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Effectiveness and life-cycle cost-benefit analysis of active cold storages for building demand management for smart grid applications

机译:主动式冷库的有效性和生命周期成本效益分析,用于智能电网应用的建筑需求管理

摘要

A fast power demand response (DR) strategy involving both active and passive cold storages is presented. This control strategy provides an immediate and stepped power demand reduction through shutting chiller(s) down when requested. The results show that the power demand reduction and building indoor temperature during the DR event can be predicted accurately. The power demand reduction is stable which is more predictable for the grid management. The building indoor temperature rise is restrained and indoor thermal comfort is improved through use of a small scale active storage system during the DR event. The incentive bought by an existing DR program is used to calculate the economic benefit of the demand reduction controlled by the developed fast DR strategy. In addition, an electricity price structure in South China is introduced to calculate the cost saving potentials of the active storages, when a storage-priority control is used to shift peak demand in normal days. The results show that small scale active storages can also offer significant life-cycle cost saving for building demand management.
机译:提出了一种涉及主动和被动冷库的快速功率需求响应(DR)策略。通过在需要时关闭冷却器,该控制策略可立即降低功率需求。结果表明,DR事件期间的电力需求减少和建筑物室内温度可以准确预测。功率需求的减少是稳定的,这对于电网管理而言是更可预测的。通过在DR事件期间使用小型主动存储系统,可以限制建筑物的室内温度升高并改善室内热舒适性。现有灾难恢复计划购买的激励措施用于计算由已开发的快速灾难恢复策略控制的需求减少带来的经济利益。此外,当使用存储优先级控制来平移高峰时段的高峰需求时,引入了华南地区的电价结构,以计算活动存储的成本节省潜力。结果表明,小型活动存储还可为建筑物需求管理节省大量生命周期成本。

著录项

  • 作者

    Cui B; Gao DC; Wang S; Xue X;

  • 作者单位
  • 年度 2015
  • 总页数
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类

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