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CPS:Small:Collaborative Research:Localization and System Services for SpatioTemporal Actions in Cyber-Physical Systems

CPS:Small:Collaborative Research:Localization and System Services for SpatioTemporal Actions in Cyber-Physical Systems
CPS:小:协作研究:网络物理系统中时空动作的定位和系统服务
批准号:
0932360
负责人:
Rajesh Gupta
金额:
$25.0万
依托单位国家:
美国
项目类别:
Standard Grant
财政年份:
2009
资助国家:
美国
项目状态:
已结题
起止时间:
2009-09-15 至 2012-08-31

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中文摘要
翻译
小型:协作研究:网络物理系统时空行动的定位和系统服务本研究的目标是开发模型、方法和工具,以不违反底层物理或计算逻辑的方式捕获和处理网络物理系统(CPS)中的事件和行动。该项目方法使用网络物理对象(CPO)的新概念,利用地理定位和互联网基础设施的最新进展,捕捉网络物理系统中计算的移动性和本地化,并支持时空资源发现的新方法。项目创新包括计算CPS物理和逻辑部分中感兴趣的事件之间时空关系的模型,以及在新的网络空间参考模型中的使用。使用该模型,该项目构建了一个框架,用于定位网络物理应用程序服务和这些服务的操作环境。该项目计划包括一个实验平台,以演示为CPS应用构建新的操作系统服务的能力,包括从多式联运系统中提取的协同控制应用。该项目将能够设计和分析社会规模的应用,如交通和电网,其中也包括治理结构。它将通过提供课程培训,从嵌入式系统的学位课程到研讨会和技术转移机会,直接为培养工程人才库做出贡献,这些培训由加州大学圣地亚哥分校的CalIT2研究所和俄勒冈州立大学的传感系统研究所(ISS)协调。该团队将与非营利机构密尔沃基研究所合作,探索企业治理系统的政策和机制。
英文摘要
CPS: Small: Collaborative Research: Localization and System Services for SpatioTemporal Actions in Cyber-Physical SystemsThe objective of this research is to develop models, methods and tools for capturing and processing of events and actions in cyber-physical systems (CPS) in a manner that does not violate the underlying physics or computational logic. The project approach uses a novel notion of cyber-physical objects (CPO) to capture the mobility and localization of computation in cyber-physical systems using recent advances in geolocation and the Internet infrastructure and supports novel methods for spatiotemporal resource discovery.Project innovations include a model for computing spatiotemporal relationships among events of interests in the physical and logical parts of a CPS, and its use in a novel cyberspatial reference model. Using this model the project builds a framework for locating cyber-physical application services and an operating environment for these services. The project plan includes an experimental platform to demonstrate capabilities for building new OS services for CPS applications including collaborative control applications drawn from the intermodal transportation system. The project will enable design and analysis of societal scale applications such as the transportation and electrical power grid that also include a governance structure. It will directly contribute to educating an engineering talent pool by offering curricular training that range from degree programs in embedded systems to seminars and technology transfer opportunities coordinated through the CalIT2 institute at UCSD and the Institute for Sensing Systems (ISS) at OSU. The team will collaborate with the non-profit Milwaukee Institute to explore policies and mechanisms for enterprise governance systems.
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