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首页> 外文期刊>Electric power systems research >Stochastic multi-objective optimal energy and reactive power dispatch considering cost, loading margin and coordinated reactive power reserve management
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Stochastic multi-objective optimal energy and reactive power dispatch considering cost, loading margin and coordinated reactive power reserve management

机译:考虑成本,负荷裕度和协调无功储备管理的随机多目标最优能源和无功功率分配

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In the recent years, modem wind farms (WF) are being increasingly integrated in the power systems. Thanks to the capability curve of doubly-fed induction generator (DFIG) wind turbines, these modem WFs are able to separately supply active and reactive powers. Accordingly, by increasing the penetration of this kind of sources, both voltage stability and reactive power reserve (RPR) management of power system can be affected. This issue makes it important to propose a new methodology for optimal energy and reactive power dispatch in a system with integrated modem WFs in order to effectively take into consideration the capabilities of modem WFs in different aspects of power system operation. Under this perspective, this paper proposes a stochastic multi objective optimal dispatch (SMO-OD) problem in the presence of modem WFs to make a techno-economic framework for the system operators (SOs). The proposed SMO-OD problem aims at minimizing expected payments of energy and reactive power markets, and maximizing expected RPR and loading margin (LM) in the presence of wind power generation uncertainty. This paper also contributes to the relevant literature by formulating a model which determines the RPR of modern WFs to be included in the management of total RPR of the power system. Also, a coordinated RPR (CRPR) scheme is proposed by using this model. The proposed model benefits from a detailed reactive power output model of the DFIG wind turbines in order to handle real-world power system operation. Two studies are considered in the proposed SMO-OD problem: (i) SMO-OD with uncoordinated RPR provision (SMO-OD-URPR), and (ii) SMO-OD with the CRPR provision (SMO-OD-CRPR). The proposed SMO-OD problem is applied to the IEEE 30-bus test system. Simulation results show that using the proposed model, a proper trade-off is made between technical and economic aspects of power system operation, and considerable LM and RPR are provided. In the proposed SMO-OD-CRPR problem, the value of expected RPR increases compared to SMO-OD-URPR problem, and the DFIG-based WF has more expected RPR to inject to grid under contingency or sudden increased load. Moreover, by increasing the wind penetration level, not only does the value of expected payments of energy and reactive power markets reduce, but also the value of expected LM and RPR increases.
机译:近年来,现代风电场(WF)越来越集成到电力系统中。由于双馈感应发电机(DFIG)风力发电机的能力曲线,这些调制解调器WF能够分别提供有功和无功功率。因此,通过增加这种源的渗透,可以同时影响电力系统的电压稳定性和无功功率储备(RPR)管理。为了有效地考虑调制解调器WF在电力系统运行的各个方面的能力,此问题使重要的是,提出一种在集成调制解调器WF的系统中优化能源和无功功率分配的新方法。在这种情况下,本文提出了在存在现代WF的情况下的随机多目标最优调度(SMO-OD)问题,以为系统运营商(SO)建立技术经济框架。提出的SMO-OD问题旨在在存在风力发电不确定性的情况下,最大程度地减少能源和无功功率市场的预期支付,并最大化预期的RPR和负载裕度(LM)。本文还通过制定一个模型来为相关文献做出贡献,该模型确定了要包括在电力系统总RPR管理中的现代WF的RPR。此外,通过使用此模型,提出了一种协调的RPR(CRPR)方案。提出的模型受益于DFIG风力发电机组的详细无功功率输出模型,以便处理实际的电力系统运行。在提出的SMO-OD问题中考虑了两项研究:(i)具有不协调的RPR规定的SMO-OD(SMO-OD-URPR),和(ii)具有CRPR规定的SMO-OD(SMO-OD-CRPR)。所提出的SMO-OD问题被应用于IEEE 30总线测试系统。仿真结果表明,使用所提出的模型,可以在电力系统运行的技术和经济方面做出适当的权衡,并提供了可观的LM和RPR。在提出的SMO-OD-CRPR问题中,与SMO-OD-URPR问题相比,预期RPR的值增加了,并且基于DFIG的WF在偶然性或突然增加的负载下具有更高的预期RPR注入电网。此外,通过增加风的渗透水平,不仅能源和无功功率市场的预期付款额减少,而且预期的LM和RPR值也会增加。

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