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Modeling and Control of Boost Converters with Application to Energy Harvesting.

机译:Boost转换器的建模和控制及其在能量收集中的应用。

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摘要

In this thesis, we investigate the development of new control schemes for single- and three-phase boost-type converters and their application to energy conversion. The developed algorithms are utilized to efficiently convert energy from a source with an arbitrary voltage waveform to a DC link or a battery. This type of energy transfer is of great interest in energy conversion systems involving low frequency, time-varying input sources such as vibration energy harvesting and marine wave power. In such applications, the generated voltages are sporadic in the sense that the amplitudes and frequencies of the generated waveforms are time-varying and not known a-priori.;Motivated by these applications, first a single-phase boost converter is studied and the performance of the proposed controller in providing a resistive input behavior is experimentally verified. Next, the idea proposed for a single-phase converter is extended to a three-phase bridgeless boost-type converter. To this end, an averaged model of the threephase converter is obtained and utilized in designing a feedback control scheme to enforce a resistive behavior across each phase of the converter. Similar to the single-phase system, the proposed controller does not require a-priori knowledge of the input waveform characteristics and can convert waveforms with time-varying frequencies and amplitudes into DC power by regulating the input resistances at each phase. The proposed solution enables real-time variation of the generator loading using high efficiency switching power devices. Numerical simulations and experimental results are presented that evaluate performance of the proposed modeling and feedback control scheme for the three-phase system.;Finally, an application involving energy regeneration for a mechanical suspension system is considered using a setup consisting of a mass-spring test rig attached to a mechanical shaker for single- and three-phase applications using a tubular DC permanent-magnet machine and rotary machine connected to an algebraic screw, respectively. The algebraic screw converts the translational motion of mechanical vibrations into rotary motion that acts as a prime mover for the three-phase synchronous machine. The experimental results reveal that the boost circuit and proposed feedback controller can successfully provide regenerative damping for mechanical vibrations with high-efficiency power conversion.
机译:在本文中,我们研究了单相和三相升压型转换器的新控制方案的发展及其在能量转换中的应用。所开发的算法可用于有效地将能量从具有任意电压波形的电源转换为DC链路或电池。这种类型的能量传递在涉及低频,时变输入源(例如振动能量收集和海浪功率)的能量转换系统中引起了极大的兴趣。在这样的应用中,从所产生的波形的幅度和频率随时间变化且未知的先验意义上来说,所产生的电压是零星的;在这些应用的推动下,首先研究了单相升压转换器,并研究了其性能。通过实验验证了所提出的控制器在提供电阻输入行为方面的有效性。接下来,针对单相转换器提出的想法被扩展到三相无桥升压型转换器。为此,获得了三相转换器的平均模型,并将其用于设计反馈控制方案以在转换器的每一相上实施电阻行为。与单相系统相似,所提出的控制器不需要先验的输入波形特性知识,并且可以通过调节每相的输入电阻将具有时变频率和幅度的波形转换为直流电。所提出的解决方案能够使用高效的开关电源设备实时改变发电机负载。给出了数值模拟和实验结果,以评估所提出的三相系统建模和反馈控制方案的性能。最后,考虑了使用包括质量弹簧测试的装置对机械悬架系统进行涉及能量再生的应用分别连接到管状机械永磁体机器和用于连接三相机械的振动台的管状直流永磁体机器和与代数螺钉相连的旋转机器。代数螺杆将机械振动的平移运动转换为旋转运动,该旋转运动充当三相同步电机的原动机。实验结果表明,升压电路和提出的反馈控制器可以成功地为机械振动提供再生阻尼,并具有高效的功率转换能力。

著录项

  • 作者

    Sabzehgar, Reza.;

  • 作者单位

    Simon Fraser University (Canada).;

  • 授予单位 Simon Fraser University (Canada).;
  • 学科 Engineering Electronics and Electrical.
  • 学位 Ph.D.
  • 年度 2012
  • 页码 148 p.
  • 总页数 148
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 能源与动力工程;
  • 关键词

  • 入库时间 2022-08-17 11:42:32

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