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首页> 外文期刊>IEEE Transactions on Power Systems >Probabilistic Spinning Reserve Provision Model in Multi-Control Zone Power System
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Probabilistic Spinning Reserve Provision Model in Multi-Control Zone Power System

机译:多控制区电力系统中的概率旋转备用储备模型

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摘要

Inter-zonal trading in multi-area power system (MAPS) improves the market efficiency and the system reliability by sharing the resources (energy and reserve services) across zonal boundaries. Actually, each area can operate with less reserve resources than would normally be required for isolated operation. The aim of this work is to propose a model that includes the problem of optimal spinning reserve (SR) provision into the security constraint unit commitment (SCUC) formulation based on the reliability criteria for a MAPS. The loss of load probability (LOLP) and the expected load not served (ELNS) are evaluated as probabilistic metrics in the case of a multi-control zone power system. Moreover, we demonstrate how these criteria can be explicitly incorporated into the market-clearing formulation. The non-coincidental nature of spinning reserve requirement across the zonal boundary is effectively modeled. Two system cases including a small-scale (six-bus) test system and the IEEE reliability test system (IEEE-RTS) are used to demonstrate the effectiveness of the presented model.
机译:多区域电力系统(MAPS)的区域间交易通过跨区域边界共享资源(能源和储备服务)来提高市场效率和系统可靠性。实际上,每个区域可以使用的资源少于隔离操作通常所需的资源。这项工作的目的是提出一个模型,该模型基于MAPS的可靠性标准,将最优旋转备用(SR)提供问题纳入安全约束单元承诺(SCUC)公式中。在多控制区电力系统的情况下,将负载损失概率(LOLP)和预期未服务负载(ELNS)评估为概率指标。此外,我们演示了如何将这些标准明确地纳入市场结算公式。有效地模拟了跨区域边界旋转储备需求的非巧合性质。使用两个系统案例,包括小型(六总线)测试系统和IEEE可靠性测试系统(IEEE-RTS),来演示所提出模型的有效性。

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