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Reliability assessment of incentive- and priced-based demand response programs in restructured power systems

机译:重组电力系统中基于激励和价格的需求响应计划的可靠性评估

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摘要

Fostering demand response (DR) through incentive-based and priced-based programs has always great impact on improvement of efficiency and reliability of the power systems. The use of DR lowers undesirable effects of failures that usually impose financial costs and inconveniences to the customers. Hence, quantifying the impact of demand response programs (DRPs) on reliability improvement of the restructured power systems is an important challenge for the independent system operators and the regional transmission organizations. In this paper, the DR model which treats consistently the main characteristics of the demand curve is developed for modeling. In proposed model, some penalties for customers in case of no responding to load reduction and incentives for customers who respond to reducing their loads are considered. In order to make analytical evaluation of the reliability, a mixed integer DC optimal power flow is proposed by which load curtailments and generation re-dispatches for each contingency state are determined. Both transmission and generation failures are considered in contingency enumeration. The proposed technique is modeled in the GAMS software and solved using CPLEX as a powerful mixed integer linear programming (MILP) solver. Both supply-side reliability for generation companies and demand-side reliability for customers are calculated using this technique. In order to simulate customers' behavior to different DRPs in a real power network, the proposed DR model is used and evaluated over Iranian power network. In order to investigate the reliability effects of DRPs based on proposed reliability method, DRPs based on the DR model are implemented over the IEEE RTS 24-bus test system, and reliability indices for generation companies, transmission network and customers are calculated. Using proposed performance index, the priority of the DRPs are determined from view point of customers, generation companies, transmission network and the whole system in IEEE RTS.
机译:通过基于激励和基于定价的程序来促进需求响应(DR)始终对提高电力系统的效率和可靠性具有重大影响。 DR的使用降低了故障的不良影响,这种不良影响通常会带来财务成本和给客户带来不便。因此,对于独立系统运营商和区域输电组织而言,量化需求响应计划(DRP)对改组电力系统可靠性的影响是一项重要挑战。在本文中,开发了始终处理需求曲线主要特征的DR模型进行建模。在提议的模型中,考虑了对不响应负载减少的情况对客户的一些惩罚以及对响应于减少负载的客户的奖励。为了对可靠性进行分析评估,提出了混合整数DC最优功率流,通过该最优功率流,确定了每种意外状态的负载削减和发电重新调度。偶然性枚举考虑了传输失败和发电失败。所提出的技术在GAMS软件中进行了建模,并使用CPLEX作为强大的混合整数线性规划(MILP)求解器进行了求解。使用此技术可以计算发电公司的供应方可靠性和客户的需求方可靠性。为了模拟实际电网中客户对不同DRP的行为,在伊朗电网上使用和评估了所提出的DR模型。为了研究基于提出的可靠性方法的DRP的可靠性影响,在IEEE RTS 24总线测试系统上实现了基于DR模型的DRP,并计算了发电公司,输电网络和客户的可靠性指标。使用建议的性能指标,从客户,发电公司,传输网络和IEEE RTS中的整个系统的角度确定DRP的优先级。

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