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变电站继电保护硬压板识别及预警策略的研究
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作者 周俊宏 王永超 宋赞 《消费电子》 2025年第7期103-105,共3页
继电保护是电力系统安全稳定运行的关键,硬压板正确投退对继电保护装置精准动作至关重要。传统人工核对压板状态方法工作量大、准确性难保障,在变电站继电保护装置增多的情况下,人工巡视局限性凸显。为此,本文提出基于三轴加速度传感的... 继电保护是电力系统安全稳定运行的关键,硬压板正确投退对继电保护装置精准动作至关重要。传统人工核对压板状态方法工作量大、准确性难保障,在变电站继电保护装置增多的情况下,人工巡视局限性凸显。为此,本文提出基于三轴加速度传感的压板状态识别方法,通过实验设计并实现相关识别装置,可高精度测量压板角度并判断投退状态。还提出继电保护压板误投引发电网风险的划分方法,实现六级预警。最后,设计开发压板状态智能识别系统,实现自动采集、上传及智能识别,替代人工检查。 展开更多
关键词 变电站 继电保护 硬压板识别 三轴加速度 风险预警
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转动硬压板两接线柱锁母手动模式和电动模式的快速投退装置的CAD设计及研制
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作者 黄凤萍 《通信电源技术》 2021年第11期40-44,共5页
采用CAD软件设计并研制了一种转动硬压板两接线柱锁母手动模式和电动模式的快速投退装置。根据硬压板两接线柱锁母的大小和形状的差异将其分为小号八角锁母、大号八角锁母以及大号六角锁母3种类型。根据手动模式和电动模式不同操作模式... 采用CAD软件设计并研制了一种转动硬压板两接线柱锁母手动模式和电动模式的快速投退装置。根据硬压板两接线柱锁母的大小和形状的差异将其分为小号八角锁母、大号八角锁母以及大号六角锁母3种类型。根据手动模式和电动模式不同操作模式的差异以及硬压板两接线柱锁母大小和形状的差异构思出快速投退装置的6个不同设计方案。从6个不同设计方案中选择合适大小和形状锁母的快速投退装置。通过手动旋转带动板头套筒转动,利用梅花状螺纹拧紧硬压板两接线柱小号八角锁母、大号八角锁母或大号六角锁母中任意一种。快速投退装置的手动操作部件两端对称设计且可轮换使用,均可达到拧紧硬压板两接线柱小号八角锁母、大号八角锁母或大号六角锁母中任意一种类型锁母的目的。在电动操作模式下,可通过操作电动扳手带动电动操作的不锈钢电批转动操作部件旋转,从而达到拧紧硬压板两接线柱小号八角锁母、大号八角锁母或大号六角锁母中任意一种类型锁母的目的。电动模式相比于手动模式更加省力快捷,可实现硬压板投退电动化。 展开更多
关键词 硬压板 头套筒 梅花状螺纹 不锈钢电批转动操作部件 凹凸槽环形连接件 内八角套筒
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集成差分电容式MEMS微型电场传感器设计与研制
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作者 黄国平 陈锦荣 +1 位作者 王跃强 廖峰 《电子器件》 CAS 2024年第1期79-83,共5页
在继电保护实际运行中,屏柜内部一些隐性故障将造成压板投退失效,严重威胁着电网的安全可靠运行。为了能够可靠、有效地监测出口压板的带电状态或电气导通性,设计了一种SOI差分电容式MEMS电场传感器。所设计的传感器以微机械元件物理设... 在继电保护实际运行中,屏柜内部一些隐性故障将造成压板投退失效,严重威胁着电网的安全可靠运行。为了能够可靠、有效地监测出口压板的带电状态或电气导通性,设计了一种SOI差分电容式MEMS电场传感器。所设计的传感器以微机械元件物理设计为基础,构造出可靠的运行结构,并且依靠一个低噪声、高动态范围的接口IC来完成操作。所设计的接口集成电路在应对脉冲式的间歇性操作的同时,组织互补设备阵列以感应各种不同的测量信号。通过COMSOL Multiphysics仿真实验可以看出,所设计的传感器能够很好地满足压板状态监测的需求。 展开更多
关键词 继电保护 电场传感器 MEMS 硬压板
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Analytical solutions of hard roof's bending moment,deflection and energy under the front abutment pressure before periodic weighting 被引量:9
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作者 Jiang Haijun Cao Shenggen +1 位作者 Zhang Yun Wang Chen 《International Journal of Mining Science and Technology》 SCIE EI CSCD 2016年第1期175-181,共7页
The distribution of front abutment pressure is closely related to the force,deformation and energy distribution of hard roof before periodic weighting. So it is necessary to carry out research on the relationship betw... The distribution of front abutment pressure is closely related to the force,deformation and energy distribution of hard roof before periodic weighting. So it is necessary to carry out research on the relationship between them. According to front abutment pressure distribution feature,using the location of peak front abutment pressure as the dividing point,coal seam is divided into two parts along the direction of mining: the yield zone that is the area between the faceline and the point where the maximum front abutment pressure occurs,and the elastic zone that is the part before the point of peak front abutment pressure. The proposed mechanical model of unit width hard roof at the panel center before periodic weighting consists of five parts including the yield zone. All parameters of the deflection equations for each of the five parts that satisfy the continuity conditions and natural boundary conditions are obtained by using the Matlab software. The continuous curves of front abutment pressure,deflection,bending moment and bending strain energy density distribution of hard roof are obtained by iterative approximation method,and the relationship between the yield zone width and the above curves are analyzed in detailed. 展开更多
关键词 Periodic weightingFront abutment pressureYield zoneBending momentDeflectionBending strain energy
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Directional hydraulic fracturing to control hard-roof rockburst in coal mines 被引量:32
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作者 Fan Jun Dou Linming +4 位作者 He Hu Du Taotao Zhang Shibin Gui Bing Sun Xinglin 《International Journal of Mining Science and Technology》 2012年第2期177-181,共5页
Hard roof is the main factor that induces rock-burst.In view of the present obvious weakness of control measures for hard roof rockburst in domestic collieries,the mechanism and field application of directional hydrau... Hard roof is the main factor that induces rock-burst.In view of the present obvious weakness of control measures for hard roof rockburst in domestic collieries,the mechanism and field application of directional hydraulic fracturing technology for rock-burst prevention have been investigated in this paper using theoretical analysis and numerical simulation.The results show that the weighting span of the main roof and the released kinetic energy as well as the total elastic energy decreased greatly after the directional fracturing of hard roof with the mining progression,thereby reducing the rockburst hazard degree to coal body.The directional hydraulic fracturing technology was carried out in 6305 working face of Jisan Coal Mine to prevent rockburst.Field practices have proved that this technology is much simpler and safer to operate with better prevention effect compared with blasting.By optimizing the operation procedures and developing a new technology of automated high-pressure delivery pipe,the maximum fracturing radius now reaches more than 9 m and the borehole depth exceeds 20 m.Additionally,drilling cutting method was applied to monitor the stress of the coal mass before and after the fracturing,and the drill cuttings dropped significantly which indicates that the burst prevention effect of directional hydraulic fracturing technology is very remarkable.The research results of this paper have laid a theoretical and practical foundation for the widespread application of the directional hydraulic fracturing technology in China. 展开更多
关键词 Hard roofRockburstDirectional hydraulic fracturingSimulation
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