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An operational power management method for the grid containing renewable power systems utilizing short-term weather and load forecasting data

机译:一种可再生电力系统的电网运行电力管理方法,利用短期天气和负载预测数据

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This paper addresses the problems associated with power management of the grid containing renewable power systems and proposes a method for enhancing its operational power management. Since renewable energy provides uncertain and uncontrollable energy resources, the renewable power systems can only generate irregular power. This power irregularity creates problems affecting the grid power management process and influencing the parallel operations of conventional power plants on the grid. To demonstrate this power management method for this type of grid, weather-dependent wind and photovoltaic power systems are chosen an example. This study also deals with other uncertain quantities which are system loads. In this example, the management method is based on adapting short-term weather and load forecasting data. The new load demand curve (NLDC) can be produced by merging the loads with the power generated from the renewable power systems. The NLDC is used for setting the loads for the baseload power plants and knowing when other plants are needed to increase or decrease their supplies to the grid. This will decrease the irregularity behavior effects of the renewable power system and at the same time will enhance the smoothing of the power management for the grid. The aim of this paper is to show the use of the weather and load forecasting data to achieve the optimum operational power management of the grid contains renewable power systems. An illustrative example of such a power system is presented and verified by simulation.
机译:本文解决了与可再生电力系统的电网电源管理相关的问题,并提出了一种加强其运营电力管理的方法。由于可再生能源提供不确定和无法控制的能源资源,因此可再生能源系统只能产生不规则的功率。这种功率不规则创造了影响电网电源管理过程的问题,并影响栅格上传统发电厂的并行操作。为了证明这种类型的电力管理方法,选择了依赖于这种类型的风力和光伏电力系统。本研究还涉及其他不确定的量,这是系统负载。在此示例中,管理方法基于适应短期天气和负载预测数据。新负载需求曲线(NLDC)可以通过利用来自可再生电力系统产生的电源来制备。 NLDC用于设置BaseLoad电厂的负载,并在需要其他工厂增加或将其供应到网格中的供应时知道。这将降低可再生电力系统的不规则性行为效应,同时将增强电网的电源管理的平滑。本文的目的是展示使用天气和负载预测数据来实现网格的最佳运营电源管理,其中包含可再生电力系统。通过模拟呈现和验证这种电力系统的说明性示例。

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