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High voltage wound-rotor induction machines - harmonic field effects and power quality issues

机译:高压绕线转子感应电机-谐波场效应和电能质量问题

摘要

The last few decades, harmonic content in the power system has increased dramatically, due to more complex power systems containing more power electronics and other nonlinear loads. The background for this work is a severe voltage quality problem causing lighting flicker at low voltage end consumers in a rural area in Norway. It is assumed that interharmonic components occurring close to the fifth and the seventh harmonic frequencies, creating a beat interaction with the associated integer harmonic components, resulted in the low frequent voltage disturbance. These interharmonic components occur during operation of three large high-voltage wound rotor induction motors installed at a hydro pumping station. The main objective of this work is to investigate the source of the interharmonic components.A mathematical description of a rotor-stator interaction is presented. Here, an integer harmonic component in machine rotor is reflected through the air gap over to machine stator. In machine stator reference frame, this component occur as an interharmonic component at a different frequency, due to machine slip. For this to happen, an integer harmonic component is required as the source for the interharmonic.To investigate this, laboratory tests on an induction machine in the laboratory at NTNU is conducted. A six-pulse, diode rectifier is used as a harmonic source, feeding the motor with harmonics. In addition, a large upstream inductance is connected. This inductance reduces network strength and allow the machine and the rectifier to distort the voltage. Simulations and calculations are carried through to verify functionality of laboratory setup. In the laboratory tests no interharmonic component occur when an external harmonic source feed the motor with harmonics. However, when the external harmonic source is disconnected, the induction motor generates interharmonic components by itself. It is noted that a weak grid is necessary for the interharmonic components to occur in machine voltage and that a stiff network do suppress the interharmonic components generated by the motor.Test results indicate that the induction motors at the hydro pumping station are the harmonic sources themselves. It is considered very likely that induction machines at the pumping station generate harmonics in rotor. Then, a rotor-stator interaction reflects rotor harmonics to machine stator, occurring at an interharmonic frequency, due to machine slip. Calculations of the interharmonic frequencies are very close to verify a rotor-stator interaction. Deviations of around 1 % separate measured and calculated frequencies. It is concluded that these deviations could be caused by a combination of inaccuracy in measurement equipment, machine rotor speed and by data quality reduction during post processing of data. Further, laboratory tests show that a beat phenomenon between two harmonic components could occur in any wound rotor induction machine. A weak power grid or a harmonic resonance could result in power quality issues.
机译:在最近的几十年中,由于包含更多电力电子设备和其他非线性负载的更复杂的电力系统,电力系统中的谐波含量急剧增加。这项工作的背景是严重的电压质量问题,导致挪威农村地区的低压终端用户的照明闪烁。假定发生在五阶和七阶谐波频率附近的谐波分量,与相关的整数谐波分量产生拍频相互作用,从而导致较低的频繁电压干扰。这些谐波成分在安装在水力泵站的三台大型高压绕线转子感应电动机运行期间发生。这项工作的主要目的是研究谐波分量的来源。提出了转子-定子相互作用的数学描述。在此,电机转子中的整数谐波分量通过气隙反射到电机定子上。在机器定子参考系中,由于机器打滑,该分量在不同频率下作为谐波分量出现。为此,需要一个整数谐波分量作为间谐波的源。为了对此进行研究,在NTNU实验室的感应机上进行了实验室测试。六脉冲二极管整流器用作谐波源,为电动机提供谐波。另外,连接了较大的上游电感。这种电感会降低网络强度,并使电机和整流器使电压失真。进行仿真和计算以验证实验室设置的功能。在实验室测试中,当外部谐波源为电机提供谐波时,不会出现谐波成分。但是,当断开外部谐波源时,感应电动机会自行产生谐波分量。值得注意的是,为了使电机电压中的谐波分量产生,必须要有一个弱的电网,而刚性网络的确可以抑制电动机产生的谐波分量。试验结果表明,水泵站的感应电动机本身就是谐波源。 。泵站的感应电机极有可能在转子中产生谐波。然后,由于电机打滑,转子与定子之间的相互作用将转子谐波以间谐波频率反射到电机定子上。间谐波频率的计算非常接近以验证转子-定子相互作用。大约1%的偏差将测量和计算的频率分开。结论是,这些偏差可能是由于测量设备的不准确性,机器转子速度以及数据的后处理过程中数据质量下降所造成的。此外,实验室测试表明,在任何绕线​​转子感应电机中,两个谐波分量之间都可能发生跳动现象。电网薄弱或谐波谐振会导致电能质量问题。

著录项

  • 作者

    Kastet Torstein;

  • 作者单位
  • 年度 2015
  • 总页数
  • 原文格式 PDF
  • 正文语种 eng
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