摘要:
The methods and devices of a multi-functional operating interface for a care-taking machine. The multi-functional operating interface of the care-taking machine includes: muscle stretch sensor, multiplexer amplifying wave filter, analog-to-digital signal converter, image processing unit, and muscle pattern database and control bus. Aided by the present muscle template training method and potential image data collecting and processing method, it can become an interface that offers the user of a care-taking machine instantaneous and unlimited controllability of the machine, enabling such people, either sick or handicapped, to enjoy more convenience and better life.
摘要:
A method for controlling acceleration and deceleration before interpolating is provided. The method comprises steps of previewing and analyzing a processing program to estimate a limitation of a processing velocity, which comprises providing the processing program including a pathway formed by plural blocks; unitizing the motion vector of each block into the unit vector ( N ^ i = N _ i N _ i ) ; calculating a length (DVi=∥{right arrow over (DV)}i∥) of a vector difference in the unit vectors between each block and its next block ({right arrow over (DV)}i={circumflex over (N)}i−{circumflex over (N)}i+1); calculating a sum of the length of the vector difference in a distance from a starting block (S=Σ DVn); and calculating the limitation of the processing velocity for an end of each block (Vlim) according to an inverse ratio of the sum (1/S); and distributing a processing velocity according to the limitation.
摘要翻译:提供了一种用于在内插之前控制加速和减速的方法。 该方法包括步骤:预览和分析处理程序以估计处理速度的限制,其包括提供包括由多个块形成的路径的处理程序; 将每个块的运动矢量单元化为单位矢量(N ^ i = N _ iN _ i); 计算每个块与其下一个块之间的单位向量中的向量差的长度(DVi =∥{右箭头(DV)}i‖)({右箭头(DV)} i = {在(N) } i- {(n)} i + 1); 计算与起始块的距离中的矢量差的长度的和(S =&Sgr; DVn); 根据和(1 / S)的反比,计算每个块的结束处理速度的限制(Vlim); 并根据该限制分配处理速度。
摘要:
The methods and devices of a multi-functional operating interface for a care-taking machine. The multi-functional operating interface of the care-taking machine includes: muscle stretch sensor, multiplexer amplifying wave filter, analog-to-digital signal converter, image processing unit, and muscle pattern database and control bus. Aided by the present muscle template training method and potential image data collecting and processing method, it can become an interface that offers the user of a care-taking machine instantaneous and unlimited controllability of the machine, enabling such people, either sick or handicapped, to enjoy more convenience and better life.
摘要:
A program-converting module for a multi-axis cooperated machine and a program-converting method. Machining programs and mechanism data of a plurality of first machines are input to a first input module. Mechanism data of a plurality of second machines are input to a second input unit. A setting unit sets at least one of the first machines to be a source machine, and sets one of the second machines to be a target machine. A conversion unit uses a kinematical method to convert the machining program of the source machine into a machining program applicable to the target machine based on the mechanism data of the source and target machines, without requiring CAD/CAM software.
摘要:
An apparatus and a method for tuning control parameters are disclosed. The apparatus includes a parameter database, a user interface, a processing unit and a control unit. The parameter database stores several control parameter sets, which are classified into several data groups respectively corresponding to several total machining points. The user interface is for selecting one of the total machining points, and distributing the selected total machining point to at least one machining item to generate distribution data of points. The user interface is further for inputting embryo data. The processing unit selects one of the control parameter sets corresponding to the distribution data of points and the embryo data from the parameter database. The control unit controls a machine tool according to the corresponding one of the control parameter sets.
摘要:
A program-converting module for a multi-axis cooperated machine and a program-converting method. Machining programs and mechanism data of a plurality of first machines are input to a first input module. Mechanism data of a plurality of second machines are input to a second input unit. A setting unit sets at least one of the first machines to be a source machine, and sets one of the second machines to be a target machine. A conversion unit uses a kinematical method to convert the machining program of the source machine into a machining program applicable to the target machine based on the mechanism data of the source and target machines, without requiring CAD/CAM software.
摘要:
A method for controlling acceleration and deceleration before interpolating is provided. The method includes steps of previewing and analyzing a processing program to estimate a limitation of a processing velocity and distributing a processing velocity according to the limitation. The step of previewing and analyzing a processing program includes sub-steps of providing the processing program including a pathway formed by plural blocks, unitizing the motion vector of each block into the unit vector ( N ^ i = N _ i N _ i ) , calculating a length (DVi=∥{right arrow over (DV)}i∥) of a vector difference in the unit vectors between each block and its next block ({right arrow over (DV)}i={circumflex over (N)}i−{circumflex over (N)}i+1), calculating a sum of the length of the vector difference in a distance from a starting block (S=ΣDVn), and calculating the limitation of the processing velocity for an end of each block (Vlim) according to an inverse ratio of the sum (1/S).
摘要翻译:提供了一种用于在内插之前控制加速和减速的方法。 该方法包括以下步骤:预测和分析处理程序以估计处理速度的限制并根据该限制分配处理速度。 预览和分析处理程序的步骤包括提供处理程序的子步骤,该处理程序包括由多个块形成的路径,将每个块的运动矢量整合为单位矢量(N ^ i = N _ iN _ i ),计算每个块与其下一个块之间的单位矢量中的向量差的长度(DVi =∥{right arrow over(DV)}i‖)({右箭头(DV)} i = {回旋( 计算出与起始块(S =&Sgr; DVn)的距离中的向量差的长度的和,并计算处理速度的限制(N) 根据和(1 / S)的反比,针对每个块(Vlim)的结束。
摘要:
An apparatus and a method for tuning control parameters are disclosed. The apparatus includes a parameter database, a user interface, a processing unit and a control unit. The parameter database stores several control parameter sets, which are classified into several data groups respectively corresponding to several total machining points. The user interface is for selecting one of the total machining points, and distributing the selected total machining point to at least one machining item to generate distribution data of points. The user interface is further for inputting embryo data. The processing unit selects one of the control parameter sets corresponding to the distribution data of points and the embryo data from the parameter database. The control unit controls a machine tool according to the corresponding one of the control parameter sets.
摘要:
An apparatus and a method of synchronizing and interpolating axes of a multi-system are provide. According to the number M of operating systems, the apparatus analyzes a multi-axis process program of N axes to generate M system process programs, wherein, N≧M≧2. A synchronous code is added to the M system process programs. According to the specifications of the operating systems, a delay time compensation program is added to the M system process programs to ensure the synchronization of the systems therebetween. The characteristics of the controllers and the servos of the operation systems are adjusted to unify the characteristics of the systems. The M system process programs are outputted to the operating systems correspondingly.
摘要:
The present invention provides a manufacturing method for a machine tool having a human-machine interface and a program with predetermined manufacturing conditions. The manufacturing method includes (1) setting, via the human-machine interface, one or more specific manufacturing areas of the workpiece and specific conditions for the specific manufacturing areas; (2) determining by the controller whether the manufacturing of the workpiece is performed at one of the specific manufacturing areas; (3) performing the manufacturing of the workpiece under one of the specific conditions corresponding to the one of the specific manufacturing areas via the controller and monitoring continuously the manufacturing status of the machine tool if the manufacturing of the workpiece is performed at one of the specific manufacturing areas; and (4) performing the manufacturing of the workpiece according to the predetermined manufacturing conditions via the controller if the manufacturing of the workpiece is not performed at the specific manufacturing areas.