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A New Inertial Sensing System for Dynamic Measurement of Parallel Machines
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作者 GUAN Rong-gen REN Hai-liang GU Ling 《International Journal of Plant Engineering and Management》 2009年第2期84-89,共6页
One way to solve the problem of measurement precision caused by deformity for thermal expansion, friction and load etc is to use an inertial sensor to measure a change in the length of the rod on a parallel machine. H... One way to solve the problem of measurement precision caused by deformity for thermal expansion, friction and load etc is to use an inertial sensor to measure a change in the length of the rod on a parallel machine. However, the characteristic of dynamic measurement in the inertial sensing system and the effects of the machine's working environment, bias error, misalignment and wide band random noise in inertial measurement data results in the in-accuracy of system measurement. Therefore, on the basis of the measurement system a new inertial sensing system is proposed; the drifting of error is restrained with a method of inertial error correction and the system's position and the velocity state variables are predicted by the data fusion. After measuring the whole 300mm movement in an experiment, the analyses of the experimental result showed that the application of the new inertial sensing system can improve the positional accuracy about 61% and the movement precision more than 20%. Measurement results also showed that the application of the new inertial sensing system for dynamic measurement was a feasible method to improve the machine's dynamic positioning precision. And with the further improvement of the low-cost solid-stateacceleramenter technology, the application of the machine can take a higher position and make the speed dynamic accuracy possible. 展开更多
关键词 parallel machine dynamic measurement new inertial sensing system error correction
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用于动态测量的一种新的惯性传感系统 被引量:1
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作者 顾玲 张瑞宏 +2 位作者 任海良 陶晔 管荣根 《机械设计与研究》 CSCD 北大核心 2009年第3期83-86,共4页
针对各种动态测量系统和技术的不足,以及机床工作环境对测量过程的影响,提出一种新的惯性传感系统,用于并联机床各杆件(腿)长度、姿态(位姿)变化的精确测量。系统运用数据融合的方法,对测量中出现的惯性误差作出修正,抑制误差的漂移,并... 针对各种动态测量系统和技术的不足,以及机床工作环境对测量过程的影响,提出一种新的惯性传感系统,用于并联机床各杆件(腿)长度、姿态(位姿)变化的精确测量。系统运用数据融合的方法,对测量中出现的惯性误差作出修正,抑制误差的漂移,并预估系统的位置和速度状态变量。通过对300 mm全程运动的实验测量和对实验结果的分析表明,应用新的系统,能改善并联机床和机器人的动态定位,使位置精度和运动精度得到明显的提高。并随着低成本固态加速度计技术的进一步完善,使测量成本降低的同时,新系统能为并联机床和机器人提供更高的位置与速度的动态测量精度。 展开更多
关键词 动态测量 并联机床 机器人 新惯性传感系统
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