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A demand-side management-based model for GTEP problem considering FSC allocation

机译:考虑FSC分配的基于需求侧管理的G&TEP问题模型

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This paper presents a multi-period generation and transmission expansion planning in the presence of uncertainty in the strategies of market participations. Moreover, the effects of demand response and fixed series compensation allocation are considered for peak shaving and optimal utilization of transmission capacity, respectively. This may cut back the generating expansion capacity and transmission investment cost. The optimal expansion plan is achieved while modeling market functioning considering uncertainty in generator offers, and demand bids. In this model, DR preferences have integrated into ISO's market clearing process, which applied to the load aggregators according to locational marginal prices and market clearing. Shifting and curtailing demand peak, and onsite generation are considered as load reduction strategies in demand response program. However, ISO optimizes the decision submitted by generating companies and load aggregators in the presence of uncertainties. The proposed model is applied to the Garver system to show the effectiveness of DR and FSC in dynamic G&TEP.
机译:本文在市场参与策略中存在不确定性存在的多时代一代和传输扩展规划。此外,考虑了需求响应和固定串联补偿分配的影响,分别考虑了峰值剃刮和最佳利用传输能力。这可能会削减产生的扩展容量和传输投资成本。在考虑发电机优惠中的不确定性和需求出价时,在建模市场运作的同时实现最佳扩展计划。在该模型中,博士首选项已集成到ISO的市场清算过程中,根据地方边际价格和市场清算应用于负载聚合器。移位和缩减需求峰值,现场代在需求响应计划中被视为负载减少策略。但是,ISO优化了在存在不确定性存在下产生公司和负载聚集器提交的决定。该建议的模型应用于Garver系统,以显示动态G&TEP中DR和FSC的有效性。

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