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Optimal short-term scheduling for a large-scale cascaded hydro system

机译:大型梯级水电系统的最优短期调度

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This paper describes a short term hydro generation optimization program that has been developed by the Hydro Electric Commission (HEC) to determine optimal generation schedules and to investigate export and import capabilities of the Tasmanian system under a proposed DC interconnection with mainland Australia. The optimal hydro scheduling problem is formulated as a large scale linear programming algorithm and is solved using a commercially-available linear programming package. The selected objective function requires minimization of the value of energy used by turbines and spilled during the study period. Alternative formulations of the objective function are also discussed. The system model incorporates the following elements: hydro station (turbine efficiency, turbine flow limits, penstock head losses, tailrace elevation and generator losses), hydro system (reservoirs and hydro network: active volume, spillway flow, flow between reservoirs and travel time), and other models including thermal plant and DC link. A valuable by-product of the linear programming solution is system and unit incremental costs which may be used for interchange scheduling and short-term generation dispatch.
机译:本文介绍了由水电委员会(HEC)开发的一项短期水力发电优化计划,用于确定最佳发电计划并研究塔斯马尼亚系统在与澳大利亚大陆之间的直流互联下的塔斯马尼亚系统的进出口能力。最优水力调度问题被公式化为大规模线性规划算法,并使用可商购的线性规划软件包进行求解。选定的目标函数要求最小化涡轮机在研究期间所消耗和泄漏的能量值。还讨论了目标函数的替代公式。系统模型包含以下元素:水力发电站(涡轮效率,涡轮机流量限制,压力管道水头损失,尾水高度和发电机损失),水力系统(水库和水力网络:有效容积,溢洪道流量,水库之间的流量和运行时间) ,以及其他模型,包括热电厂和直流母线。线性规划解决方案的宝贵副产品是系统和单位增量成本,可用于互换调度和短期发电调度。

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