Pose Estimation of Building Fire-fighting Facilities Using Structural Constraint Measurement System

Chen Zhong, HaoLei Qiu, Yu Chen, Qiang Yang
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Abstract

In the information modeling of fire-fighting facilities for old buildings or cultural relics, it is necessary to manually measure the spatial pose of the fire-fighting facilities. In order to ensure that the measurement process does not cause damage to the building and has good operability, a non-contact measuring device for the relative position of building fire-fighting facilities using the handheld alignment mode of end mechanism is designed. The device is used for building fire-fighting modeling with image acquisition equipment, and its structural design needs to meet specific constraints such as viewing angles, obstacle avoidance, and retracting. Through the magnetic scale, encoder and laser rangefinder, real-time measurement of the distance and angle data of the device is realized. On this basis, the DH method is used to construct the kinematic model of the measuring device, and the kinematic simulation and workspace simulation are carried out. The real-time online display of spatial pose measurement results is realized, which proves the rationality and effectiveness of the design.
基于结构约束测量系统的建筑消防设施位姿估计
在旧建筑或文物消防设施的信息建模中,需要人工测量消防设施的空间位姿。为了保证测量过程不会对建筑物造成损坏,具有良好的可操作性,设计了一种采用手持端机构对中方式的建筑物消防设施相对位置非接触式测量装置。该设备用于带图像采集设备的建筑消防建模,其结构设计需要满足视角、避障、缩回等特定约束。通过磁标、编码器和激光测距仪,实现对装置的距离和角度数据的实时测量。在此基础上,采用DH法构建了测量装置的运动学模型,并进行了运动学仿真和工作空间仿真。实现了空间位姿测量结果的实时在线显示,验证了该设计的合理性和有效性。
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