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Energy-Efficient Operation Modes of a Frequency Converter with a Series-Parallel Resonant Circuit under Power Stabilization at a Variable Load

机译:可变负载功率稳定下具有串联-并联谐振电路的变频器的节能模式

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摘要

An analysis of the power characteristics for a frequency converter is performed for matching with a varying load by means of a series-parallel resonant circuit. It is shown that a change in the active component of the load does not always lead to a proportional change in the input resistance of the resonance circuit, with at certain frequencies the resonant circuit even exhibiting a constant input resistance under a change in the load within a considerable range; that is, it has the properties of parametric output-power stabilization. At these frequencies, a large reactive component appears in the input impedance of the circuit, which does not allow one to obtain an operation mode close to a resonance one or achieve an acceptable energy-conversion efficiency. The frequency characteristics of the circuit have been studied under conditions of an extreme approach of its resonant frequencies. It is found that, in this case, owing to the distortions of the phase-frequency characteristic, one can obtain a quasi-resonant operation mode of the converter over the entire range of the load resistance. It is shown that the proposed method for the tuning of resonance circuit allows one, under a twofold change in the load, to achieve parametric stabilization of the output power with energy parameters of coscp > 0.94 at extreme points of the range of resistance variation. The obtained results are confirmed by simulation and physical experiment.
机译:进行了变频器功率特性分析,以通过串联并联谐振电路与变化的负载匹配。结果表明,负载的有源分量的变化并不总是导致谐振电路的输入电阻成比例的变化,在某些频率下,谐振电路甚至在负载变化范围内甚至表现出恒定的输入电阻。相当大的范围;也就是说,它具有参数输出功率稳定的特性。在这些频率下,电路的输入阻抗中会出现较大的无功分量,从而使人无法获得接近谐振的工作模式或无法实现可接受的能量转换效率。已经在极端接近其谐振频率的条件下研究了电路的频率特性。发现在这种情况下,由于相频特性的畸变,可以在整个负载电阻范围内获得转换器的准谐振工作模式。结果表明,所提出的用于调谐谐振电路的方法允许在负载的两倍变化下,在电阻变化范围的极值点,通过coscp> 0.94的能量参数,实现输出功率的参数稳定。仿真和物理实验证实了所得结果。

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