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The impact of energy storage modeling in coordination with wind farm and thermal units on security and reliability in a stochastic unit commitment

机译:储能模型与风电场和热力机组协同工作对随机机组承诺中的安全性和可靠性的影响

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The environmental concerns and restrictions of fossil fuel resources have led to the deployment of wind power installation. Due to the uncertain nature of wind speed, high penetration of wind power may threaten system reliability and security. Energy storage systems (ESSs) are considered to be a viable solution to this problem. In this study, a stochastic security constrained unit commitment (SCUC) problem is solved in the presence of wind and ESS units. The main concern of this paper is to study the impact of the proposed ESS model on the security and reliability of the system. To assess the reliability of a power system, the expected unserved energy (EUE) for line outage and demand underestimation contingencies is evaluated. The SCUC problem is solved by a scenario-based method incorporated with the Benders decomposition technique to mitigate congestions from power lines and provide feasibility and optimality of the solution in all the scenarios. The performance of the proposed approach has been evaluated using the 6-bus and 39-bus standard power systems. Simulation results demonstrated the economic advantages of the proposed model, while the security constraints are satisfied. Moreover, the impact of energy storage modeling on the EUE in post-contingency circumstances is discussed. (C) 2018 Elsevier Ltd. All rights reserved.
机译:对环境的关注和对化石燃料资源的限制导致了风力发电设备的部署。由于风速的不确定性,风电的高渗透率可能会威胁系统的可靠性和安全性。储能系统(ESS)被认为是解决此问题的可行方法。在这项研究中,存在风能和ESS单元的随机安全约束单元承诺(SCUC)问题得以解决。本文的主要关注点是研究所提出的ESS模型对系统安全性和可靠性的影响。为了评估电力系统的可靠性,评估了线路中断和需求低估意外事件的预期无功电能(EUE)。 SCUC问题通过结合Benders分解技术的基于场景的方法来解决,以缓解电力线的拥塞并在所有场景中提供解决方案的可行性和最佳性。已使用6总线和39总线标准电源系统评估了所建议方法的性能。仿真结果证明了该模型的经济优势,同时满足了安全性约束。此外,还讨论了储能模型对应急后环境中EUE的影响。 (C)2018 Elsevier Ltd.保留所有权利。

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