针对新型五自由度无轴承异步电动机这一多变量、非线性、强耦合的系统,采用逆系统的方法进行解耦控制。
A decoupling control approach based on inverse system has been used for the innovative five degree-of-freedom bearing less induction motor, which is multi-variable, nonlinear and high coupling.
有时,他瞪大了眼望着火,木块上的沙粒和盐粒,在火焰中逆发出五彩缤纷的光圈。
Sometimes he would watch the edges of color that the sea salt and the sand in the wood made in the flame as they burned.
针对新型五自由度无轴承异步电动机这一多变量、非线性、强耦合的系统,采用逆系统的方法进行解耦控制。
A decoupling control approach based on inverse system has been used for the innovative five degree-of-freedom bearingless induction motor, which is multi-variable, nonlinear and high coupling.
对平面二自由度五杆机构的位姿形式及位置逆解进行分析之后,提出了用二自由度辅助机构进行全铰链五杆轨迹机构综合的方法。
A method that USES two degrees of freedom (DOF) auxiliary mechanisms to path synthesize a five-bar mechanism was presented after analyzing the posts and inverted solutions of the five-bar mechanism.
紧接着分析五自由度机械手的运动学特性,建立了正、逆运动学方程。
Next, the five freedom manipulator's kinematics characteristic is analyzed, establishing the direct and the inverse kinematic equations.
分析了一种三杆五自由度并联机床机器人运动学问题,给出了其运动学正逆解位置方程,并对并联机床的速度及加速度求解进行了定性分析。
The degree of a 3-legged in parallel kinematics machine tool is analyzed. Its positive and inverse kinematics is presented and its velocity and accelerate were qualitative analyzed.
分析了一种三杆五自由度并联机床机器人运动学问题,给出了其运动学正逆解位置方程,并对并联机床的速度及加速度求解进行了定性分析。
The degree of a 3-legged in parallel kinematics machine tool is analyzed. Its positive and inverse kinematics is presented and its velocity and accelerate were qualitative analyzed.
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