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Impedance estimation using randomized pulse width modulation and power converters.

机译:使用随机脉冲宽度调制和功率转换器的阻抗估计。

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摘要

With the adoption of technologies such as alternative energy production, DC power grids, and electric vehicles, the use of high power switching converters has seen a dramatic increase. These power converters serve many rolls such as grid-tied inverters in solar farms, high power charging for electric vehicles, motor drives for industrial applications, and DC links in transmission systems. With the increased prevalence of such devices, it is only natural to attempt to optimize their operation. As with any level of converter, it is desirable to have accurate control over the generated voltages and currents. Often, these controllers implement some form of predictive control which requires knowledge of system parameter values to operate properly. Due to several factors, including temperature and component non-linearity, these component values can vary during normal operation. This can lead to degradation of closed loop control and system instabilities. If one is able to measure system parameters while the converter is operating, control parameters can be updated in real time to optimize the system performance.;A significant percentage of the size and cost of switching converters are filter elements meant to reduce the amount of noise injected into other attached circuits, or in the case of grid-tied converters, noise injected into the grid. As power levels increase, the size, cost, and power lost in the filter becomes greater. To minimize these negative effects, methods have been developed that reduce harmonic injections, thus allowing for smaller filter elements. One such technique is Randomized Pulse Width Modulation which removes the large harmonic spikes present in standard switching systems, and replaces them with a wide frequency energy spectrum.;The objective of this research is to examine the feasibility of online impedance identification by combining and modifying existing technologies. Specifically, Randomized Pulse Width Modulation and Wideband System Identification techniques are used to simultaneously reduce system noise and create an estimation of system filter element impedances. This allows for the reduction of the filter size while simultaneously providing a real-time estimate of the filter impedance with the goal of better feedback control performance.
机译:随着替代能源生产,直流电网和电动汽车等技术的采用,大功率开关转换器的使用已急剧增加。这些功率转换器可服务于许多领域,例如太阳能农场中的并网逆变器,电动汽车的大功率充电,工业应用的电动机驱动器以及传输系统中的直流母线。随着此类设备的普及,尝试优化其操作是很自然的。与任何级别的转换器一样,希望对产生的电压和电流进行精确控制。通常,这些控制器执行某种形式的预测控制,这需要了解系统参数值才能正常运行。由于包括温度和组件非线性度在内的多个因素,这些组件值在正常运行期间会发生变化。这可能导致闭环控制和系统不稳定的恶化。如果在转换器运行时能够测量系统参数,则可以实时更新控制参数以优化系统性能。开关转换器的尺寸和成本中很大一部分是用于减少噪声量的滤波器元件注入到其他连接的电路中,或者在并网转换器中注入噪声。随着功率水平的提高,滤波器中的尺寸,成本和功率损耗也越来越大。为了使这些负面影响最小化,已经开发出减少谐波注入的方法,从而允许使用较小的滤波器元件。一种这样的技术是随机脉冲宽度调制,它消除了标准开关系统中存在的大谐波尖峰,并用较宽的频率能谱代替了它们。该研究的目的是通过组合和修改现有的阻抗来检查在线阻抗识别的可行性。技术。具体而言,随机脉宽调制和宽带系统识别技术可用于同时降低系统噪声并创建系统滤波器元件阻抗的估计值。这样可以减小滤波器的尺寸,同时提供实时的滤波器阻抗估计,以实现更好的反馈控制性能。

著录项

  • 作者

    McCoy, Matthew.;

  • 作者单位

    University of South Carolina.;

  • 授予单位 University of South Carolina.;
  • 学科 Engineering Electronics and Electrical.
  • 学位 M.S.
  • 年度 2013
  • 页码 84 p.
  • 总页数 84
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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