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Optimal management of multiple heat sources in a residential area by an energy management system

机译:通过能源管理系统对住宅区的多种热源进行优化管理

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摘要

An energy management system (EMS) that achieves optimal operation by combining heat sources with different characteristics and using energy interchanges between residential dwellings was developed. Commercial fuel cell combined heat and power (FC-CHP) systems and CO2heat pump water heaters (CO2HP) with high generation efficiencies have penetrated the Japanese residential market. In this real environment, the types or models of the installed heat sources vary between residential dwellings, and their energy demand is unknown. The EMS predicts energy generation and consumption and develops an optimum operational strategy that it uses to control energy equipment. It also continually revises the strategy and adjusts equipment controls to reflect actual conditions. The EMS is evaluated using a case study of a group of four residential dwellings with two different heat sources. Subsequent quantitative analysis shows that the EMS reduced energy costs by 10%. A sensitivity analysis also confirmed that it operates optimally even when energy prices are changed.
机译:开发了一种能源管理系统(EMS),该系统通过组合具有不同特征的热源并利用住宅之间的能量交换来实现最佳运行。具有高发电效率的商用燃料电池热电联产(FC-CHP)系统和二氧化碳热泵热水器(CO2HP)已渗透到日本住宅市场。在这种实际环境中,安装的热源的类型或模型在住宅之间会有所不同,并且其能源需求未知。 EMS预测能源的产生和消耗,并制定用于控制能源设备的最佳运行策略。它还会不断修改策略并调整设备控制以反映实际情况。使用一组四个带有两种不同热源的住宅的案例研究来评估EMS。随后的定量分析表明,EMS将能源成本降低了10%。敏感性分析还证实,即使改变了能源价格,它也能以最佳状态运行。

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  • 来源
    《Energy》 |2018年第15期|1048-1060|共13页
  • 作者单位

    University of Tsukuba, Tsukuba,National Institute of Advanced Industrial Science and Technology (AIST);

    Osaka Prefecture University;

    Osaka Prefecture University;

    Osaka Prefecture University;

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  • 原文格式 PDF
  • 正文语种 eng
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