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舰船电站网络控制系统可信性分析设计技术 被引量:2
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作者 张峰 吴立金 《计算机测量与控制》 2023年第2期129-134,共6页
舰船电站网络控制系统由分层、局部向扁平、全局方向发展,信息安全问题可能直接导致功能安全失效,迫切需要开展相应的可信性分析设计;针对舰船电站网络控制系统面临的功能安全、信息安全等可信问题,通过从舰船电站网络控制系统中的系统... 舰船电站网络控制系统由分层、局部向扁平、全局方向发展,信息安全问题可能直接导致功能安全失效,迫切需要开展相应的可信性分析设计;针对舰船电站网络控制系统面临的功能安全、信息安全等可信问题,通过从舰船电站网络控制系统中的系统、数据、网络3方面分析了可信性风险与设计需求,提出了相应的舰船电站网络控制系统可信性分析技术、数据可信性设计技术和网络可信性设计技术,保障舰船电站网络控制系统的可信性,为舰船电站网络控制系统研制过程中开展可信性分析设计提供了技术支撑。 展开更多
关键词 网络控制系统 可信性设计 控制系统可信 网络可信 数据可信
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The Reliability Design of a Kind of Multioption Fuze
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作者 邓甲昊 施聚生 《Journal of Beijing Institute of Technology》 EI CAS 1996年第2期170+162-170,共10页
On the basis of analysing the reliability problems existing in the general design of a kind of multioption fuze. some problems such as the reliability model. the reliability distribution of the electronic part of the ... On the basis of analysing the reliability problems existing in the general design of a kind of multioption fuze. some problems such as the reliability model. the reliability distribution of the electronic part of the fuze are discussed. For a particular multioption fuze, then.according to three different setting ways. the calculating methods of its operating reliability in six different operating states are given. 展开更多
关键词 multioption fuze reliability design reliability calculation reliability modelling proximity fuze
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Interoperable Process: Efficient Systems in New Constructive and Product Performances
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作者 Consiglia Mocerino 《Journal of Civil Engineering and Architecture》 2017年第5期477-493,共17页
In the construction sector, which is one of the major goals of the new economy, the company is aiming at a new constructive practice and upgrading of the built, using ICT (information and communications technology) ... In the construction sector, which is one of the major goals of the new economy, the company is aiming at a new constructive practice and upgrading of the built, using ICT (information and communications technology) technologies. So the focus is on new operating and organizational models of sustainable building processes in the architecture, engineering and construction sectors, which are based on three-dimensional models of digital technology BIM (building information modeling). It is intended as a human activity that improves building workflows and, through software and IFACs (industry foundation classes), manages flexibility, coordinates and optimizes operational choices on time, economic, and environmental sustainability parameters. The goal is a new interoperable building process that involves designers, contractors and businesses from programming to lifecycle building and maintenance through the integrated project delivery of the building. Dynamic architectures, interactive with efficient technological and constructive systems, are integrated with innovative products of complex nature and bi-directional performance, engineered, with energy storage and renewable resources. The methodologies are based, above all, on the adoption of BIM technologies with the digital project manager and the use of robotic technological tools. Digitization is applied for the design and construction of architectural and infrastructure artifacts, in interaction with intelligent, adaptive, nanotechnical and user-friendly materials and climate. The results are aimed at efficient buildings with user comfort and safety, accuracy, and risk monitoring with remote monitoring, highlighting VDC (visual design construction) in CID (computational intelligent design). 展开更多
关键词 CONSTRUCTION technology digital system PROCESS INTEROPERABILITY CONCRETE adaptive design sustainability.
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