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The role of hydroelectric generation in electric power systems with large scale wind generation

机译:水力发电在大规模风力发电系统中的作用

摘要

An increasing awareness of the operational challenges created by intermittent generation of electricity from policy-mandated renewable resources, such as wind and solar, has led to increased scrutiny of the public policies that promote their growth and the regulatory system that maintains operation of a reliable and economically efficient power system. Anecdotal evidence has suggested that hydroelectric generation can provide significant benefits in power systems that have already significantly increased their power generation from intermittent renewable resources. A heuristic-based algorithm for optimizing the scheduling of hydroelectric power generation facilities was developed and integrated into the Low-Emissions Electricity Market Analysis (LEEMA) model to analyze the interaction of generation capacity from wind, thermal, and hydro resources in the economic dispatch of individual generation plants. The algorithm identifies the most costly periods of thermal production, considering fuel, startup and operation and maintenance costs, to determine the optimal schedule of hydro generation within its capacity constraints. The hydrothermal LEEMA model is run on the current Spanish electric power system to identify the impact of introducing hydro generation to a system, varying levels of flexibility in hydro generation, and increasing levels of wind generation. The analysis concludes that hydro generation can significantly reduce the impact of intermittent renewable generation, that the level of flexibility of hydro generation must be understood to determine how beneficial the hydro generation can be, and that hydro generation will delay the most significant impacts of increasing levels of wind generation.
机译:人们对由政策规定的可再生资源(例如风能和太阳能)间歇性发电所产生的运营挑战的认识日益提高,这导致对促进其增长的公共政策以及维持可靠和可再生能源的监管体系的审查日益严格。经济高效的电力系统。轶事证据表明,水力发电可以为已经通过间歇性可再生资源大大增加其发电量的电力系统提供重大利益。开发了一种基于启发式的优化水力发电设施调度的算法,并将其集成到低排放电力市场分析(LEEMA)模型中,以分析风能,热力和水力发电量在经济调度中的相互作用。单代植物。该算法根据燃料,启动,运行和维护成本,确定最昂贵的热力生产时期,以确定在其容量限制内的最佳水力发电计划。 LEEMA水热模型在当前的西班牙电力系统上运行,以识别将水力发电引入系统,改变水力发电的灵活性水平以及增加风力发电水平的影响。分析得出的结论是,水力发电可以显着降低间歇性可再生能源发电的影响,必须了解水力发电的灵活性水平,以确定水力发电的益处,并且水力发电将延迟水位上升带来的最重大影响发电。

著录项

  • 作者

    Hagerty John Michael;

  • 作者单位
  • 年度 2012
  • 总页数
  • 原文格式 PDF
  • 正文语种 eng
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