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Utilization of the Area Risk Concept for Operational Reliability Evaluation of a Wind-Integrated Power System

机译:区域风险概念在风电系统运行可靠性评估中的应用

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Wind power generation is significantly different from conventional thermal and hydro power generation in the sense that the wind power is governed by the atmosphere and cannot be dispatched like the conventional units in order to respond to the system requirements. The operational reliability of a conventional system depends on the failures of the committed units and the lead time of the next available unit. The reliability contribution of a wind turbine generator is mainly governed by the variability of wind speed at the wind site. A short-term wind model developed for the specific lead time should be suitably combined with the other committed units to evaluate the operational reliability of a power system with significant wind penetration. The area risk concept, previously developed to evaluate the reliability contribution of rapid start units and hot reserve units that are committed later in the lead time, is extended in this paper to incorporate wind power in evaluating the system reliability. The developed method is applied to the IEEE-RTS to evaluate the operational system well-being indices.
机译:风力发电与常规的火力发电和水力发电显着不同,因为风力是由大气控制的,并且不能像常规单元那样被调度以响应系统要求。常规系统的操作可靠性取决于承诺单元的故障和下一个可用单元的交货时间。风力涡轮发电机的可靠性贡献主要受风场处风速的变化支配。针对特定提前期开发的短期风模型应与其他承诺机组适当组合,以评估具有大风渗透的电力系统的运行可靠性。本文扩展了区域风险概念,该概念是先前为评估快速启动单元和热储备单元的可靠性贡献而提出的,这些概念将在交付周期的较晚时间内提交,并在本文中进行了扩展,以将风能纳入评估系统可靠性的过程中。所开发的方法应用于IEEE-RTS,以评估操作系统的健康指数。

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