...
首页> 外文期刊>Applied Energy >Online voltage security assessment considering comfort-constrained demand response control of distributed heat pump systems
【24h】

Online voltage security assessment considering comfort-constrained demand response control of distributed heat pump systems

机译:考虑舒适度受限的分布式热泵系统需求响应控制的在线电压安全评估

获取原文
获取原文并翻译 | 示例
   

获取外文期刊封面封底 >>

       

摘要

A resilient strategy for optimal demand response control based on the management of highly-distributed electric loads is presented to meet transmission-level control aimed at maintaining voltage stability. The proposed load control scheme balances device- and grid-level objectives simultaneously, and is demonstrated for a system comprising a distributed responsive population of 14,000 residential-sized buildings integrated in a transmission system network consisting of six buses. Air-source heat pumps are implemented as the primary heating source in the responsive building population, and are introduced as a dis-patchable grid-side energy resource, where aggregated output can be objectively ramped up or down through the use of an optimal centralized control strategy. A two step multi-objective optimization procedure is implemented to simultaneously satisfy balancing of the power system and customer objectives across a multi-scalar system. At the power system-level, the optimal preventive control scheme is obtained based on steady-state voltage stability constraints. At the customer-level, an optimal demand response strategy is proposed, wherein the aggregate power demand from a population of heat pumps is controlled to follow load-shedding requirements. The customer comfort is continuously maintained by constrained regulation of the thermal set-point governing operation of the heat pump device. The proposed demand-side strategy achieves similar goals to conventional approaches to regulation and spinning reserve ancillary services, but with the significant benefit of higher efficiencies. Under the proposed scheme, ancillary services provided by the electric loads effectively become virtual generators that enhance the voltage stability in power systems operating under increased uncertainty, and replace severe or multiple contingency reserves typically supplied by conventional generators. The proposed demand response control scheme can be extended to other potentially responsive end-use appliances, and opens avenues for increased exploitation of intermittent renewable energy resources while reducing operating costs and emissions.
机译:提出了一种基于高分布电力负荷管理的最优需求响应控制弹性策略,以满足旨在维持电压稳定性的传输级控制。拟议的负载控制方案可同时平衡设备和电网级别的目标,并针对包含分布式响应人口的14,000座住宅大小建筑物的系统进行了演示,该建筑物集成在由六辆公交车组成的传输系统网络中。空气源热泵被用作响应性建筑群中的主要供热源,并被引入为可调度的电网侧能源,可通过使用最佳的集中控制来客观地提高或降低总输出战略。实施了两步多目标优化过程,以同时满足多标量系统中电力系统和客户目标之间的平衡。在电力系统级别,基于稳态电压稳定性约束条件获得了最佳的预防控制方案。在客户级别上,提出了一种最佳的需求响应策略,其中控制了来自热泵群的总功率需求,以遵循减负荷要求。通过对调节热泵设备的热设定点进行控制,可以持续保持客户的舒适度。拟议的需求方战略实现了与常规方法相似的目标,即调节和旋转备用辅助服务,但是具有更高效率的显着优势。在提议的方案下,由电力负载提供的辅助服务有效地变成了虚拟发电机,这些虚拟发电机增强了在不确定性增加的情况下运行的电力系统中的电压稳定性,并取代了通常由常规发电机提供的严重或多重应急储备。拟议的需求响应控制方案可以扩展到其他潜在响应的最终用途设备,并为增加间歇性可再生能源的利用开辟道路,同时降低运营成本和排放。

著录项

  • 来源
    《Applied Energy》 |2012年第2012期|p.104-114|共11页
  • 作者单位

    Institute for Integrated Energy Systems, and Dept. of Mechanical Engineering, University of Victoria, PO Box 3055 STN CSC, Victoria, BC, Canada V8W 3P6;

    Institute for Integrated Energy Systems, and Dept. of Mechanical Engineering, University of Victoria, PO Box 3055 STN CSC, Victoria, BC, Canada V8W 3P6;

    School of Electrical Engineering & Automation, Tianjin University, 300072, Tianjin, China;

    School of Electrical Engineering & Automation, Tianjin University, 300072, Tianjin, China;

    Institute for Integrated Energy Systems, and Dept. of Mechanical Engineering, University of Victoria, PO Box 3055 STN CSC, Victoria, BC, Canada V8W 3P6;

    Institute for Integrated Energy Systems, and Dept. of Mechanical Engineering, University of Victoria, PO Box 3055 STN CSC, Victoria, BC, Canada V8W 3P6;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    power systems analysis; distributed energy resources; voltage stability; demand-side management; electric load modeling; renewable energy integration;

    机译:电力系统分析;能源分布电压稳定性需求方管理;电力负荷建模;可再生能源整合;

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号