Nova Patents
EP0446733A2

Servo control system.

Abstract

There are provided a position and velocity control system (1) for producing a velocity command signal in response to a position command signal and a signal representing a current position and velocity of a servo motor, a current control system (2) for supplying a drive current to the servo motor in response to the velocity command signal, and a communication system (13, 21) for transmitting data between the two systems (1, 2) by means of a bilateral communication line. A servo control system is thereby separated between the current control system (2) and the position and velocity control system (1) and connected to each other through the communication system (13, 21). This separation through the communication system is advantageous for protecting the position and velocity control system from influence of noise generated in the current control system and also brings about benefits such as expansion of the controllability owing to the bilateral communication, sharing of a single current control system by plural servo motors by switching connection of the servo motors and controllability of plural pairs of servo motor and current control system by a single position and velocity control system by a multi-point connection.

EP0446733A2, drawing sheet 1
Sheet 1 of 9

Term

Term ended

Projected expiry passed 2 March 2011, 15.6 years ago.

  1. Priority
  2. Filed
  3. Published
  4. Projected expiry
  5. Today

13 claims: 9 independent, 4 dependent

  1. 1
    A servo control system comprising:a servo motor;current control means responsive to a velocity command signal for supplying a drive current to said servo motor;position and velocity control means responsive to a position command signal and a signal representing a current position and velocity of said servo motor for supplying the velocity command signal to the current control means;and    communication means provided between said current control means and said position and velocity control means for transmitting data between said current control means and said position and velocity control means by means of a bilateral communication line.
  2. 3
    A servo control system as defined in one or claims 1 or 2 wherein a plurality of said servo motors are provided and which further comprises switching means for selectively switching a servo motor to be driven by said current control means from among said servo motors in response to a switching signal from said high order controller.
  3. 4
    A servo control system as defined in one or claims 1 to 3 wherein plural pairs of said servo motor and said current control means are provided and these plural pairs and said position and velocity control means are connected to each other by a multi-point connection by means of said communication means.
  4. 5
    A servo control system as defined in one of claims 1 to 4 wherein said position and velocity control means comprises an absolute type and phase-shift type position sensor for detecting a current position and velocity of said servo motor including a coil winding section and a member which displaces relative to said coil winding section to change reluctance in said coil winding section in accordance with the relative position of said member with respect to said coil winding section, said coil winding section being excited by primary ac signals which are phase-shifted to one another to generate an output ac signal having an electrical phase difference corresponding to the absolute position of said servo motor.
  5. 7
    A servo control system as defined in one of claims 1 to 4 wherein said plural current control means are disposed adjacent to each other in a rack and heat radiation means is provided in common for each heat generating part of said current control means for radiating heat generated from said heat generating part to the outside.
  6. 8
    A servo control system as defined in one of claims 1 to 7 wherein data transmission between said current control means and said position and velocity control means is made by using serial data composed of a start frame and a predetermined number of data frames added to the start frame in which each frame consists of    a start bit of one bit indicating start of a frame,    a data bit consisting of a predetermined number of bits provided next to the start bit,    a discriminating bit of one bit provided next to the data bit for discriminating the type of a next fram, and    a parity bit provided next to the discriminating bit,    said start frame is a frame in which at least one station address is set in said data bit and said data frame is a frame in which various data are set in the data bit.
  7. 11
    A servo control system as defined claim 9 or 10 wherein said serial communication interface further comprises:a third register connected between said second register and said output buffer for storing said data bit stored in said second register and forwarding it to said ouptut buffer;a fourth register connected to said third register for storing a data bit corresponding to a predetermined frame number among said data bit forwarded from said third register to said output buffer and shifting said stored data by a predetermined amount;and    a second buffer connected to said fourth register for supplying said data bit as a phase signal to said current control means.
  8. 12
    A servo control system as defined in one of claims 8 to 11 wherein said serial communication interface further comprises a station select decoder connected to said first register for controlling, in response to a station address in said data bit stored in said first register, output of said data bit stored in said second register and transmission of said serial data.
  9. 13
    A servo control system as defined in one of claims 1 to 12 in which said current control means is integrally incorporated in said servo motor.