Impacts of large-scale photovoltaic generation penetration on power system spinning reserve allocation

Jian Zhao, C. Wan, Zhao Xu, Jiayong Li
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引用次数: 10

Abstract

With increasingly widespread utilization of photovoltaic (PV) systems, the stochastic characteristics of the PV generation may bring new challenges to security and reliability of the power system operation. This paper proposes a novel spinning reserve requirement optimization model considering the impacts of large-scale photovoltaic generation penetration. The effects of forecast error of PV generation output on the energy not supplied are taken into account in the proposed model. The power system spinning reserve is optimized using a benefit/cost analysis approach to coordinate the costs of generation operation, and the costs of the expected energy not supplied (EENS). The proposed model is illustrated using IEEE reliability test system (RTS-96). Numerical results systematically demonstrate the increase of scheduled spinning reserve and the reduction of EENS via the application of the proposed model. The penetration levels of PV generation in power systems are symmetrically analyzed for future implementation of the proposed model.
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大规模光伏发电渗透对电力系统旋转备用分配的影响
随着光伏发电系统的日益广泛应用,光伏发电的随机性给电力系统运行的安全性和可靠性带来了新的挑战。提出了一种考虑大规模光伏发电渗透影响的旋转备用需求优化模型。该模型考虑了光伏发电输出预测误差对未供能的影响。采用效益/成本分析方法对电力系统旋转储备进行优化,以协调发电运行成本和预期不供能成本。采用IEEE可靠性测试系统(RTS-96)对该模型进行了验证。数值结果系统地证明了该模型的应用增加了预定纺纱储备,降低了EENS。对光伏发电在电力系统中的渗透水平进行了对称分析,以便将来实现所提出的模型。
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