一种新的基于CSoDoA的多DER交流微电网被动孤岛检测技术

Sivaramarao Bodda, Prashant Agnihotri, Santosh Biswas
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引用次数: 0

摘要

随着可再生能源在配电中越来越受欢迎,微电网孤岛方法越来越重要。在所有孤岛方法中,如果NDZ最小化,被动方法易于实施,适用于所有类型的DER。为了解决NDZ问题,本文提出了一种新的基于连续相电压形成的椭圆的CSoDoA的无源孤岛检测方法。电压的峰值幅度和相位角差是为了计算椭圆的面积而要估计的参数。现有技术的无源方法将幅度或相位角或频率的影响视为孤岛检测度量。CSoDoA度量结合了幅度和相位角的影响,从而降低了NDZ。所提出的方法在同步和逆变器接口的DER上都得到了验证。所考虑的测试系统是基于单DER的MG和修改的IEEE 13总线多DER MG。CSoDoA算法在Raspberry Pi控制器上实现,并使用带有实时模拟器OP-4510的HIL工作台进行验证。模拟和测试了各种孤岛和非孤岛事件,从结果中可以明显看出,它的NDZ非常小。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A novel CSoDoA based passive islanding detection technique for multi-DER AC microgrid control

Micro-grid islanding methods are gaining importance as the presence of renewable energy resources is becoming increasingly popular in power distribution. Among all the islanding methods, passive methods are easy to implement and applicable to all types of DERs provided the NDZ is minimized. This article presents a novel passive islanding detection method based on the CSoDoA of ellipse formed by the successive phase voltages to address the NDZ problem. The peak magnitude and phase angle difference of voltages are the parameters to be estimated to compute the area of the ellipse. State-of-the-art passive methods consider the effect of either magnitude or phase angle or frequency as an islanding detection metric. The CSoDoA metric combines the effect of both magnitude and phase angle thereby reducing the NDZ. The proposed method is validated on both synchronous and inverter-interfaced DERs. The test systems considered are both single-DER based MG and modified IEEE 13 bus multi-DER MG. The CSoDoA algorithm is implemented on a Raspberry-Pi controller and validated using HIL workbench with real-time simulator OP-4510. Various islanding and non-islanding events are simulated, tested and it is evident from the results that it has a very small NDZ.

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