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Boost Converter Ripple Reduction Method and Application on Multi-String LED and BLDC Control.

机译:降低Boost转换器纹波的方法及其在多串LED和BLDC控制中的应用。

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摘要

This dissertation presents a control design method for reduction of DC-link voltage ripple in boost converter applications. The ripple reduction is achieved by using the harmonics of the DC-link voltage to feedback control in DC-DC boost converter. The harmonics of the DC-link voltage are extracted by using a simple observer for linear systems. The observer based control is successfully implemented in multi-string LED drive and BLDC motor drive. The ripples are successfully reduced to about half of the original magnitude. Robustness of the control algorithm is also validated under different experimental conditions.;This dissertation addresses two control design objectives about voltage ripple reduction control in the application of a boost converter. The first objective is to reduce the voltage ripple on a dc-link which connects the boost converter and the inverter bridge to drive a BLDC motor. Unlike the case where a boost converter is driving a linear load and the dc-link voltage is constant, when an inverter is connected to a boost converter, the dc-link voltage has an AC component (ripple) whose frequency is related to the speed of the motor. Ripples in the dc-link are undesirable since they cause distortion of the phase voltage and current, and generate Electro-Magnetic Interference (EMI). In this dissertation, a control algorithm for voltage ripple reduction on the do-link of power electronic converters is presented. In the proposed method, a simple observer for linear system is used to extract the hannonics of the DC-link voltage. The harmonic terms are then added to existing booster converter control loop. Simulations show that the ripple is reduced to about half of the original ripple magnitude. Since the ripple frequency is directly proportional to the rotor speed, the dissertation also proposes an adaptive voltage ripple reduction method by implementing a time-varying observer whose parameters follow the speed of a BLDC motor.;The second objective is to reduce DC-link voltage ripple in multi-string LED drivers. Today's LEDs are used for backlighting in entertainment display, navigation monitor, and internal and external lights. Moreover, a number of applications require LEDs to be placed in multiple strings. A string is a group of LEDs connected in series. They have the same current. The multiple strings improve fault tolerance. This dissertation considers a multi-string configuration where a single boost converter is utilized to convert battery voltage to a higher voltage required by LED strings voltage. The electronic switching is applied to dim LEDs over a wide range, depending on the intensity of the ambient light. When a boost converter is connected to LED strings, the current drawn by the LED strings will have an AC component which frequency is the multi-string switching frequency. The AC component will cause low frequency ripple in the DC-link voltage. The magnitude of the low frequency ripple depends on the magnitude of current through LEDs. The DC-link voltage ripples have adverse effects on circuits. In the dissertation, a method for reduction of the ripple is proposed by extracting the harmonics of the ripple and using them as additional terms in feedback control to the boost converter.
机译:本文提出了一种用于降低升压转换器中直流母线电压纹波的控制设计方法。通过使用直流母线电压的谐波对DC-DC升压转换器中的反馈进行控制,可以降低纹波。通过使用简单的线性系统观察器,可以提取直流母线电压的谐波。基于观察者的控制已在多串LED驱动器和BLDC电机驱动器中成功实现。波纹成功地减小到原始幅度的一半。在不同的实验条件下,该控制算法的鲁棒性也得到了验证。本文解决了在升压转换器应用中关于电压纹波降低控制的两个控制设计目标。第一个目标是减少连接升压转换器和逆变器桥以驱动BLDC电机的直流链路上的电压纹波。与升压转换器驱动线性负载且直流链路电压恒定的情况不同,当将逆变器连接到升压转换器时,直流链路电压具有一个交流分量(纹波),其频率与速度有关电机。直流链路中的波纹是不希望有的,因为它们会引起相电压和电流失真,并产生电磁干扰(EMI)。本文提出了一种用于电力电子变换器的do-link上降低电压纹波的控制算法。在所提出的方法中,使用简单的线性系统观察器来提取直流母线电压的噪声。然后将谐波项添加到现有的升压转换器控制环路中。仿真表明,纹波减小到原始纹波幅度的一半左右。由于脉动频率与转子转速成正比,因此本文还提出了一种自适应时变观测器,其参数遵循无刷直流电动机的速度,从而提出了一种自适应的电压脉动减小方法。第二个目的是降低直流母线电压多串LED驱动器中的纹波。当今的LED用于娱乐显示器,导航显示器以及内部和外部照明的背光。此外,许多应用要求将LED放在多串中。灯串是一组串联的LED。它们具有相同的电流。多个字符串可提高容错能力。本文考虑了多串配置,其中利用单个升压转换器将电池电压转换为LED串电压所需的更高电压。根据环境光的强度,电子开关可广泛应用于昏暗的LED。当升压转换器连接到LED灯串时,LED灯串吸收的电流将具有一个AC分量,该频率为多串开关频率。交流分量将在直流母线电压中引起低频纹波。低频纹波的大小取决于通过LED的电流的大小。直流母线电压纹波会对电路产生不利影响。本文提出了一种减少纹波的方法,该方法是提取纹波的谐波,并将其用作升压转换器的反馈控制中的附加项。

著录项

  • 作者

    Wang, Haifeng.;

  • 作者单位

    University of Massachusetts Lowell.;

  • 授予单位 University of Massachusetts Lowell.;
  • 学科 Engineering Electronics and Electrical.;Engineering Computer.
  • 学位 Ph.D.
  • 年度 2014
  • 页码 116 p.
  • 总页数 116
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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