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Effect of Turntable Structure on Electromechanical Characteristics of Laser Tracker System

机译:转盘结构对激光跟踪系统机电特性的影响

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Laser tracker is composed of a mechanical structure and a servo control system. And the characteristics of them all affect the error and stability of the laser tracker measurement system. The cut-off frequency and the response speed are important index to characterize the system performance. Among them, the cut-off frequency is the characterization of the size of the system bandwidth, and response speed is an indicator of system sensitivity. The cut-off frequency is higher, and the response speed is faster. The tracking performance of the tracker is better. Usually, when analyze the cut-off frequency of a system, various components of the control system will be the mathematical modeling, but only the mechanical structure of the inertia as a parameter into the model. It can cause errors in system analysis. In this paper, establish a mechanical and electrical model of the mechanical structure and the control structure to realize the information of the laser tracker system. Analyze the effects of rotating inertia, friction torque and structural rigidity on the characteristics of electromechanical coupling system.
机译:激光跟踪器由机械结构和伺服控制系统组成。它们的特征都影响了激光跟踪器测量系统的误差和稳定性。截止频率和响应速度是对系统性能表征的重要指标。其中,截止频率是系统带宽尺寸的表征,响应速度是系统灵敏度的指标。截止频率较高,响应速度更快。跟踪器的跟踪性能更好。通常,当分析系统的截止频率时,控制系统的各种组件将是数学建模,但仅作为惯性的机械结构作为模型中的参数。它可能导致系统分析中的错误。本文建立了机械结构的机械和电气模型和控制结构,实现了激光跟踪系统的信息。分析旋转惯性,摩擦扭矩和结构刚度对机电耦合系统特性的影响。

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