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Optimal Offering Strategy of a Price-Maker Hydro Producer Considering the Effects of Crossing the Forbidden Zones

机译:价格制造商水电生产商的最佳发行策略考虑禁止区的影响

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摘要

The phenomenon of crossing the forbidden zone is unavoidable and wasteful when scheduling the hydro units. In this paper, the effect of crossing the forbidden zone is taken into account using the strategic offering model to help the price-maker hydro producers (PMHPs) devise more economic offering strategies in this paper. This effect is economically quantified and formulated in the form of the mixed integer linear program (MILP) with the use of the big M method and the piecewise linear technique. Therefore, the effect of crossing the forbidden zone therefore can easily be incorporated into the strategic offering model. Based on the residual demand curve (RDC) scenarios, the strategic offering model, which consists of offering and self-scheduling models, is established according to the real-world data from the Three Gorges Project (TGP). The whole optimization model is then converted into the form of MILP formulations by properly discretizing the net head. A test case based on the TGP is presented, in which the strategic offering model is set as a comparable test while ignoring the effect of crossing the forbidden zone. The results provide insight on the offering strategy and physical system operations during a single day. The outcomes indicate that the model that incorporates the effect of crossing the forbidden zone will effectively prevent the crossing phenomenon from happening and that the proposed strategic offering model is more useful for assisting a PMHP in developing profitable offering strategy.
机译:在调度水电装置时,穿过禁区的现象是不可避免的和浪费。在本文中,使用战略提供模式考虑过禁区的效果,以帮助价格制造商水电生产商(PMHPS)在本文中制定了更经济的策略。这种效果是在使用大M方法和分段线性技术的混合整数线性程序(MILP)的形式中经济定量和配制。因此,因此可以容易地结合到禁止区域的效果被纳入战略提供模型。基于残余需求曲线(RDC)方案,根据来自三峡项目(TGP)的​​真实数据建立了由提供和自我调度模型组成的战略提供模式。然后通过适当地离散净头来将整个优化模型转换为MILP配方的形式。提出了基于TGP的测试用例,其中战略提供模型被设置为可比测试,同时忽略穿过禁区的效果。结果在一天内提供了关于提供策略和物理系统操作的见解。结果表明,融合禁区越过禁区的效果的模型将有效地防止交叉现象发生,并且所提出的战略提供模型对于协助PMHP开发有利可图的提供策略更有用。

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