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Phase current reconstruction and regulation for three-phase AC motor drives using DC-link single current sensor and measurement voltage vectors.

机译:使用DC-link单电流传感器和测量电压矢量来进行三相交流电动机驱动器的相电流重构和调节。

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摘要

This thesis presents a novel method for the DC-link single current sensor technique (SCST). The new method, measurement vector insertion method (MVIM), overcomes the inherent problem of the DC-link SCST created by unmeasurable intervals. The concept of MVIM is to introduce three zero-sum measurement voltage vectors (e.g (100), (010), and (001)) between regular PWM switching cycles for current measurements in the unmeasurable area. By using three measurement vectors, all three phase currents can be sequentially measured with close time proximity within a short time interval.; MVIM provides improved current regulation in the unmeasurable area as well as complete phase current reconstruction. The advantages of MVIM also include the predictability in the timing of the current sampling, and minimal modification of existing PWM algorithms due to easy incorporation into familiar space-vector PWM (SVPWM) algorithms.; MVIM causes the increased number of switching events, resulting in the increased switching losses, due to insertion of three measurement vectors. To minimize the number of added switching events and associated switching losses, various MVIM enhancement techniques such as combining MVIM with discontinuous PWM (DPWM) are presented.; To enhance current regulation performance of the system using MVIM, the extended application of MVIM (EMVIM) to the entire voltage space vector plane is proposed. By doing so, valuable advantages such as reduced control delay and improved predictability in the timing of the current sampling are achieved. However, EMVIM also brings some disadvantages such as the increased voltage harmonics. The increased voltage disturbances are resolved by employing a modified current regulator design using virtual active resistance state feedback to improve the disturbance rejection capability of the system.; MVIM and EMVIM are evaluated compared to alternative methods of the DC-link SCST as well as the conventional three-leg current sensor technique using the standard SVPWM. Primary comparative metrics are total harmonic distortion (THD) of phase currents and power loss, including switching losses.; A combination of analysis, simulation, and experimental results is applied to evaluate performance of the system using MVIM, EMVIM and MVIM enhancement techniques, including phase current reconstruction and current regulation using reconstructed currents.
机译:本文提出了一种新的直流母线单电流传感器技术(SCST)。测量矢量插入方法(MVIM)是一种新方法,它克服了由不可测间隔产生的DC链路SCST固有的问题。 MVIM的概念是在常规PWM开关周期之间引入三个零和测量电压矢量(例如(100),(010)和(001)),以在不可测量区域进行电流测量。通过使用三个测量矢量,可以在短时间间隔内以接近时间的顺序依次测量所有三相电流。 MVIM在无法测量的区域提供了改进的电流调节,并且可以完成完整的相电流重建。 MVIM的优点还包括电流采样时序的可预测性,以及由于易于合并到熟悉的空间矢量PWM(SVPWM)算法中而对现有PWM算法的最小修改。由于插入了三个测量矢量,MVIM导致开关事件数量增加,导致开关损耗增加。为了最小化增加的开关事件和相关的开关损耗的数量,提出了各种MVIM增强技术,例如将MVIM与不连续PWM(DPWM)相结合。为了提高使用MVIM的系统的电流调节性能,建议将MVI​​M(EMVIM)扩展应用到整个电压空间矢量平面。通过这样做,获得了诸如降低的控制延迟和改进的电流采样时序的可预测性等有价值的优点。但是,EMVIM也带来一些缺点,例如电压谐波增加。通过采用改进的电流调节器设计来解决增加的电压扰动,该设计使用虚拟有源电阻状态反馈来改善系统的抗扰能力。将MVIM和EMVIM与DC-link SCST的替代方法以及使用标准SVPWM的常规三臂电流传感器技术进行了比较。主要比较指标是相电流和功率损耗(包括开关损耗)的总谐波失真(THD)。分析,仿真和实验结果的组合被用于评估使用MVIM,EMVIM和MVIM增强技术的系统性能,包括相电流重建和使用重建电流的电流调节。

著录项

  • 作者

    Kim, Hongrae.;

  • 作者单位

    The University of Wisconsin - Madison.;

  • 授予单位 The University of Wisconsin - Madison.;
  • 学科 Engineering Electronics and Electrical.
  • 学位 Ph.D.
  • 年度 2005
  • 页码 230 p.
  • 总页数 230
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 无线电电子学、电信技术;
  • 关键词

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