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Project and system firm capacity definitions with long term hydro scheduling

机译:项目和系统公司具有长期水电调度的能力定义

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In a hydro-dominated power system, with complex inter-temporal linkages, capacities of individual projects and project configurations are more complicated than using the simple megawattage, often used to denote capacity in thermally dominated systems. In this paper, the long term hydro scheduling problem is solved and used to test novel definitions of hydro-capacities, based on expected cost and cost probability distributions for system operating cost, based on rising load and a within-the-year time distribution of load. The paper expands on previous capacity definitions and tests them numerically in a case study with realistic data from a hydro-dominated system. The principal contribution of this paper are new capacity concepts and practical applications for an example of sizing a given reservoir. The testing is performed using actual data from the Icelandic hydro-dominated power system, with the model HYDOVG delivering optimal schedules for various inflow instances and load cases and using linear programming (LP) CPLEX software to optimize each case and instant.
机译:在一个水力主导的电力系统中,具有复杂的时间间联动,个人项目和项目配置的容量比使用简单的兆塔格更复杂,通常用于表示在热主导的系统中的容量。在本文中,解决了长期水电调度问题并用于测试水力能力的新颖定义,基于系统运营成本的预期成本和成本概率分布,基于上升的负载和持续时间分布加载。本文扩展了先前的容量定义,并在与水电主导系统的现实数据的情况下数值测试。本文的主要贡献是新的容量概念和实际应用,举例说明给定水库的规模示例。使用来自冰岛水电主导的电源系统的实际数据进行测试,该模型Hydovg为各种流入实例提供最佳时间表,并使用线性编程(LP)CPLEX软件来优化每种情况和瞬发。

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