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厂拌沥青混合料质量实时监控系统的研发及功能实现 总被引:1,自引:0,他引:1
分析厂拌沥青混合料生产过程,基于软件工程技术和网络通信技术,通过编制软件、开发数据库、架构网络平台,成功研发出厂拌沥青混合料质量实时监控系统,并对其功能组成及实现途径、体系架构、数据库构建及管理、数据处理技术和应用情况等进行详细介绍。应用测试表明:该系统能够真正实现对拌和楼生产数据的实时采集、处理、分析及远程传输等功能,能够对沥青混合料的拌制过程和关键指标进行有效的全程动态监控,对提高混合料生产效率和质量控制水平具有重要意义。 相似文献
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高速公路远程监控系统的智慧化是智慧高速公路发展方向之一,其中高速公路路堑高边坡变形的实时远程监控也是智慧高速发展的一部分。利用多角度监控技术,将监控信息实时传达至监控中心,构建对高速公路潜在危险的路堑高边坡区域降雨、地下水位、坡表变形、坡体内部水平位移进行全方位实时自动化监测系统,实时分析路堑高边坡变形趋势及其稳定性。进而实现了高速公路的潜在危险路堑边坡管理养护的信息化、实时化、智能化,实时保证高速公路的安全、通畅运营,同时该远程监测系统还可及时预报预警边坡地质灾害的发生。 相似文献
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《Vehicle System Dynamics: International Journal of Vehicle Mechanics and Mobility》2012,50(12):1924-1946
This paper describes an impact detection system using strain signals based on fibre optic sensors(FBG) for the real-time monitoring of the catenary system. The proposed detection system consists of three subsystems: a measuring system, a data processing and analysis system, and a status display and data access system. Because the strain signals obey the normal distribution, to monitor the catenary system in real time, a novel method that combines mobile standard deviation with the mobile Pauta criterion is proposed to distinguish real impact from the strain signal background. The use of this adaptive judging method reduces the misjudgment rate of impacts and improves the impact recognition accuracy. These impacts can be identified by the data analysis system, which provides impact location and their causes using the features of the catenary system. This method can simplify the detection system compared with the traditional location method. An application to a commercial metro line system indicated that the impacts on the catenary system were main caused by overlaps, expansion joints or steady arms, and were verified by correspondence with the floor plan of the catenary and manual inspection results. These results verified the reliability and effectiveness of the proposed impact detection system. 相似文献
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根据车辆自动引导系统在车辆工程中的应用及发展趋势,开展了用计算机视觉技术进行车辆有线引导的基础研究,描述了系统的基本组成及其主要功能,分析了影响视觉输入的各项基本因素。根据哈夫(Hough)变换的基本原理,设计了引导路线检测的算法,通过典型引导路线特征图象的试验分析,验证了算法对直线特征的检测性能、对复杂背景下直线检测的可靠性和对实际道路中的中心引导线检测的有效性。分析了控制模型中实用视觉系统检测 相似文献
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In the conventional 2D-FFT based target detection method, all range-Doppler cells are computed by FFT (Fast Fourier Transform) and scanned by CA-CFAR (Cell-Averaging Constant False Alarm Rate) detection. This results in high computational complexity and long processing time. In this paper, we developed an automotive 24 GHz BSD (Blind Spot Detection) FMCW (Frequency Modulated Continuous Wave) radar with a low complexity target detection architecture based on a ROI (Region Of Interest) pre-processing scheme. In the real BSD zone, because the number of cars to be detected is limited, the designed method only extracts their velocities corresponding to the range ROIs in which real targets exist. Moreover, the presence probability of vehicles with the same range-bin but different velocities is very low. Thus, in the designed method, some Doppler ROIs cells with a high magnitude are only applied for CA-CFAR detection. This architecture can dramatically reduce the amount of data to be processed compared to that of the conventional 2D FFT based method, resulting in enhanced processing time. We developed a 24 GHz FMCW radar system composed a transceiver, antennas, and signal processing module. The designed algorithm was implemented in a tiny micro-processor of the signal processing module. By implementing our proposed algorithm in the developed 24 GHz FMCW radar system in an anechoic chamber and a real road, we verified that the range and velocity of a car occupying the BSD zone were detected. Compared to that of the conventional method, the reduction ratio of the total processing time was measured to be 52.4 %. 相似文献
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运用3S技术和计算机控制系统,实时获取农用小区作物生长实际需求的信息,同时结合试验田的土壤和作物的水分数据,通过信息处理与分析,按需给作物进行施水的技术。应用GPS定位功能,在控制平台上还能精确的显示出每个灌溉设备的工作状态,是否做好了作业的准备。同时,利用传感器技术把灌溉设备的工作数据实时的传送到数据平台,为工作人员的维修提供数据支持。 相似文献
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为实现复合式TBM(全断面硬岩掘进机)和盾构刮刀磨损的实时监测,研发一种新型刮刀磨损实时监测系统。系统由磨损感知模块、数据读取及发送模块、无线接收网关、上位机软件4个部分组成。其中磨损感知模块由14个等阻值耐高温碳膜电阻并联组成,为该系统的核心。系统通过贴合于试验刀具表面的磨损感知模块实时感知刮刀的磨损量,并由数据读取及发送模块将信号发出,经无线网关接收数据后传送至上位机软件。根据理论推导提出刮刀磨损量监测计算公式,并进行室内验证试验,试验结果表明: 刮刀磨损感知模块在磨损过程中信号稳定且不失真,磨损量误差控制在1 mm以内,室内环境下无线传输距离达30 m。监测系统能实现刮刀磨损的实时监测,具有较高的精度,对复合式TBM和盾构刮刀磨损实时监测工程难题的解决起到了推动作用。 相似文献