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A Smarter Grid Enables Communal Microgrids

机译:更智能的网格使通信微电网能够

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As policy makers seek to integrate a serious sociological and environmental issue into energy production, the typical utility is faced with not only technology upgrades, but also dealing with new systemic events that occur far beyond its franchise borders. Adding renewable energy resources into the existing bulk generation power system can be accomplished through a smarter power grid when the integration includes complex, end-to-end control strategies and consumer incentives to participate. Application of renewable resources will provide environmentally clean, and eventually, cost effective energy alternatives to the existing mix of electric generation assets. An even more interesting consideration is that integrating distributed energy resources (DER) will likely become the normal state, as siting transmission becomes more challenging. DER requires addressing facets of both the underlying analog-centric electrical power system and the nascent digital-centric information infrastructure. As smart grid develops, integration and optimization of grid control logic are areas that stand as key enablers to a rapid growth of renewable generation. This paper presents a serious discussion of the impact significant renewable energy generation can wage against the existing power system and how sophisticated smart grid control elements can address its integration into distributed energy systems. Technology addressing these concepts is under development now by General MicroGrids' Microgrid research and development program in San Diego California.
机译:由于政策制定者寻求将严重的社会和环境问题纳入能源生产,因此典型的实用性不仅面临技术升级,而且还面临着截至其特许经营境外的新的系统事件。将可再生能源资源添加到现有的批量发电系统中,可以通过更智能的电网来完成,当集成包括复杂的端到端控制策略和消费者激励措施来参与。可再生资源的应用将为现有的发电资产混合提供环境清洁,最终,具有成本效益的能源替代品。更有趣的考虑是,集成分布式能源(Der)可能会成为正常状态,因为选址传输变得更具挑战性。需要寻址底层模拟电力系统和新生数字信息基础设施的方面。随着智能电网的发展,电网控制逻辑的集成和优化是符合可再生生成快速增长的关键推动者的区域。本文介绍了对现有电力系统的影响,对现有电力系统的影响以及复杂的智能电网控制元件如何将其集成到分布式能源系统中的积累。通过在San Diego California的一般微电网的微电器研究和开发计划中,解决了这些概念的技术正在开发。

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