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一维热电传感器列阵
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《红外技术》 CSCD 1993年第2期10-10,共1页
关键词 热电传感器列阵 矩形热电板 一维带状热敏元栅栏 红外温度
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基于光纤列阵薄膜传感的客流计数系统研究 被引量:3
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作者 王喆君 陈抱雪 +2 位作者 隋国荣 陈林 矶守 《光子学报》 EI CAS CSCD 北大核心 2009年第9期2305-2309,共5页
为实现客流计数自动化,开发了一种基于新型高分子薄膜型光纤列阵感压的客流计数系统.感压原理建立在光散射强度与高分子材料密度变动的对应关系上,系统以脚底压力分布"质心"的时空变化为信息特征,该时空变化特征反映了乘客上... 为实现客流计数自动化,开发了一种基于新型高分子薄膜型光纤列阵感压的客流计数系统.感压原理建立在光散射强度与高分子材料密度变动的对应关系上,系统以脚底压力分布"质心"的时空变化为信息特征,该时空变化特征反映了乘客上下车时维持动态平衡的一般规律.由此设计了多种行为模式的客流跟踪、辨向和计数方法.统计实验结果表明,该客流计数系统可实现实时测试,准确率达95%以上. 展开更多
关键词 光纤传感 光纤传感器 光散射 客流辨向 客流计数
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基于压电阻抗技术的混凝土剪力墙裂缝损伤监测 被引量:3
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作者 孙威 阎石 +1 位作者 张莺 吴金国 《混凝土》 CAS CSCD 北大核心 2011年第7期125-128,共4页
简要阐述了基于压电阻抗法的结构损伤监测技术基本原理,指出了该项技术的优点。结合压电阻抗法及混凝土结构的特点,提出了针对混凝土裂缝损伤监测的传感器布置策略。最后,利用有限元软件对基于压电阻抗技术的混凝土裂缝损伤监测技术进... 简要阐述了基于压电阻抗法的结构损伤监测技术基本原理,指出了该项技术的优点。结合压电阻抗法及混凝土结构的特点,提出了针对混凝土裂缝损伤监测的传感器布置策略。最后,利用有限元软件对基于压电阻抗技术的混凝土裂缝损伤监测技术进行数值模拟研究。在研究中,建立了黏贴有压电陶瓷传感器列阵的混凝土剪力墙模型,模拟了墙体由健康状态逐渐向失效状态发展的4个阶段。研究结果显示,传感器列阵能够很好地对混凝土剪力墙损伤及其发展情况进行监测。对损伤的定量分析和定位分析结果也与实际情况相吻合。 展开更多
关键词 压电陶瓷 传感器列阵 阻抗法 混凝土剪力墙 裂缝损伤监测
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基于LabVIEW的管道泄漏监测与定位系统 被引量:13
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作者 秦程 任亮 +2 位作者 王嘉健 贾子光 姜涛 《电子测量技术》 北大核心 2021年第13期23-30,共8页
为了及时对管道泄漏进行处理和定位,解决管道泄漏监测系统误报漏报率高、定位不精准的问题。提出了改进的负压波与流量平衡法联合的泄漏监测与定位方法,采用LabVIEW和MATLAB联合编程的方式,开发了实时的管道泄漏监测与定位系统。首先,... 为了及时对管道泄漏进行处理和定位,解决管道泄漏监测系统误报漏报率高、定位不精准的问题。提出了改进的负压波与流量平衡法联合的泄漏监测与定位方法,采用LabVIEW和MATLAB联合编程的方式,开发了实时的管道泄漏监测与定位系统。首先,该系统控制NI公司解调仪SM130以及电磁流量计,实现了同步采集光纤光栅传感器和电磁流量计信号,实时监测管道压力与流量状态参数。当传感器监测到负压波信号且上下游流量差超过阈值,进行及时的泄漏预警。最后调用MATLAB编写的定位方法进行定位,以及与MySQL数据库连接,进行数据管理。试验证明,针对泄漏预警的功能,本系统能够准确识别真实泄漏,保持良好的监测可靠性;针对泄漏定位的试验,提出基于传感器列阵的多组次定位取平均值的方式,并在重复试验中验证了定位的精度和稳定性。该系统交互性能良好,符合未来管道自动化管理发展的进程,具有重要的工程实用价值。 展开更多
关键词 管道泄漏 定位 负压波 传感器列阵 LABVIEW
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An improved multidirectional velocity model for micro-seismic monitoring in rock engineering 被引量:3
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作者 李健 吴顺川 +2 位作者 高永涛 李莉洁 周喻 《Journal of Central South University》 SCIE EI CAS CSCD 2015年第6期2348-2358,共11页
An improved multidirectional velocity model was proposed for more accurately locating micro-seismic events in rock engineering. It was assumed that the stress wave propagation velocities from a micro-seismic source to... An improved multidirectional velocity model was proposed for more accurately locating micro-seismic events in rock engineering. It was assumed that the stress wave propagation velocities from a micro-seismic source to three nearest monitoring sensors in a sensor's array arrangement were the same. Since the defined objective function does not require pre-measurement of the stress wave propagation velocity in the field, errors from the velocity measurement can be avoided in comparison to three traditional velocity models. By analyzing 24 different cases, the proposed multidirectional velocity model iterated by the Simplex method is found to be the best option no matter the source is within the region of the sensor's array or not. The proposed model and the adopted iterative algorithm are verified by field data and it is concluded that it can significantly reduce the error of the estimated source location. 展开更多
关键词 multidirectional velocity model micro-seismic event Simplex method rock engineering field measurement error estimation
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Sensor array calibration for uniform rectangular array in presence of mutual coupling and sensor gain-and-phase errors
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作者 王鼎 姚晖 吴瑛 《Journal of Central South University》 SCIE EI CAS 2014年第6期2228-2239,共12页
The sensor array calibration methods tailored to uniform rectangular array(URA)in the presence of mutual coupling and sensor gain-and-phase errors were addressed.First,the mutual coupling model of the URA was studied,... The sensor array calibration methods tailored to uniform rectangular array(URA)in the presence of mutual coupling and sensor gain-and-phase errors were addressed.First,the mutual coupling model of the URA was studied,and then a set of steering vectors corresponding to distinct locations were numerically computed with the help of several time-disjoint auxiliary sources with known directions.Then,the optimization modeling with respect to the array error matrix(defined by the product of mutual coupling matrix and sensor gain-and-phase errors matrix)was constructed.Two preferable algorithms(called algorithm I and algorithm II)were developed to minimize the cost function.In algorithm I,the array error matrix was regarded as a whole parameter to be estimated,and the exact solution was available.Compared to some existing algorithms with the similar computation framework,algorithm I can make full use of the potentially linear characteristics of URA's error matrix,thus,the calibration precision was obviously enhanced.In algorithm II,the array error matrix was decomposed into two matrix parameters to be optimized.Compared to algorithm I,it can further decrease the number of unknowns and,thereby,yield better estimation accuracy.However,algorithm II was incapable of producing the closed-form solution and the iteration operation was unavoidable.Simulation results validate the excellent performances of the two novel algorithms compared to some existing calibration algorithms. 展开更多
关键词 array calibration uniform rectangular array (URA) mutual coupling sensor gain-and-phase errors closed-form solution Newton-type iteration
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