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Future energy and electric power systems and smart technologies

机译:未来的能源和电力系统以及智能技术

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摘要

In this paper, we describe, first, the present status and the tasks toward the future of energy systems in Japan from the viewpoint of 3E+S. 3E+S means energy security, environmental conservation, economic efficiency, and safety. Second, we describe the future energy society in 2030 and 2050, respectively. We introduce a large picture of the total energy system considering the energy resources, conversion, transportation, storage, consumption, control, and system architecture. For the image of 2030, the Japanese government has already announced the middle-term (2030) energy demand and supply on July 16, 2015. For 2050, we assume three cases regarding the renewable energy installations: the status quo of 2030 covering 22-24% of the total consumption, and 50 and 100% of the total consumption. In the last section, we describe smart technologies to support the envisioned society in 2030 and 2050. We also introduce the reference architecture model. To achieve 80% reduction of greenhouse gas (GHG) emission in 2050, the innovations at the consumer side, such as the large-scale renewable energy resources and storage installations, utilization of electrified vehicles, distributed energy management systems including virtual power plants, and system integration, will become very important in addition to innovations at the supply side. (c) 2017 Institute of Electrical Engineers of Japan. Published by John Wiley & Sons, Inc.
机译:在本文中,我们首先从3e+s的角度描述了日本能源系统未来的现状和任务。 3E+S表示能源安全,环境保护,经济效率和安全性。其次,我们分别描述了2030年和2050年的未来能源社会。考虑到能源资源,转换,运输,存储,消费,控制和系统体系结构,我们介绍了总能源系统的大量图片。对于2030年的图像,日本政府已经在2015年7月16日宣布了中期(2030年)的能源需求和供应。对于2050年,我们假设有关可再生能源设施的三个案件:2030年的现状覆盖22--总消费量的24%,总消费量的50%和100%。在最后一部分中,我们描述了智能技术,以支持2030年和2050年的设想社会。我们还介绍了参考体系结构模型。为了在2050年减少温室气体(GHG)排放80%,消费者的创新(例如大规模的可再生能源资源和存储设施,电动汽车的利用,利用电动汽车,包括虚拟发电厂和包括虚拟发电厂)的分布式能源管理系统,以及系统集成,除了供应方面的创新外,还将变得非常重要。 (c)2017年日本电气工程师研究所。由John Wiley&Sons,Inc。出版

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