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Design of an energy-efficient standalone distributed generation system employing renewable energy sources and smart grid technology as a student design project

机译:设计可再生能源和智能电网技术的节能独立分布式发电系统作为学生设计项目

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This paper describes an undergraduate or graduate level student project that involves the design of an energy-efficient standalone distributed generation system integrating existing fossil fuel based energy sources with renewable energy sources and smart grid technologies for offgrid communities. One such application is the development of stand-alone electric power sources for Native American villages in rural Alaska. This student project addresses many facets of engineering design and development including system component design, system integration including smart grid technology, environmental impacts, and economic and cultural concerns. The design requires consideration of all possible energy sources and energy conversion alternatives in the development of a standalone distributed generation system, and depends on the power requirements and location, as well as environmental, economic, and cultural concerns. System efficiency is determined, including the possibility of utilizing waste thermal energy. Available energy sources may include wind, solar, small head or river hydro, thermoelectric generators, micro-turbine technology, and thermoelectric systems, battery and other energy storage devices combined with the existing diesel/electric or gasoline/electric generators. Environmental impacts include calculations of emissions and avoided costs of integrating renewable energy sources into the system. Economic considerations include the life cycle cost and estimated unit cost of electricity generated.
机译:本文介绍了本科或研究生级学生项目,涉及设计节能独立分布发电系统,其与用于聚集社区的可再生能源和智能电网技术集成了现有的化石燃料的能源。一种这样的应用是阿拉斯加农村美国原住民村庄独立电力源的发展。该学生项目解决了工程设计和开发的许多方面,包括系统组件设计,系统集成,包括智能电网技术,环境影响以及经济和文化关注。该设计需要考虑所有可能的能源和能源转换替代方案,在开发独立分布式发电系统,并取决于电力需求和位置,以及环境,经济和文化问题。确定系统效率,包括利用废热能的可能性。可用的能源可包括风,太阳能,小型头或河流,热电发电机,微型涡轮技术,热电系统,电池等能量存储装置与现有的柴油/电动或汽油/发电机相结合。环境影响包括计算排放量,避免将可再生能源集成到系统中的成本。经济考虑包括生命周期成本和估计的电力成本。

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