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Improved controller for power conditioner using high-temperature superconducting magnetic energy storage (HTS-SMES)

机译:使用高温超导磁能储存器(HTS-SMES)的功率调节器的改进控制器

摘要

One of the most important functions in a superconducting magnetic energy storage (SMES) system when used for power conditioning, is the ability to charge the super-conducting coil as fast as possible to ensure that it is ready when it is next required. This paper describes a novel controller for a high-temperature SMES (HTS-SMES) that can ensure: 1) fast return of energy to the superconducting coil under constant-current mode and 2) a constant and sinusoidal input supply current irrespective of the varying load demand with and without harmonics. In the new HTS-SMES proposed, two hysteresis controllers are used, one to control the magnitude, phase and the waveform of the ac supply current, and the other is to control a dc chopper to regulate the SMES coil current. The first hysteresis controller ensures that as far as the power utility is concerned, the load appears to the utility system as a constant sinusoidal load with unity power factor irrespective whether the load is distorted or varying in nature. The second hysteresis controller has been designed to regulate the energy in and out of the superconducting coil. A special feature of this controller is its ability to smoothly charge the superconducting coil using constant current charging so that it can be ready for the next discharging operation as soon as possible. Analysis of the circuit operation under hysteresis control is presented in details. Simulation and experimental results are presented demonstrating the feasibility of the proposed power conditioning system.
机译:当用于功率调节时,超导磁储能(SMES)系统中最重要的功能之一就是能够对超导线圈进行尽可能快的充电,以确保在下次需要时可以准备就绪。本文介绍了一种新型的高温SMES(HTS-SMES)控制器,该控制器可以确保:1)在恒流模式下将能量快速返回至超导线圈,以及2)恒定和正弦输入电源电流,而不论其变化如何。有无谐波的负载需求。在提出的新HTS-SMES中,使用了两个磁滞控制器,一个用于控制交流电源电流的大小,相位和波形,另一个用于控制直流斩波器以调节SMES线圈电流。第一滞后控制器确保就电力公司而言,负载在电力系统中表现为具有统一功率因数的恒定正弦曲线负载,而与负载是否失真或性质无关。第二个磁滞控制器设计用于调节超导线圈内和外的能量。该控制器的一个特殊功能是它能够使用恒定电流充电对超导线圈进行平滑充电,从而可以为下一次放电操作做好准备。详细介绍了在磁滞控制下的电路工作情况。仿真和实验结果表明了所提出的功率调节系统的可行性。

著录项

  • 作者

    Aware MV; Sutanto D;

  • 作者单位
  • 年度 2003
  • 总页数
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类

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