防止瞬态气体活塞单元不必要断开的静态装置

P. Ilyushin, S. Filippov
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摘要

分析了继电保护在分布式发电设备暂态中断开发电机组的原因,以及继电保护在暂态中断开发电机组可能造成的后果。气活塞单元(GPU)制造商配置rp的方式是,短期频率偏差可能导致不必要的断开。最糟糕的情况是,当携带DG设施的微电网因有功功率不平衡而被孤立时,或者当微电网在必须维持工业负荷的情况下被孤立时。暂态的具体情况在很大程度上取决于负载的组成以及微电网内交流电机的稳定性。作为本研究的一部分进行的模拟表明,使用静态设备(能量存储单元ESU和主动负载AL)是一种有效的解决方案,可以防止不必要的GPU断开。因此,本文就如何计算电气参数以优化ESU和AL配置提供了建议。使用最先进的静态设备加上额外的工程设计有助于防止不必要的GPU断开,并确保在瞬态导致短期频率偏差的情况下继续向工业负载供电。
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Static Devices to Prevent Unnecessary Disconnections of Gas-Piston Units in Transients
This paper analyzes why relay protections (RP) disconnect generator sets (GS) at distributed generation (DG) facilities during transients, and what could such disconnection result in. Gas-piston unit (GPU) manufacturers configure the RPs in such a way that a short-term frequency deviation may cause an unnecessary disconnection. The worst scenario is when a microgrid that carries a DG facility becomes islanded with an active power imbalance, or when a microgrid is islanded while having to maintain an industrial load. How specifically a transient goes depends to a great extent on what comprises the load and on the resulting stability of AC motors within the microgrid. Simulations carried out as part of this research show that using static devices (an energy storage unit, ESU, and an active load, AL) is an effective solution that can prevent unnecessary GPU disconnections. The paper thus provides recommendations on how to calculate the electrical parameters to optimize ESU and AL configurations. Use of state-of-the-art static devices coupled with additional engineering helps prevent unnecessary GPU disconnections and ensure continued electricity delivery to industrial loads in case a transient causes a short-term frequency deviation.
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