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Short-Term and Medium-Term Reliability Evaluation for Power Systems With High Penetration of Wind Power

机译:风电渗透率高的电力系统的短期和中期可靠性评估

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摘要

The expanding share of the fluctuating and less predictable wind power generation can introduce complexities in power system reliability evaluation and management. This entails a need for the system operator to assess the system status more accurately for securing real-time balancing. The existing reliability evaluation techniques for power systems are well developed. These techniques are more focused on steady-state (time-independent) reliability evaluation and have been successfully applied in power system planning and expansion. In the operational phase, however, they may be too rough an approximation of the time-varying behavior of power systems with high penetration of wind power. This paper proposes a time-varying reliability assessment technique. Time-varying reliability models for wind farms, conventional generating units, and rapid start-up generating units are developed and represented as the corresponding universal generating functions (UGFs), respectively. A multistate model for a hybrid generation and reserve provider is also proposed based on the developed UGF representations of wind farms, conventional generating units, and rapid start-up generating units. The proposed technique provides a useful tool for the system operator to evaluate the reliability and arrange reserve for maintaining secure system operation in the short- as well as medium-terms.
机译:波动较大且难以预测的风力发电所占份额不断扩大,会给电力系统可靠性评估和管理带来复杂性。这需要系统操作员更准确地评估系统状态,以确保实时平衡。电力系统的现有可靠性评估技术得到了很好的开发。这些技术更专注于稳态(与时间无关)的可靠性评估,并已成功地应用于电力系统规划和扩展。但是,在运行阶段,对于风能渗透率很高的电力系统,其时变行为的近似估计可能过于粗糙。本文提出了一种时变可靠性评估技术。开发了风电场,常规发电机组和快速启动发电机组的时变可靠性模型,并将其分别表示为相应的通用发电函数(UGF)。还基于风电场,常规发电机组和快速启动发电机组的已开发UGF表示,为混合发电和备用提供商提供了一种多状态模型。所提出的技术为系统操作员提供了一个有用的工具,可用于评估可靠性和安排备用资源,以在短期和中期保持系统的安全运行。

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