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Frequency control improvement in an autonomous power system: An application of virtual synchronous machines

机译:自主动力系统的频率控制改进:虚拟同步机的应用

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This work addressed the problem of frequency control improvement in a 3⊘/400V/50Hz autonomous power system, consisting of two diesel generators of 26kW nominal power, a fixed-speed wind generator of 20kW nominal power, two resistive loads of 20kW each, and an energy storage system consisting of a voltage source converter (VSC) with a 1000V dc-bus voltage. The model of the system was developed in Simulink-SimPowerSystems library. Simulations were conducted for a wind speed profile of 20s and considering the connection of the wind generator, and connection/disconnection of one resistive load. Frequency excursions of 0.1pu were observed in simulations when the system operates with only one genset. To support frequency control, a virtual synchronous machine (VSM) was proposed as a solution. To implement the VSM, the line currents of the VSC were controlled by the technique of input-output linearization. The reference for the q-axis was set to zero and the reference for the d-axis current was used to implement the VSM. For the testing conditions mentioned before, the VSM was capable of emulate the inertial response and the prime mover of the disconnected genset. It is also possible to have a better performance since parameters like the inertia of the VSM can be easily adjusted.
机译:这项工作解决了3&#x2298中的频率控制改进问题; / 400V / 50Hz自动发电系统,由26kW标称电源的两个柴油发电机组成,一个固定速度的风力发电机20kW标称动力,两个电阻负载为20kW和由具有1000V直流电压的电压源转换器(VSC)组成的能量存储系统。系统的模型是在Simulink-SimPowersystems库中开发的。对20S的风速轮廓进行模拟,并考虑到风力发生器的连接,以及一个电阻负载的连接/断开。当系统仅用一个发电机组操作时,在模拟中观察到0.1pu的频率偏移。为了支持频率控制,建议虚拟同步机(VSM)作为解决方案。为了实现VSM,通过输入输出线性化技术来控制VSC的线路电流。 Q轴的参考设置为零,使用D轴电流的参考来实现VSM。对于之前提到的测试条件,VSM能够模拟惯性响应和断开的发电机组的主要动力。由于可以容易地调整像VSM的惯性的参数,因此也可以具有更好的性能。

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