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开放性技术为智能建筑带来了什么
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作者 丁艳 《智能建筑与城市信息》 2004年第7期15-19,共5页
关键词 智能建筑 开放性技术 建筑自动化 智能楼宇系统
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将开放性技术进行到底(Ⅳ)
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《智能建筑与城市信息》 2004年第7期10-14,共5页
关键词 智能建筑 开放性技术 系统集成 楼宇自动化
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将开放性技术进行到底(Ⅲ)
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《智能建筑与城市信息》 2004年第6期4-4,6,8,共3页
关键词 楼宇管理系统 开放性技术 建筑物 弱电子系统 智能建筑
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开放性技术7大看点
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《智能建筑与城市信息》 2004年第7期20-29,共10页
关键词 建筑自动化系统 开放性技术 智能建筑 楼宇自动化
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采用开放性系统可降低系统的寿命周期成本——访霍尼韦尔(天津)有限公司智能控制系统部顾问杨守权
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《智能建筑与城市信息》 2004年第4期5-8,共4页
目前,建筑智能化系统的开放性已经成为业主和用户最基本的要求。无论是从控制成本、降低费用出发,还是着眼于提升功能、提高效率,其实都面临着各种智能化系统真正意义上的集成。开放性技术恰恰适应了这种需求,不仅仅改变了人们对建筑自... 目前,建筑智能化系统的开放性已经成为业主和用户最基本的要求。无论是从控制成本、降低费用出发,还是着眼于提升功能、提高效率,其实都面临着各种智能化系统真正意义上的集成。开放性技术恰恰适应了这种需求,不仅仅改变了人们对建筑自动化的认识,还可以为保障用户选择最好的产品和服务提供可能。由于具备统一的技术规范,并且能够使不同厂家之间的产品能够互相替换、互相操作,开放性技术将更加具有竞争力。 展开更多
关键词 智能建筑 建筑设计 开放性系统 建筑物 开放性技术 建筑自动化
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Review of Ultraviolet Non-Line-of-Sight Communication 被引量:26
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作者 Renzhi Yuan Jianshe Ma 《China Communications》 SCIE CSCD 2016年第6期63-75,共13页
With rapid advances of solar blind ultraviolet LED and ultraviolet detecting technology in recent years, ultraviolet communication gradually becomes a research hotspot due to its inherent advantages: low solar backgro... With rapid advances of solar blind ultraviolet LED and ultraviolet detecting technology in recent years, ultraviolet communication gradually becomes a research hotspot due to its inherent advantages: low solar background noise, non-line-of-sight(NLOS) and good secrecy. The strong scattering characteristics in atmospheric render ultraviolet waveband the ideal choice for achieving NLOS optical communication. This paper reviews the research history and status of ultraviolet communication both in China and abroad, and especially introduces three main issues of ultraviolet communication: channel model, system analysis and design, light sources and detectors. For each aspect, current open issues and prospective research directions are analyzed. 展开更多
关键词 ULTRAVIOLET COMMUNICATION NON-LINE-OF-SIGHT scattering model
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Technology and application of pressure relief and permeability increase by jointly drilling and slotting coal 被引量:8
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作者 Lin Baiquan Zhang Jianguo +2 位作者 Shen Chunming Zhang Qizhi Sun Chen 《International Journal of Mining Science and Technology》 2012年第4期545-551,共7页
Difficulties with soft coal seams having a high gas content and high stress levels can be addressed by a technology of pressure relief and permeability increase.Slotting the seam by auxiliary drilling with a water jet... Difficulties with soft coal seams having a high gas content and high stress levels can be addressed by a technology of pressure relief and permeability increase.Slotting the seam by auxiliary drilling with a water jet that breaks the coal and slots the coal seam during the process of retreat drilling achieves pressure relief and permeability increase.Improved efficiency of gas extraction from a field test,high gas coal seam was observed.Investigating the theory of pressure relief and permeability increase required analyzing the characteristics of the double power slotting process and the effects of coal pressure relief and permeability increase.The influence of confining pressure on coal physical properties was examined by using FLAC3D software code to simulate changes of coal stress within the tool destruction area.The double power joint drilling method was modeled.Field experiments were performed and the effects are analyzed.This research shows that there is an ''islanding effect'' in front of the joint double power drill and slotting equipment.The failure strength of the coal seam is substantially reduced within the tool destruction area.Drilling depths are increased by 72% and the diameter of the borehole is increased by 30%.The amount of powdered coal extracted from the drill head increases by 17 times when using the new method.A 30 day total flow measurement from the double power drilled and slotted bores showed that gas extraction increased by 1.3 times compared to the standard drilled bores.Gas concentrations increased from 30% to 60% and were more stable so the overall extraction efficiency increased by a factor of two times. 展开更多
关键词 Collaborative drillingDouble powerSlottingPressure relief and permeability increase
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