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首页> 外文期刊>Russian electrical engineering >Determination of the Possibility of Alternating-Current Voltage Stabilization Using a Polarity-Inverting Pulsed Converter. Part 2
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Determination of the Possibility of Alternating-Current Voltage Stabilization Using a Polarity-Inverting Pulsed Converter. Part 2

机译:使用极性反转脉冲转换器确定交流电压稳定的可能性。第2部分

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摘要

The properties of ac voltage stabilizers based on an inverting pulsed converter in the presence of input voltage waveform distortions and sharp dips of voltage are estimated. The stabilizer performance was determined on the basis of the limiting continuous model thereof considered in Part I of this paper. For correction of the voltage waveform and elimination of sharp short-term surges and dips of the stabilizer output voltage, control of the instant output voltage is introduced to regulate the relative times that the key stays in extreme positions depending on the relation between the instant input voltage value and the selected output voltage. It is established that the stabilizer properties are influenced mainly by variable coefficients of the differential equations describing the limiting continuous model of the stabilizer. It is shown that, if the input voltage waveform is distorted because of periodic variations of the coefficients of differential equations, the output voltage will also contain high-order harmonics. Their intensity decreases with decreasing electrical impedance of the choke. It is also shown that surges of the stabilizer voltage are almost instantly compensated because of the change of relative times the key stays in extreme positions. However, this does not eliminate transition processes occurring as a result of drastic changes of the coefficients of differential equations of the limiting continuous model of the system. Comparison of the processes in the real discrete stabilizer model and in the stabilizer limiting continuous model for a quite realistic switching frequency showed their practical identity.
机译:在存在输入电压波形失真和电压急剧下降的情况下,估算了基于反相脉冲转换器的交流稳压器的性能。稳定剂的性能是根据本文第一部分考虑的极限连续模型确定的。为了校正电压波形并消除稳定器输出电压的急剧短期波动和骤降,引入了即时输出电压控制,以根据即时输入之间的关系来调节琴键停留在极限位置的相对时间。电压值和所选的输出电压。已经确定,稳定剂的性能主要受描述稳定剂极限连续模型的微分方程的可变系数的影响。结果表明,如果由于微分方程系数的周期性变化而使输入电压波形失真,则输出电压也将包含高次谐波。它们的强度随着扼流圈电阻的降低而降低。还显示出,由于键停留在极限位置的相对时间的改变,稳定器电压的浪涌几乎立即得到补偿。然而,这不能消除由于系统的有限连续模型的微分方程的系数的急剧变化而发生的过渡过程。实际离散频率的稳定器模型和稳定器极限连续模型中的过程比较,在相当实际的开关频率下进行了比较。

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