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Influence of wind turbine behaviour on the primary frequency control of the British transmission grid

机译:风力发电机性能对英国输电电网一次频率控制的影响

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System frequency of a synchronous power system varies with the imbalance of energy supplied and the electrical energy consumed. When large generating blocks are lost, the system undergoes a frequency swing relative to the size of the loss. Any deviation in the system frequency is limited using frequency responsive plant. Changes have occurred to the generation mix of the British transmission system in the past 10 years. This has influenced the type of machines contracted for frequency response services. Future increased levels of wind turbines will also influence the operational characteristics of the system and warrant investigation. A process to optimise the response requirements while maintaining statutory limits on frequency deviation has been developed. This method requires suitable load and generator models to replicate transmission system performance. Validation of the complete system against historic loss events has established confidence in the method. A review of the current system with the dynamic model showed that utilising CCGT plant for responsive services requires additional primary response in some cases. Simulations including extra wind generation have shown that under appropriate circumstances, there is a potential to reduce the primary response requirement in the future. The secondary response requirements are maintained in all cases.
机译:同步电力系统的系统频率随所供应的能量和所消耗的电能的不平衡而变化。当损失较大的发电模块时,系统会经历相对于损失大小的频率摆幅。使用频率响应设备可限制系统频率的任何偏差。在过去的十年中,英国输电系统的发电方式发生了变化。这影响了签约频率响应服务的机器的类型。未来增加的风力涡轮机水平也将影响系统的运行特性,并需要进行调查。已经开发了一种在保持法定的频率偏差限制的同时优化响应要求的过程。此方法需要合适的负载和发电机模型来复制传输系统的性能。针对历史损失事件对整个系统进行验证,已经建立了对该方法的信心。使用动态模型对当前系统进行的审查显示,在某些情况下,将CCGT工厂用于响应服务需要额外的主要响应。包括额外风力发电在内的模拟表明,在适当的情况下,将来有可能降低主要响应需求。在所有情况下,都会保留次要响应要求。

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