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首页> 外文期刊>Energy Policy >SimWIND: A geospatial infrastructure model for optimizing wind power generation and transmission
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SimWIND: A geospatial infrastructure model for optimizing wind power generation and transmission

机译:SimWIND:用于优化风力发电和输电的地理空间基础设施模型

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Wind is a clean, enduring energy resource with the capacity to satisfy 20% or more of U.S. electricity demand. Presently, wind potential is limited by a paucity of electrical transmission lines and/or capacity between promising wind resources and primary load centers. We present the model SimWIND to address this shortfall. SimWIND is an integrated optimization model for the geospatial arrangement and cost minimization of wind-power generation-transmission-delivery infrastructure. Given a set of possible wind-farm sites, the model simultaneously determines (1) where and how much power to generate and (2) where to build new transmission infrastructure and with what capacity in order to minimize the cost for delivering a targeted amount of power to load. Costs and routing of transmission lines consider geographic and social constraints as well as electricity losses. We apply our model to the Electric Reliability Council of Texas (ERCOT) Interconnection, considering scenarios that deliver up to 20 GW of new wind power. We show that SimWIND could potentially reduce ERCOT's projected ~$5B transmission network upgrade line length and associated costs by 50%. These results suggest that SimWIND's coupled generation-transmission-delivery modeling approach could play a critical role in enhancing planning efforts and reducing costs for wind energy integration.
机译:风能是一种清洁,持久的能源,能够满足美国电力需求的20%或更多。当前,风力潜力受到电力传输线和/或有希望的风力资源与主要负荷中心之间的容量不足的限制。我们提出了SimWIND模型来解决这一不足。 SimWIND是一个集成的优化模型,用于地理空间布局和风能发电-输电-交付基础设施的成本最小化。给定一组可能的风力发电场,该模型同时确定(1)在何处产生多少电力以及(2)在何处建立新的输电基础设施以及以什么容量发电,以最大程度地减少交付目标数量的发电成本。加载功率。传输线的成本和布线考虑了地理和社会限制以及电力损耗。我们将模型应用到德克萨斯州电力可靠性委员会(ERCOT)互连中,考虑了可提供高达20吉瓦的新风能的方案。我们表明,SimWIND可以潜在地将ERCOT预计的〜$ 5B传输网络升级线路长度和相关成本降低50%。这些结果表明,SimWIND的发电-输电-输送耦合建模方法在增强规划工作和降低风能集成成本方面可以发挥关键作用。

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