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A self coordinating parallel multi-pi control scheme for an HVDC transmission system to accommodate a weak AC system.

机译:用于HVDC输电系统的自协调并行多pi控制方案,以适应弱AC系统。

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摘要

To transfer bulk electrical power over long distances high voltage direct current (HVDC) transmission is currently being considered more and more because of its superior stability performance compared to AC lines whose stability are limited by their line inductances. There is, therefore, a greater need for thorough studies of dynamic interaction between AC and DC systems for use in system design and performance optimization.; The transients in an HVDC system can temporarily change line currents, voltages, and power substantially from the reference steady-state value, and the behavior of the system depends greatly upon the parameters of the controller. The DC system performance is affected by the AC system characteristics such as the short circuit ratio, and the AC system inertia. A controller which has good performance for a particular operating condition may not have sufficiently good performance under another operating condition or vice-versa. Performance of the controller also depends on the impedance at the rectifier and the inverter bus, which may vary according to the operating conditions of the AC network.; The objective of this research is to develop a control strategy, which would be simple and able to perform better in various operating conditions without the need for any parameter estimation, state measurement, and switching action. This new scheme is called a self coordinating parallel multi-PI controller scheme, where multiple controllers are connected in parallel. A linearized model of the CIGRE HVDC Benchmark system is used to calculate the control parameters.; To evaluate the performance of the proposed controller, a large AC fault in the weak AC system is studied for a two-terminal HVDC system, for a multi-terminal HVDC system, and for a modified WSCC 9-bus system. Results obtained by using the proposed controller and a conventional controller are compared. Fuzzy logic-based self-tuning and gain scheduling controller results are also compared with the proposed controller's simulation results.; Short circuit ratio (SCR) of an AC system plays an important role in the transient stability as well as in the selection of a controller. The proposed controller is tested at a very low SCR---the most critical value for system performance evaluation. The inertia of an AC system also has significant affect on the AC/DC system performance. Comparative evaluation of the proposed controller at both low SCRs and low inertia is presented. All simulations are conducted using the MATLAB/SIMULINK software package.
机译:为了在远距离上传输大功率电力,高压交流电(HVDC)传输由于其稳定性受其线路电感所限制的交流电线路的优越性而受到越来越多的关注。因此,迫切需要对交流和直流系统之间的动态相互作用进行深入研究,以用于系统设计和性能优化。 HVDC系统中的瞬变可基本上从参考稳态值暂时改变线路电流,电压和功率,并且系统的行为在很大程度上取决于控制器的参数。直流系统的性能受交流系统特性(例如短路比和交流系统惯性)的影响。在特定操作条件下具有良好性能的控制器在另一种操作条件下可能没有足够好的性能,反之亦然。控制器的性能还取决于整流器和逆变器总线上的阻抗,阻抗可能会根据交流网络的工作条件而变化。这项研究的目的是开发一种控制策略,该策略将简单易行,并且在各种操作条件下均能实现更好的性能,而无需任何参数估计,状态测量和开关动作。这种新方案称为自协调并行多PI控制器方案,其中多个控制器并联连接。 CIGRE HVDC Benchmark系统的线性化模型用于计算控制参数。为了评估所提出的控制器的性能,针对两端HVDC系统,多端HVDC系统和改进的WSCC 9总线系统,研究了弱AC系统中的大型AC故障。比较使用建议的控制器和常规控制器获得的结果。基于模糊逻辑的自整定和增益调度控制器的结果也与所提出的控制器的仿真结果进行了比较。交流系统的短路比(SCR)在暂态稳定性以及控制器的选择中起着重要作用。所建议的控制器在非常低的SCR下进行了测试-这是评估系统性能的最关键值。交流系统的惯性对交流/直流系统的性能也有重大影响。提出了在低SCR和低惯量下所提出的控制器的比较评估。所有仿真都是使用MATLAB / SIMULINK软件包进行的。

著录项

  • 作者

    Meah, Kala.;

  • 作者单位

    University of Wyoming.$bElectrical & Computer Engineering.;

  • 授予单位 University of Wyoming.$bElectrical & Computer Engineering.;
  • 学科 Engineering Electronics and Electrical.
  • 学位 Ph.D.
  • 年度 2007
  • 页码 156 p.
  • 总页数 156
  • 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

  • 入库时间 2022-08-17 11:40:09

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