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首页> 外文期刊>Journal of power electronics >A Single-Input Single-Output Approach by using Minor-Loop Voltage Feedback Compensation with Modified SPWM Technique for Three-Phase AC-DC Buck Converter
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A Single-Input Single-Output Approach by using Minor-Loop Voltage Feedback Compensation with Modified SPWM Technique for Three-Phase AC-DC Buck Converter

机译:三相AC-DC Buck转换器采用小环路电压反馈补偿和改进的SPWM技术的单输入单输出方法

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摘要

The modified sinusoidal pulse-width modulation (SPWM) is one of the PWM techniques used in three-phase AC-DC buck converters. The modified SPWM works without the current sensor (the converter is current sensorless), improves production of sinusoidal AC current, enables obtainment of near-unity power factor, and controls output voltage through modulation gain (ranging from 0 to 1). The main problem of the modified SPWM is the huge starting current and voltage (during transient) that results from a large step change from the reference voltage. When the load changes, the output voltage significantly drops (through switching losses and non-ideal converter elements). The single-input single-output (SISO) approach with minor-loop voltage feedback controller presented here overcomes this problem. This approach is created on a theoretical linear model and verified by discrete-model simulation on MATLAB/Simulink. The capability and effectiveness of the SISO approach in compensating start-up current/voltage and in achieving zero steady-state error were tested for transient cases with step-changed load and step-changed reference voltage for linear and non-linear loads. Tests were done to analyze the transient performance against various controller gains. An experiment prototype was also developed for verification.
机译:改进的正弦脉宽调制(SPWM)是三相AC-DC降压转换器中使用的PWM技术之一。修改后的SPWM可在没有电流传感器的情况下工作(转换器是无电流传感器),提高了正弦交流电流的产生,能够获得接近单位的功率因数,并通过调制增益(范围为0至1)来控制输出电压。修改后的SPWM的主要问题是巨大的启动电流和电压(瞬态过程中),这是由于与参考电压的阶跃变化很大而引起的。当负载变化时,输出电压会大幅下降(通过开关损耗和非理想的转换器元件)。本文介绍的带有小回路电压反馈控制器的单输入单输出(SISO)方法克服了这个问题。这种方法是在理论线性模型上创建的,并通过MATLAB / Simulink上的离散模型仿真进行了验证。在瞬态情况下,对于阶跃变化的负载和线性和非线性负载的参考电压,瞬态测试了SISO方法在补偿启动电流/电压以及实现零稳态误差方面的能力和有效性。已进行测试以针对各种控制器增益分析瞬态性能。还开发了一个实验原型进行验证。

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