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I-Corps: Fast Timescale Residential Demand Response

I-Corps: Fast Timescale Residential Demand Response
I-Corps:快速住宅需求响应
批准号:
2020964
负责人:
Johanna Mathieu
金额:
$5.0万
依托单位国家:
美国
项目类别:
Standard Grant
财政年份:
2020
资助国家:
美国
项目状态:
已结题
起止时间:
2020-06-15 至 2023-11-30

项目摘要

项目成果

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中文摘要
翻译
这个i-Corps项目的更广泛的影响/商业潜力是软件技术的开发,使住宅电力负荷能够为电力系统提供快速服务。这些服务提高了电力可靠性,还可能帮助电网并入更多可再生能源,减少发电和输电对环境的影响。近期的应用包括快速的时间尺度负荷削减,公用事业公司根据公用事业公司在特定时期总需求中的份额来支付输电成本。较长期的应用包括推迟配电网络的容量升级、批发市场的频率调节资源、减少可再生能源削减、提供斜坡能力等。使用电力负荷提供这些服务可能比建设/使用其他资源(如传统的发电、输电或配电设备或储能)更具成本效益。该i-Corps项目旨在探索控制算法的翻译,以实现基于家用压缩机的电力负载(例如空调)的快速循环。快速时标上的快速循环允许这些负载的集合通过其总功率消耗的变化来为电力系统提供服务,但目前这是困难的,因为快速开/关循环可能会损坏设备。现有公司只是避免为需要这种切换信号速度的服务控制这些设备。所提出的新型控制算法避免了损坏设备,同时实现了对这些快速时间尺度(例如,每秒)的控制。此外,评估和推理策略可以实现控制,而不需要无处不在的高分辨率传感和通信网络,从而降低控制成本。该奖项反映了NSF的法定使命,并通过使用基金会的智力优势和更广泛的影响审查标准进行评估,被认为值得支持。
英文摘要
The broader impact/commercial potential of this I-Corps project is the development of software technology enabling residential electric loads to provide fast services to the power systems. These services improve electricity reliability and also may help the grid incorporate more renewable energy, reducing the environmental impact of electricity generation and delivery. Near-term applications include fast timescale load reductions utilities paying for transmission costs based on a utility’s portion of the total demand during specific periods. Longer-term applications include capacity upgrade deferments in electricity distribution networks, frequency regulation resources in wholesale markets, reduction of renewable energy curtailment, providing ramping capability, and so on. Using electric loads to provide these services may be more cost-effective than building/using other resources such as traditional generation, transmission, or distribution equipment, or energy storage. This I-Corps project is to explore translation of control algorithms that enable rapid cycling of residential compressor-based electric loads (e.g., air conditioners). Rapid cycling on fast timescales allows aggregations of these loads to provide services to power systems through changes in their total power consumption, but currently this is difficult as rapid on/off cycling can damage the equipment. Existing companies simply avoid controlling these devices for services that require this speed of switching signals. The proposed novel control algorithms avoid damaging the equipment while enabling control on these fast timescales (e.g., every second). In addition, estimation and inference strategies can enable control without the need for pervasive high-resolution sensing and communication networks, reducing the cost of control.This award reflects NSF's statutory mission and has been deemed worthy of support through evaluation using the Foundation's intellectual merit and broader impacts review criteria.
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会议论文
Collaborative Research: Planning for Uncertainty in Coupled Water-Power Distribution Networks
SCC-IRG Track 1: Reducing Barriers to Residential Energy Security through an Integrated Case-management, Data-driven, Community-based approach
CAREER: Stochastic capacity scheduling and control of distributed energy storage enabling stacked services
Inferring the behavior of distributed energy resources from incomplete measurements
国内基金
海外基金
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  • 项目类别:
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