CPS: Synergy: Collaborative Research: SMARTER - Smart Manager for Adaptive and Real-Time Decisions in Building ClustERs
CPS:协同:协作研究:SMARTER - 构建集群中自适应和实时决策的智能管理器
基本信息
- 批准号:1239247
- 负责人:
- 金额:$ 40万
- 依托单位:
- 依托单位国家:美国
- 项目类别:Standard Grant
- 财政年份:2012
- 资助国家:美国
- 起止时间:2012-10-01 至 2016-09-30
- 项目状态:已结题
- 来源:
- 关键词:
项目摘要
1239257 (Wu). Traditionally, buildings have been viewed as mere energy consumers; however, with the new power grid infrastructure and distributed energy resources, buildings can not only consume energy, but they can also output energy. As a result, this project removes traditional boundaries between buildings in the same cluster or between the cluster and power grids, transforming individual smart buildings into NetZero building clusters enabled by cyber-support tools. In this research, a synergistic decision framework is established for temporally, spatially distributed building clusters to work as an adaptive and robust system within a smart grid. The framework includes innovative algorithms and tools for building energy modeling, intelligent data fusion, decentralized decisions and adaptive decisions to address theoretical and practical challenges in next-generation building systems. The research develops cyber-physical engineering tools for demand side load management which has been identified as a major challenge by energy industries. It fundamentally transforms the current centralized and uni-directional power distribution business model to a decentralized and multi-directional power sharing and distribution business model, reducing overall energy consumption and allowing for optimal decisions in changing operation environments. Education and outreach efforts include developing novel educational modules disseminated at the K-12 levels and through the ASEE eGFI repository. Further educational impact occurs through integration with multiple undergraduate and graduate courses at each institution, and with community service groups. Impact is also expanded to the broader energy industry and the operation of healthcare delivery and urban transportation systems through our industry collaborations. http://swag.engineering.asu.edu/ 1239247 (Wen). Traditionally, buildings have been viewed as mere energy consumers; however, with the new power grid infrastructure and distributed energy resources, buildings can not only consume energy, but they can also output energy. As a result, this project removes traditional boundaries between buildings in the same cluster or between the cluster and power grids, transforming individual smart buildings into NetZero building clusters enabled by cyber-support tools. In this research, a synergistic decision framework is established for temporally, spatially distributed building clusters to work as an adaptive and robust system within a smart grid. The framework includes innovative algorithms and tools for building energy modeling, intelligent data fusion, decentralized decisions and adaptive decisions to address theoretical and practical challenges in next-generation building systems. The research develops cyber-physical engineering tools for demand side load management which has been identified as a major challenge by energy industries. It fundamentally transforms the current centralized and uni-directional power distribution business model to a decentralized and multi-directional power sharing and distribution business model, reducing overall energy consumption and allowing for optimal decisions in changing operation environments. Education and outreach efforts include developing novel educational modules disseminated at the K-12 levels and through the ASEE eGFI repository. Further educational impact occurs through integration with multiple undergraduate and graduate courses at each institution, and with community service groups. Impact is also expanded to the broader energy industry and the operation of healthcare delivery and urban transportation systems through our industry collaborations. http://swag.engineering.asu.edu/ 1239093 (Lewis). Traditionally, buildings have been viewed as mere energy consumers; however, with the new power grid infrastructure and distributed energy resources, buildings can not only consume energy, but they can also output energy. As a result, this project removes traditional boundaries between buildings in the same cluster or between the cluster and power grids, transforming individual smart buildings into NetZero building clusters enabled by cyber-support tools. In this research, a synergistic decision framework is established for temporally, spatially distributed building clusters to work as an adaptive and robust system within a smart grid. The framework includes innovative algorithms and tools for building energy modeling, intelligent data fusion, decentralized decisions and adaptive decisions to address theoretical and practical challenges in next-generation building systems. The research develops cyber-physical engineering tools for demand side load management which has been identified as a major challenge by energy industries. It fundamentally transforms the current centralized and uni-directional power distribution business model to a decentralized and multi-directional power sharing and distribution business model, reducing overall energy consumption and allowing for optimal decisions in changing operation environments. Education and outreach efforts include developing novel educational modules disseminated at the K-12 levels and through the ASEE eGFI repository. Further educational impact occurs through integration with multiple undergraduate and graduate courses at each institution, and with community service groups. Impact is also expanded to the broader energy industry and the operation of healthcare delivery and urban transportation systems through our industry collaborations.
1239257(吴)。传统上,建筑被视为纯粹的能源消费者;然而,随着新的电网基础设施和分布式能源的出现,建筑不仅可以消耗能源,还可以输出能量。因此,该项目消除了同一集群中的建筑之间或集群与电网之间的传统边界,将单个智能建筑转变为通过网络支持工具实现的NetZero建筑集群。在这项研究中,建立了一个协同决策框架,使时间和空间上分布的建筑群在智能电网中作为一个自适应和健壮的系统发挥作用。该框架包括用于建筑能量建模、智能数据融合、分散决策和自适应决策的创新算法和工具,以应对下一代建筑系统的理论和实践挑战。这项研究开发了用于需求侧负荷管理的网络物理工程工具,这已被能源行业确定为主要挑战。它从根本上将当前的集中式单向配电业务模式转变为分散式、多方向的电力共享和配电业务模式,降低了整体能耗,并允许在不断变化的运营环境中做出最优决策。教育和外联工作包括开发在K-12级和通过ASEE eGFI储存库传播的新的教育单元。通过与每个机构的多个本科生和研究生课程以及与社区服务团体的整合,产生了进一步的教育影响。通过我们的行业合作,Impact还扩展到更广泛的能源行业以及医疗保健服务和城市交通系统的运营。Http://swag.engineering.asu.edu/1239247(文)。传统上,建筑被视为纯粹的能源消费者;然而,随着新的电网基础设施和分布式能源的出现,建筑不仅可以消耗能源,还可以输出能量。因此,该项目消除了同一集群中的建筑之间或集群与电网之间的传统边界,将单个智能建筑转变为通过网络支持工具实现的NetZero建筑集群。在这项研究中,建立了一个协同决策框架,使时间和空间上分布的建筑群在智能电网中作为一个自适应和健壮的系统发挥作用。该框架包括用于建筑能量建模、智能数据融合、分散决策和自适应决策的创新算法和工具,以应对下一代建筑系统的理论和实践挑战。这项研究开发了用于需求侧负荷管理的网络物理工程工具,这已被能源行业确定为主要挑战。它从根本上将当前的集中式单向配电业务模式转变为分散式、多方向的电力共享和配电业务模式,降低了整体能耗,并允许在不断变化的运营环境中做出最优决策。教育和外联工作包括开发在K-12级和通过ASEE eGFI储存库传播的新的教育单元。通过与每个机构的多个本科生和研究生课程以及与社区服务团体的整合,产生了进一步的教育影响。通过我们的行业合作,Impact还扩展到更广泛的能源行业以及医疗保健服务和城市交通系统的运营。Http://swag.engineering.asu.edu/1239093(刘易斯)。传统上,建筑被视为纯粹的能源消费者;然而,随着新的电网基础设施和分布式能源的出现,建筑不仅可以消耗能源,还可以输出能量。因此,该项目消除了同一集群中的建筑之间或集群与电网之间的传统边界,将单个智能建筑转变为通过网络支持工具实现的NetZero建筑集群。在这项研究中,建立了一个协同决策框架,使时间和空间上分布的建筑群在智能电网中作为一个自适应和健壮的系统发挥作用。该框架包括用于建筑能量建模、智能数据融合、分散决策和自适应决策的创新算法和工具,以应对下一代建筑系统的理论和实践挑战。这项研究开发了用于需求侧负荷管理的网络物理工程工具,这已被能源行业确定为主要挑战。它从根本上将当前的集中式单向配电业务模式转变为分散式、多方向的电力共享和配电业务模式,降低了整体能耗,并允许在不断变化的运营环境中做出最优决策。教育和外联工作包括开发在K-12级和通过ASEE eGFI储存库传播的新的教育单元。通过与每个机构的多个本科生和研究生课程以及与社区服务团体的整合,产生了进一步的教育影响。通过我们的行业合作,Impact还扩展到更广泛的能源行业以及医疗保健服务和城市交通系统的运营。
项目成果
期刊论文数量(0)
专著数量(0)
科研奖励数量(0)
会议论文数量(0)
专利数量(0)
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Jin Wen其他文献
The 50/10 Oxygen-Induced Retinopathy Model Serves as a Hyperoxia and Hypoxia Model of Bronchopulmonary Dysplasia
50/10 氧诱导视网膜病变模型作为支气管肺发育不良的高氧和缺氧模型
- DOI:
10.1016/j.amjms.2018.01.015 - 发表时间:
2018 - 期刊:
- 影响因子:3.1
- 作者:
Li Huijuan;Zhu Ruyuan;Qian Lijuan;Jin Wen;Xie Jiali;Kang Shumin;Lu Lijun;Tao Mingyu;Jiang Li - 通讯作者:
Jiang Li
Detail gain characteristics of dual-pump photonic crystal fiber optical parametrical amplifiers
双泵浦光子晶体光纤参量放大器的详细增益特性
- DOI:
10.1016/j.ijleo.2017.06.119 - 发表时间:
2017-09 - 期刊:
- 影响因子:3.1
- 作者:
Jin Wen - 通讯作者:
Jin Wen
Research and analysis on the broadband dispersion tailoring of the sub-micro silicon-on-insulator waveguides
亚微米绝缘体硅波导宽带色散裁剪研究与分析
- DOI:
10.1142/s0217984917500567 - 发表时间:
2017-02 - 期刊:
- 影响因子:1.9
- 作者:
Jin Wen;Wang Liu;Keyang Liu;Haiwei Fu;Zhenan Jia - 通讯作者:
Zhenan Jia
Doppler Radar Occupancy Sensing and Monitoring for Smart Buildings
智能建筑的多普勒雷达占用感应和监控
- DOI:
- 发表时间:
2023 - 期刊:
- 影响因子:0
- 作者:
O. Boric;V. Lubecke;Wannasa Setthapittayakul;Jin Wen;Simi Hoque;Sara Girotto - 通讯作者:
Sara Girotto
Synthesis and neuroprotection of 5α-androst-3β,5,6β-triol derivatives
5α-androst-3β,5,6β-三醇衍生物的合成及神经保护作用
- DOI:
10.14800/ttnd.831 - 发表时间:
2015 - 期刊:
- 影响因子:0
- 作者:
Xinhua Li;Xinying Chen;Jiesi Chen;Shujia Zhou;Jin Wen;Yijun Huang;Guangmei Yan;Jingxia Zhang - 通讯作者:
Jingxia Zhang
Jin Wen的其他文献
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{{ truncateString('Jin Wen', 18)}}的其他基金
Collaborative Research: AccelNet: An International Network of Networks for Well-being in the Built Environment (IN2WIBE)
合作研究:AccelNet:建筑环境福祉国际网络 (IN2WIBE)
- 批准号:
1931238 - 财政年份:2019
- 资助金额:
$ 40万 - 项目类别:
Standard Grant
International Workshop on Connecting Woman Faculty in Sustainable Building Research (WISB) Location: Dalian, China Date: July 2018
可持续建筑研究中女性教师联系国际研讨会 (WISB) 地点:中国大连 日期:2018 年 7 月
- 批准号:
1814621 - 财政年份:2018
- 资助金额:
$ 40万 - 项目类别:
Standard Grant
SGER: A Smart Indoor Air Quality Sensor Network
SGER:智能室内空气质量传感器网络
- 批准号:
0549959 - 财政年份:2005
- 资助金额:
$ 40万 - 项目类别:
Standard Grant
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