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Integrated Analysis and Monitoring for Large-scale Wind Farm Connected with Large Capacity Thermal Power Plant

机译:大容量热电厂连接大型风电场的综合分析与监控

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With the rapid development of wind power in China, large-scale wind power transmission is inevitable. Wind energy is volatile and intermittent, and can not be transported separately over long distances. The bundling of wind power and thermal power has become a research direction of widespread concern. This paper firstly introduces a large-scale wind power plant connected with large capacity thermal power plant in North China, and establishes an equivalent model through PSCAD/EMTDC. Then, for the equivalent model, the risk of sub-synchronous oscillation (SSO) is analyzed by using time-domain simulation. The results indicate that the SSO is possible if the wind turbine converter control parameters are unreasonable and the transmission system is connected to a weak AC system, which can increase the oscillation of the thermal generator. Furthermore, a monitoring method of SSO for large-scale wind power connected with large capacity thermal power plant is proposed. The effectiveness of the method is verified by electromagnetic transient simulation.
机译:随着中国风电的快速发展,大型风力传递是不可避免的。风能是挥发性和间歇性的,不能在长距离中单独运输。风电和热力捆绑已成为广泛关注的研究方向。本文首先介绍了一家大型风力发电厂,与华北地区的大容量热电厂连接,并通过PSCAD / EMTDC建立了等效的模型。然后,对于等效模型,通过使用时域模拟来分析子同步振荡(SSO)的风险。结果表明,如果风力涡轮机转换器控制参数是不合理的,并且传输系统连接到弱AC系统,这可以增加热发电机的振荡。此外,提出了一种与大容量热电厂连接的大型风电的SSO监测方法。通过电磁瞬态仿真验证了该方法的有效性。

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