The researches of this paper are very important and significative job to improve precision of servo-control system of three axis optical tracking test table even all type of electric simulator tables.
本论文的研究对于提高三轴光学跟踪试验转台以至于所有电动仿真转台的伺服控制系统的精度来说,是一项十分重要和有意义的工作。
The Inertia and dynamics coupling of the three axis turn table of the physical simulation test facility are analyzed, and mathematical models are established.
在对对接全物理仿真试验台三维转动装置的惯量耦合和动力学耦合进行分析基础上,建立了相关数学公式。
Mechanical environment where spacecraft disturbance torque is very small in out space is simulated making use of a three-axis full physics air-bearing table as controlled object.
本文利用三轴全物理仿真气浮台作为控制对象,模拟航天器在外层空间所受扰动力矩很小的力学环境。
A design method of the three-axis tracking table servo system based on TMS320F2812 is introduced in this paper.
本文介绍了基于TMS320F 2812三轴跟踪转台伺服控制系统的设计与实现。
Test the accelerometers which is fixed in three-axis rotary table on the ground.
第三,在地面进行加速度计的三轴转台实验。
Three-axis table is one of the key measuring equipment of the inertial component.
三轴转台是测试惯性元件的关键设备之一。
Concerning the structure and principle of a three-axis table, this paper discusses all error factors, which affects the space error of system, and summarizes all volumetric errors of three-axis table.
该文针对某型三轴仿真转台的结构和工作原理,探讨了影响系统空间误差的各个误差源,总结出三轴转台的全部几何运动误差。
Concerning the structure and principle of a three-axis table, this paper discusses all error factors, which affects the space error of system, and summarizes all volumetric errors of three-axis table.
该文针对某型三轴仿真转台的结构和工作原理,探讨了影响系统空间误差的各个误差源,总结出三轴转台的全部几何运动误差。
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