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Day-ahead Generation Scheduling Method for New Energy and Hydro Power System

机译:新能源水电系统的提前发电调度方法

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When the stochastic and fluctuant new energy integrates to the power system, it increases conventional units' burden. On the other hand, some conventional units are replaced by new energy units, which lead to the decline in peak load regulation ability. In order to make full use of the water storage capacity of hydropower to improve system's peak load regulation ability, this paper proposes a method of optimizing the day-ahead generation scheduling based on the coordinated operation of new energy and hydropower. This method comprehensively considers the constraints of hydro-plants generation constraints, power balance, unit output, new energy output prediction, and can prepare unit combinations and output plans. In the objective function, new energy accommodation is given greater weight. This will implicitly achieve the goal of the first priority of accommodating new energy and the second priority of accommodating hydropower, which can reduce the start-stopping of thermal power units and is particularly suitable for power systems with high start-up costs and high operating costs of thermal power units. The example results show that the method can make full use of hydropower and new energy to regulate peak load, which can not only promote accommodation of new energy and guarantee the safety of power safety, but also ensure the stability of thermal power plants operation and increase the economic efficiency of power system.
机译:当随机且波动的新能源整合到电力系统中时,将增加常规装置的负担。另一方面,一些常规单元被新的能量单元替代,这导致峰值负载调节能力的下降。为了充分利用水电的蓄水能力,提高系统的峰值负荷调节能力,提出了一种基于新能源与水电协调运行的日发电调度优化方法。该方法综合考虑了水电厂发电约束,电力平衡,机组输出,新能源输出预测等方面的约束,可以编制机组组合和输出计划。在目标函数中,给新能源提供更大的权重。这将隐含地实现容纳新能源的第一优先和容纳水力发电的第二优先的目标,这可以减少火力发电机组的启停,并且特别适用于启动成本高且运营成本高的电力系统火力发电机组。算例结果表明,该方法可以充分利用水电和新能源来调节高峰负荷,不仅可以促进新能源的住宿,保障电力安全,而且可以保证火电厂运行的稳定性和增加电力系统的经济效率。

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