the Norton current source (ZAG) in their transient responses and ideal sources in steady state
机译:我们提出了一种将非零阻抗或导纳转换为零的综合方法。前一种情况称为零阻抗转换器(ZIC)。后一种情况称为对偶,称为零导纳转换器(ZAC)。 ZIC在电压负反馈环路内包括电流正反馈环路。 ZAC在电流负反馈环路内包括一个电压正反馈环路。为正反馈回路中的反馈电路所需的传递函数导出了精确的表达式,这些正反馈回路执行ZIC和ZAC的功能。在这两种情况下,负反馈回路都控制系统的稳定性和动态性。综合方法还简化了标准负反馈环路的设计。 ZIC可用于合成独立于负载的恒压功率转换器和电压源供电的电机驱动器。 ZAC可用于合成独立于负载的恒流功率转换器和电流源供电的电机驱动器。可以认为这些转换器的瞬态响应接近理想的戴维宁电压源(ZIC)和诺顿电流源(ZAG),稳态时则接近理想电源

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