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一种变电站电气设备温度在线监测新方法 被引量:33
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作者 赵振兵 高强 +2 位作者 苑津莎 邱巍巍 仝卫国 《高电压技术》 EI CAS CSCD 北大核心 2008年第8期1605-1609,共5页
为了实现对电气设备的远程、实时、在线的可见光图像和红外温度监测,设计并开发了具有红外检测与图像监控功能的系统。针对变电站电气设备在线监测的特点,从红外理论出发,构建了系统测温模型,分析了影响测温的一些因素及大气衰减的影响... 为了实现对电气设备的远程、实时、在线的可见光图像和红外温度监测,设计并开发了具有红外检测与图像监控功能的系统。针对变电站电气设备在线监测的特点,从红外理论出发,构建了系统测温模型,分析了影响测温的一些因素及大气衰减的影响;完成了大气透射率的仿真计算并提出了温度修正算法以提高测温精度。开发了具有RS-485串口和激光瞄准方式的改进型红外测温仪,并将其红外测温功能与图像监控软件有效结合。该系统可以在图像监控画面上选择特定的电气设备对其进行远程红外测温,并将返回的温度值加以存储和分析。系统具有较高的经济效益和工程实际应用价值。 展开更多
关键词 红外 图像监控 在线监 测温模型 度修正 电气设备
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基于黑白CCD传感器的近红外热像在线监测方法 被引量:12
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作者 赵振兵 高强 +1 位作者 李然 俞晓雯 《电力系统自动化》 EI CSCD 北大核心 2005年第8期83-86,共4页
设计了以黑白电荷耦合器件(CCD)传感器为核心器件的在线监测系统,该系统可通过探测 近红外辐射从而对变电站中一些电力设备进行监测;构建了测温模型,并分析了影响测温的一些因 素,计算了温度场分布;最后对发热设备进行了监测实验,采集... 设计了以黑白电荷耦合器件(CCD)传感器为核心器件的在线监测系统,该系统可通过探测 近红外辐射从而对变电站中一些电力设备进行监测;构建了测温模型,并分析了影响测温的一些因 素,计算了温度场分布;最后对发热设备进行了监测实验,采集了热图像并用小波算法进行了去噪 处理;实验结果表明了用该方法能探测到的最低温度为152℃。 展开更多
关键词 黑白CCD传感器 电力设备 在线监 红外辐射 测温模型 热图像处理 小波去噪
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高校机械类实验室安全预警与监测智能巡检机器人设计 被引量:4
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作者 赵地 郭宇泰 +1 位作者 杜玉红 谢志明 《实验技术与管理》 CAS 北大核心 2023年第10期242-247,共6页
该文针对高校机械类实验室安全风险,设计了智能巡检机器人。首先改进Cartographer算法实现巡检机器人自主建图与导航;然后改进PANet分割算法,实现基于热力图对目标进行分割;最后将长短期记忆网络(LSTM)算法与选择性搜索算法融合识别人... 该文针对高校机械类实验室安全风险,设计了智能巡检机器人。首先改进Cartographer算法实现巡检机器人自主建图与导航;然后改进PANet分割算法,实现基于热力图对目标进行分割;最后将长短期记忆网络(LSTM)算法与选择性搜索算法融合识别人体动作,实现实验行为识别与监测。通过横向对比巡检机器人检测、人工定期检测和人工随机检测三种情况下识别各类安全隐患的次数与准确度,证明智能巡检机器人具有较大优势。 展开更多
关键词 实验室安全 巡检机器人 SLAM 测温模型
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Temperature gradients in concrete box girder bridge under effect of cold wave 被引量:3
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作者 顾斌 陈志坚 陈欣迪 《Journal of Central South University》 SCIE EI CAS 2014年第3期1227-1241,共15页
The temperature distributions of a prestressed concrete box girder bridge under the effect of cold wave processes were analyzed. The distributions were found different from those under the effect of solar radiation or... The temperature distributions of a prestressed concrete box girder bridge under the effect of cold wave processes were analyzed. The distributions were found different from those under the effect of solar radiation or nighttime radiation cooling and should not be simplified as one dimensional. A temperature predicting model that can accurately predict temperatures over the cross section of the concrete box girder was developed. On the basis of the analytical model, a two-dimensional temperature gradient model was proposed and a parametric study that considered meteorological factors was performed. The results of sensitivity analysis show that the cold wave with shorter duration and more severe temperature drop may cause more unfavorable influences on the concrete box girder bridge. Finally, the unrestrained linear curvatures, self-equilibrating stresses and bending stresses when considering the frame action of the cross section, were derived from the proposed temperature gradient model and current code provisions, respectively. Then, a comparison was made between the value calculated against proposed model and several current specifications. The results show that the cold wave may cause more unfavorable effect on the concrete box girder bridge, especially on the large concrete box girder bridge. Therefore, it is necessary to consider the thermal effect caused by cold wave during the design stage. 展开更多
关键词 concrete box girder temperature field temperature gradient cold wave
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Health monitoring and comparative analysis of time-dependent effect using different prediction models for self-anchored suspension bridge with extra-wide concrete girder 被引量:1
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作者 ZHOU Guang-pan LI Ai-qun +1 位作者 LI Jian-hui DUAN Mao-jun 《Journal of Central South University》 SCIE EI CAS CSCD 2018年第9期2025-2039,共15页
The structural health status of Hunan Road Bridge during its two-year service period from April 2015 to April 2017 was studied based on monitored data.The Hunan Road Bridge is the widest concrete self-anchored suspens... The structural health status of Hunan Road Bridge during its two-year service period from April 2015 to April 2017 was studied based on monitored data.The Hunan Road Bridge is the widest concrete self-anchored suspension bridge in China at present.Its structural changes and safety were evaluated using the health monitoring data,which included deformations,detailed stresses,and vibration characteristics.The influences of the single and dual effects comprising the ambient temperature changes and concrete shrinkage and creep(S&C)were analyzed based on the measured data.The ANSYS beam finite element model was established and validated by the measured bridge completion state.The comparative analyses of the prediction results of long-term concrete S&C effects were conducted using CEB-FIP 90 and B3 prediction models.The age-adjusted effective modulus method was adopted to simulate the aging behavior of concrete.Prestress relaxation was considered in the stepwise calculation.The results show that the transverse deviations of the towers are noteworthy.The spatial effect of the extra-wide girder is significant,as the compressive stress variations at the girder were uneven along the transverse direction.General increase and decrease in the girder compressive stresses were caused by seasonal ambient warming and cooling,respectively.The temperature gradient effects in the main girder were significant.Comparisons with the measured data showed that more accurate prediction results were obtained with the B3 prediction model,which can consider the concrete material parameters,than with the CEB-FIP 90 model.Significant deflection of the midspan girder in the middle region will be caused by the deviations of the cable anchoring positions at the girder ends and tower tops toward the midspan due to concrete S&C.The increase in the compressive stresses at the top plate and decrease in the stresses at the bottom plate at the middle midspan will be significant.The pre-deviations of the towers toward the sidespan and pre-lift of the midspan girder can reduce the adverse influences of concrete S&C on the structural health of the self-anchored suspension bridge with extra-wide concrete girder. 展开更多
关键词 self-anchored suspension bridge extra-wide concrete girder health monitoring concrete shrinkage and creep prediction model ambient temperature change safety evaluation
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