一种基于主被动结合技术的可靠孤岛探测策略

M. Ebtehaj, B. Sobhani, Behnam Sobhani
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引用次数: 0

摘要

摘要:网格连接分布式资源的一个重要问题是孤岛问题。出于人员和设备安全等原因,应防止这种情况发生。本文研究了一种利用有功功率变化率能量(EROCOAP)和扰动通过dq-电流控制器q轴施加的无源和有源混合孤岛检测方法。该方案的重点是尽可能缩小非检测区,并保持正常情况下输出电能质量不变。此外,该技术还可以克服现有技术中固有的设置检测阈值的问题。在这项研究中,我们提出了一种混合的主动式和被动式孤岛检测方法。首先,根据案例研究系统的沉降时间计算了ROCOAP的能量。如果该值高于阈值,则对电流控制器的q轴施加干扰。通过频率测量检测孤岛状态。通过MATLAB/Simulink进行的仿真结果表明,该方法具有较小的无检测区。此外,该方法能够在最短的标准时间内准确地检测孤岛。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A Reliable Strategy in Order to Islanding Detection Based on Combined Active and Passive Techniques
Abstract—One of the serious concern of grid connected distributed resources is islanding problem. This condition should be prevented due to several reasons concerning such as personnel and equipment safety. This paper investigated a mixed passive and active islanding detection method using energy of rate of change of active power (EROCOAP) and disturbance applying through q-axis of dq-current controller. Reduction of Non detection Zone to as close as possible and keeping the output power quality unchanged in normal condition are main emphasis of the proposed scheme. In addition, this technique can also overcome the problem of setting the detection thresholds inherent in the existing techniques. In this study, we propose to use a hybrid active and passive method for islanding detection. At first, the energy of ROCOAP is calculated for settling time of case study system. If this value becomes higher than threshold value, disturbance is applied to q-axis of current controller. By frequency measurement islanding condition is detected. The simulations results, carried out by MATLAB/Simulink, shows that the proposed method has a small non detection zone. Also, this method is capable of detecting islanding accurately within the minimum standard time.
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