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Development of a phase-shifted series-resonant converter using robust control and integrated magnetics.

机译:利用鲁棒控制和集成磁学技术开发相移串联谐振转换器。

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摘要

Phase-shifted series resonant converter is widely used in handling high power in DC/DC converter series due to its inherent characteristics including high power density, soft-switching and high part load efficiency. However, the classical control and considerable amount of magnetic components in the circuit is not good enough for a high performance application. A high frequency robust controlled integrated magnetics converter is needed. In this dissertation the magnetic components used in the phase-shifted series resonant converter including the resonant inductor, the transformer and the filter inductor were proposed to integrate into a single EE core. The equations of calculating electrical parameters of the integrated magnetic are deduced using duality theorem.; The work is to improve the parameters variation of the power converter such that the input voltage and the load resistances under variation of environmental condition and operation condition should be robustly controlled. Firstly the methodology of constructing an auto-disturbance-rejection controller (ADRC) was discussed. All the disturbances could be estimated by an extended-state-observer (ESO), which is the core of the ADRC. Accurate mode and precise parameters are not necessary. An ADRC has been implemented on a PSRC with a single capacitor output filter. Experiments show ADRC can overcome the problems caused by these disturbances. Passivity-based Control (PBC) is investigated in order to work against disturbances. A procedure of design PBC controller has been presented. The attractive features of this approach are the enhanced robustness and the lack of controller calculation singularities. Based on the reduced model, the PBC controller and its adaptive version have been derived with which the load resistance can be estimated. Thus the robustness of the closed-loop system based on PBC is ensured in spite of the wide range of variation in load resistance. Only the feedback of output voltage is required to implement the PBC algorithm. The PBC algorithm deduced has been simulated using MATLAB SIMULINK and implemented on a DSP system. Experiments and simulations up to 1.4kW under disturbances have been carried out and successful results are obtained.
机译:相移串联谐振变换器由于其固有的特性(包括高功率密度,软开关和高部分负载效率)而被广泛用于处理DC / DC变换器系列中的大功率。然而,传统的控制和电路中大量的磁性元件不足以用于高性能应用。需要高频鲁棒受控的集成磁性转换器。本文提出将包括谐振电感器,变压器和滤波电感器的移相串联谐振变换器中使用的磁性元件集成到单个EE磁芯中。利用对偶定理推导了计算集成磁电参数的方程。这项工作是为了改善功率转换器的参数变化,以使在环境条件和操作条件变化时的输入电压和负载电阻得到稳健的控制。首先讨论了构建自抗干扰控制器(ADRC)的方法。所有的干扰都可以通过扩展状态观察器(ESO)进行估算,这是ADRC的核心。不需要精确的模式和精确的参数。在具有单个电容器输出滤波器的PSRC上实现了ADRC。实验表明,ADRC可以克服由这些干扰引起的问题。为了防止干扰,对基于被动的控制(PBC)进行了研究。提出了一种设计PBC控制器的程序。这种方法的吸引人的特点是增强的鲁棒性和缺乏控制器计算奇异性。在简化模型的基础上,推导了PBC控制器及其自适应版本,可用来估计负载电阻。因此,尽管负载电阻的变化范围很大,但仍可确保基于PBC的闭环系统的鲁棒性。只需输出电压的反馈即可实现PBC算法。推导的PBC算法已使用MATLAB SIMULINK进行了仿真,并在DSP系统上实现。已经进行了高达1.4kW的扰动实验和仿真,并获得了成功的结果。

著录项

  • 作者

    Lu, Yan.;

  • 作者单位

    Hong Kong Polytechnic University (People's Republic of China).;

  • 授予单位 Hong Kong Polytechnic University (People's Republic of China).;
  • 学科 Engineering Electronics and Electrical.
  • 学位 Ph.D.
  • 年度 2006
  • 页码 172 p.
  • 总页数 172
  • 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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