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Coordinated control strategies between unit and grid in islanded power system

机译:孤岛电力系统中机组与电网的协调控制策略

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Isolated power system may be caused by large area blackout in interconnected power system in the case of accident, extreme weather or manual disoperation. Coordinated control strategies between unit and grid have their limitations in islanded power system. The local power plant wouldn't play a big role in these cases, as its stability relies heavily on support of the interconnected power system. No consideration of divisional operation mode, the system stability control are set based on the interconnected power system and there are many challenge and threats to establish or maintain islanded power system. This paper analyzes the factors of grid side and unit side which influence isolated power system. The dynamic models which are suit for isolated power system with generating unit of medium and small capacity are used in the paper to meet the need of the applicable ones to study their dynamic characteristics. For clarification of relation between different load disturbance and units' governing system, stability of the local power system is studied by the simulation in different load disturbance, adjusting the system parameters and control logic. Not only proper control strategy of power plant but their evaluation indexes are suggested to improve performance and achieve stability in islanded power system. With considering the frequency characteristic difference of interconnected and islanded power system, an optimization method of under frequency load shedding is proposed to meet the frequency security requirements in the two cases. To take Guangzhou power gird for an example, islanded power system test were made and analyzed under the real power grid condition, which indicated the effectiveness and credibility of the effort mentioned. The proposed method of coordinated control strategy enhances the performance of both power system and units to deal with accident's threat and the challenge and has active guidance meaning and applied value to guarantee security.
机译:在事故,极端天气或人为操作的情况下,相互连接的电源系统中的大面积停电可能会导致电源系统隔离。机组和电网之间的协调控制策略在孤岛电力系统中有其局限性。在这种情况下,本地发电厂将不会发挥重要作用,因为其稳定性在很大程度上取决于对互连电力系统的支持。在不考虑分区运行方式的情况下,基于互连的电力系统来设置系统稳定性控制,并且建立或维护孤岛电力系统存在许多挑战和威胁。本文分析了电网侧和机组侧影响隔离电力系统的因素。本文采用了适合于具有中小容量发电机组的隔离电力系统的动力学模型,以满足研究其动态特性的适用模型的需求。为了弄清不同负载扰动与机组调节系统之间的关系,通过在不同负载扰动情况下的仿真研究,调整系统参数和控制逻辑,研究了局部电力系统的稳定性。不仅提出了适当的电厂控制策略,而且提出了评价指标,以提高孤岛电力系统的性能,达到稳定的目的。考虑到互连和孤岛电力系统的频率特性差异,提出了一种欠载减载的优化方法,以满足两种情况下的频率安全要求。以广州电网为例,在实际电网条件下进行了孤岛电力系统测试,并进行了分析,表明了上述工作的有效性和可信性。所提出的协调控制策略方法可以提高电力系统和机组的性能,以应对事故的威胁和挑战,具有积极的指导意义和保证安全的应用价值。

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