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Load Frequency Control for Rural Distributed Generation

机译:农村分布式发电的负荷频率控制

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摘要

In rural low-voltage networks, distribution lines are usually highly resistive. When many distributed generators are connected to such lines, power sharing among them is difficult when using conventional droop control, as the real and reactive power have strong coupling with each other. A high droop gain can alleviate this problem but may lead the system to instability. To overcome this, two droop control methods are proposed for accurate load sharing with frequency droop controller. The first method considers no communication among the distributed generators and regulates the output voltage and frequency, ensuring acceptable load sharing. The droop equations are modified with a transformation matrix based on the line R/X ratio for this purpose. The second proposed method, with minimal low bandwidth communication, modifies the reference frequency of the distributed generators based on the active and reactive power flow in the lines connected to the points of common coupling. The performance of these two proposed controllers is compared with that of a controller, which includes an expensive high bandwidth communication system through time-domain simulation of a test system. The magnitude of errors in power sharing between these three droop control schemes are evaluated and tabulated.
机译:在农村低压网络中,配电线通常具有高电阻。当许多分布式发电机连接到这样的线路时,使用常规的下降控制时,它们之间的功率共享很困难,因为有功功率和无功功率之间具有很强的耦合性。高的下垂增益可以缓解此问题,但可能导致系统不稳定。为了克服这个问题,提出了两种下垂控制方法来与频率下垂控制器进行精确的负载分配。第一种方法考虑分布式发电机之间没有通信,并调节输出电压和频率,以确保可接受的负载分配。为此,使用基于线R / X比的变换矩阵对下垂方程进行了修改。提出的第二种方法具有最小的低带宽通信,它基于连接到公共耦合点的线路中的有功和无功功率流来修改分布式发电机的参考频率。通过测试系统的时域仿真,将这两种建议的控制器的性能与控制器进行比较,后者包括昂贵的高带宽通信系统。对这三种下垂控制方案之间的功率共享误差幅度进行了评估并制成表格。

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