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Research and Development of Conversion of Direct Current Voltage to the Quasi-sinusoidal Voltage with Pulse-Width Modulation

机译:脉宽调制将直流电压转换为准正弦电压的研究与开发

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摘要

Practically all widely used variable-frequency alternating-current electric drives with autonomous voltage inverters (AVIs) use pulse-width modulation (PWM) according to one of the following techniques: sinusoidal, space-vector, and relay. Fulfilling the relay PWM requires an analog-digital converter (ADC) with high resolution and sample rate. Vector PWM has a nonsinusoidal output voltage that causes additional losses in the motor. The main problem of a symmetrical (centered) sinusoidal PWM is underuse of a dc link. For a long time, the vector PWM method was taken to be most promising one due to the absence of this defect. In practice, this technique is applied in areas without a strong voltage criterion, for which reason it has limited use. Moreover, due to another significant problem, which is the "dead" time on the sector borders at the vector PWM, different modified methods for constructing the sinusoidal PWM have become widespread, especially in modern asynchronous motor control systems, with the development of digital microprocessor systems. To determine the quality of different types of PWMs, a complex model of an electric drive, incorporating an inverter control system that implements different algorithms of constructing the discrete PWM signals is developed. The model and the electric circuit are constructed in LabVIEW and NI Multisim, respectively. The obtained simulation data can be used to select the optimal method of controlling the AVI. The analysis that has been conducted allows one to select an optimal PFWM control strategy in terms of research results concerning electric power quality and mechanical properties.
机译:几乎所有广泛使用的带有自主电压逆变器(AVI)的变频交流电驱动器均根据以下技术之一使用脉宽调制(PWM):正弦波,空间矢量和继电器。要实现继电器PWM,就需要具有高分辨率和采样率的模数转换器(ADC)。矢量PWM具有非正弦输出电压,这会导致电机产生额外损耗。对称(居中)正弦PWM的主要问题是直流链路的使用不足。长期以来,由于没有这种缺陷,矢量PWM方法被认为是最有前途的方法。在实践中,该技术应用于没有强电压标准的区域,因此其使用受到限制。此外,由于另一个重大问题,即矢量PWM的扇形边界上的“死时间”,构造正弦波PWM的各种改进方法已得到广泛应用,特别是在现代异步电动机控制系统中,随着数字微处理器的发展系统。为了确定不同类型的PWM的质量,开发了一种电驱动器的复杂模型,其中包含一个逆变器控制系统,该系统实现了构造离散PWM信号的不同算法。该模型和电路分别在LabVIEW和NI Multisim中构建。获得的仿真数据可用于选择控制AVI的最佳方法。进行的分析使人们可以根据有关电能质量和机械性能的研究结果选择最佳的PFWM控制策略。

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