一种利用电压序列分量检测孤岛的被动技术

Indradeo Pratap Bharti, Prince Kumar, N. Singh, O. Gupta, N. Choudhary, Ashutosh Kumar Singh
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引用次数: 0

摘要

孤岛现象是分布式发电(DG)中一个众所周知的现象,即微电网在与公用电网断开连接后仍继续向孤立的负载区供电。孤岛的快速检测对于保持电网电压和频率的稳定,将干扰限制在允许的范围内,防止电网故障和串级跳闸具有重要意义。在孤岛检测延迟的情况下,系统可能会出现谐波增加、转换过程中的电压畸变、故障和临界负载期间的业务中断等问题。被动检测方法的主要缺点是其较大的非检测区域。由于外部信号注入在公共耦合点,有源孤岛降低了电能质量和系统性能。建议的被动孤岛检测方法是基于在公共连接点(PCC)测量负序电压变化率(roconv)。使用对称分量变换计算负序电压,然后将导数与预定义的阈值进行比较。根据系统决策,释放孤岛跳闸信号给微网断路器。该方法简单、可靠、快速,不使用任何外部信号注入和电能质量下降。
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A Passive Technique for Detecting Islanding Using Voltage Sequence Component
Islanding is a well-known phenomenon in Distributed Generation (DG) in which the microgrid continues to provide power to an isolated load area even after it is disconnected from the utility grid. Fast detection of islanding is very important to maintain stability in voltage and frequency, restrict the disturbances within permissible limits, and prevent faults and cascade tripping in the grid. In case of delayed islanding detection, the system may have increased harmonics, distorted voltage profile during the transition, faults, and service interruption during critical loads. The main disadvantage of passive detection approaches is their large non-detection zone. Due to external signal injection at a common coupling point, active islanding reduces power quality and system performance. The suggested passive islanding detection approach is based on measuring the negative sequence voltage rate of change (ROCONSV) at the point of common connection (PCC). The negative sequence voltage is calculated using symmetrical component transformation and the derivative is then compared to predefined threshold values. Based on the system decision, the islanding trip signal is released for the circuit breaker at the microgrid. The proposed method is simple, reliable, and fast without the use of any external signal injection and power quality degradation.
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