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Web-based economic and environmental optimization of microgrids

机译:基于Web的微电网的经济环境优化

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Even as distributed generation and distributed energy resources (DER) become a more appealing option to meeting building electricity, heat, and cooling demands, the process of selecting the appropriate equipment mix remains as a complex and time-consuming obstacle. This is the motivation behind Lawrence Berkeley National Laboratory's (LBNL) development of WebOpt, a flexible web-based software as service (SaaS) approach for optimizing the selection and operation of DER equipment, and running the Distributed Energy Resources Customer Adoption Model (DER-CAM), the optimization platform that supports it. DER-CAM solves energy systems for microgrids [1], [2] (e.g. combined heat and power (CHP) or electric storage) holistically, taking into account service levels for multiple building end-uses, including heating, cooling and electricity. Given an individual microgrid's hourly energy requirements, available technologies and the economic environment as defined by tariff structure, DER-CAM finds the economically or environmentally optimal combination of equipment to install and an optimal schedule to operate it [3], [4].
机译:即使作为分布式发电和分布式能源资源(DER)成为满足建筑电力,热量和冷却需求的更具吸引力的选择,即使是满足建筑电力,热量和冷却需求的选择,选择合适的设备混合的过程仍然是一种复杂和耗时的障碍。这是劳伦斯伯克利国家实验室(LBNL)开发的动机Webopt,这是一种灵活的基于Web的软件作为服务(SaaS)方法,用于优化DER设备的选择和操作,并运行分布式能源客户采用模型(der- CAM),支持它的优化平台。 Der-CaM解决了微电网的能量系统[1],[2](例如,热量和功率(CHP)或电存储器),考虑到多个建筑物最终用途的服务水平,包括加热,冷却和电力。鉴于单独的微电网的每小时能源需求,可用技术和经济结构定义的经济环境,DER-CAM在经济上或环境上最佳的安装组合和运行时的最佳时间表[3],[4]。

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