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浅析五层电梯的 PLC 运动控制与设计 被引量:1
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作者 王子槊 《中国科技财富》 2010年第22期283-283,共1页
通过应用 FX02 可编程控制器完成一个具体生产过程的检测或电气,设备控制等设计实例,掌握 PLC 在实际应用中怎样绘制电气控制原理图,接线图和互连图等工艺设计方法。
关键词 电梯 PLC 控制设计
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计及新型柔性限流器的直流系统故障暂态特性分析研究
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作者 郑峰 王威东 +3 位作者 林燕贞 孙玉波 涂承谦 梁宁 《太阳能学报》 EI CAS CSCD 北大核心 2024年第10期199-210,共12页
为解决传统柔性限流装置在直流电网中存在经济性、实用性不足的问题,提出一种新型直流柔性限流装置,采用模块化限流电感结构,并提出模块化限流电感投入方案,基于该结构提出与其相适应的控制设计方案。该结构提升柔性限流装置的经济性,... 为解决传统柔性限流装置在直流电网中存在经济性、实用性不足的问题,提出一种新型直流柔性限流装置,采用模块化限流电感结构,并提出模块化限流电感投入方案,基于该结构提出与其相适应的控制设计方案。该结构提升柔性限流装置的经济性,增强限流装置的容错率,并快速、有效抑制故障电流,实现直流线路永久性故障快速隔离,瞬时性故障无断路器动作行为的自行恢复。为进一步验证所提新型柔性限流装置的有效性,在软件平台搭建多端柔性直流仿真系统,并进行直流线路永久性与瞬时性故障仿真分析。 展开更多
关键词 限流器 电力系统保护 直流电网 经济性 控制层设计 暂态分析
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Coal pillar mechanics of violent failure in U.S. Mines 被引量:8
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作者 Maleki Hamid 《International Journal of Mining Science and Technology》 SCIE EI CSCD 2017年第3期387-392,共6页
This paper seeks to enhance the understanding that the horizontal stresses build up and release during coal pillar loading and unloading(post-failure) drawing upon three decades of observations, geomechanical monitori... This paper seeks to enhance the understanding that the horizontal stresses build up and release during coal pillar loading and unloading(post-failure) drawing upon three decades of observations, geomechanical monitoring and numerical modeling in bump-prone U.S. mines. The focus is on induced horizontal stress in mine pillars and surrounding strata as highly stressed pillars punch into the roof and floor, causing shear failure and buckling of strata; under stiff stratigraphic units of some western US mines, these events could be accompanied by violent failure of pillar cores. Pillar punching eventually results in tensile stresses at the base of the pillar, facilitating transition into the post-failure regime; this transition will be nonviolent if certain conditions are met, notably the presence of interbedded mudstones with low shear strength properties and proper mine designs for controlling seismicity and dynamic loads. The study clearly shows high confining stress build-up in coal pillars resulting in up to twice higher peak vertical stress and high strain energy accumulations in some western US mines in comparison with peak stresses predicted using common empirical pillar design methods. It is the unstable release of this strain energy that can cause significant damage resulting from pillar dilation and ground movements. These forces are much greater than the capacity of most common internal support systems, resulting in horizontal stressinduced roof falls locally, in mines under unremarkable far-field horizontal stress. Attention should be placed on pillar designs as increasing support density may prove to be ineffective. This mechanism is analyzed using field measurements and generic finite-difference stress analyses. The study confirms the higher load carrying capacity of confinement-controlled coal seams in comparison with structurally controlled coal seams. Such significant differences in confining stresses are not taken into account when estimating peak pillar strength using most common empirical techniques such as those proposed by Bieniawski and Salamon. While using lower pillar strength estimates may be considered conservative,it underestimates the actual capacity of pillars in accumulating much higher stress and strain energies,misleading the designer and inadvertently diminishing mine safety. The role of induced horizontal stress in mine pillars and surrounding strata is emphasized in coal pillar mechanics of violent failure. The triggering mechanism for the violent events is sudden loss of pillar confinement due to dynamic loading resulting from failure of overlying stiff and strong strata. Evidence of such mechanism is noted in the field by observed red-dust at the coal-rock interfaces at the location of coal bumps and irregular, periodic caving in room-and-pillar mines quantified through direct pressure measurements in the gob. 展开更多
关键词 Rockburst and coal bumps Field measurements Stress analysis Mechanics Horizontal stress
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Optimal Rate Allocation Based on Cross-Layer Design and End-to-End Congestion Control in WCDMA Networks
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作者 LI Yuzhou SHI Yan +2 位作者 SHENG Min LIU Guoqing XU Chao 《China Communications》 SCIE CSCD 2015年第4期58-68,共11页
In this paper, a novel idea for rate allocation combining both vertical coupling and horizontal coupling constraints is proposed, and a unified utility function to balance two paradoxical issues: efficiency and fairne... In this paper, a novel idea for rate allocation combining both vertical coupling and horizontal coupling constraints is proposed, and a unified utility function to balance two paradoxical issues: efficiency and fairness, revenue and cost is elaborated in WCDMA networks. Then, the optimal rate allocation problem is formulated as a network utility maximization(NUM) model based on cross-layer design and end-to-end congestion control, aiming at exploring the impacts of wired networks and the characteristics of radio access networks(RANs) on rate allocation. Furthermore, a distributed algorithm is derived, which can effectively match load states between RANs and wired networks, followed by a detailed illustration of the practical implementations. Numerical results demonstrate a signifi cant performance improvement in the end-to-end throughput. 展开更多
关键词 cross-layer design efficiency andfairness revenue and cost network utilitymaximization rate allocation
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