EP2053262B1

Method and apparatus to control clutch fill pressure in an electro-mechanical transmission

Abstract

This record has no abstract on file.

EP2053262B1, drawing sheet 1
Sheet 1 of 9

Term

2.1 yearsleft in the term

Expires 24 October 2028.

  1. Priority
  2. Filed
  3. Granted
  4. Today
  5. Expires

14 claims: 2 independent, 12 dependent

  1. 1
    Method for controlling a powertrain comprising an electro-mechanical transmission (10) mechanically-operatively coupled to an internal combustion engine (14) and an electric machine (56, 72) adapted to selectively transmit mechanical power to an output member (64) via selective application of a plurality of hydraulically-applied torque transfer clutches (70, 62, 73, 75), characterized by :applying through a series of clutch fill events a series of incrementally changing command pressures in a pressure control solenoid (108, 114, 112, 116, 210) controllably connected to one of said clutches (70, 62, 73, 75);monitoring a pressure switch (240) fluidly connected to said pressure control solenoid (108, 114, 112, 116;210) and configured to indicate when said pressure switch (240) is in a full feed state;determining changes in cycle times of said pressure switch (240) corresponding to sequential applications of said series of incrementally changing command pressures;selecting a preferred command pressure to achieve a transient state in said clutch (70, 62, 73, 75) based upon said changes in pressure switch cycle times;and controlling said clutch (70, 62, 73, 75) based upon said preferred command pressure.
  2. 10
    An apparatus for controlling a powertrain comprising an electro-mechanical transmission (10) mechanically-operatively coupled to an internal combustion engine (14) and an electric machine (56, 72) adapted to selectively transmit mechanical power to an output member (64) via selective application of a plurality of hydraulically-applied torque transfer clutches (70, 62, 73, 75), said apparatus comprising:a pressure control solenoid (108, 114, 112, 116, 210) fluidly connected to one of said clutches (70, 62, 73, 75);characterized by a pressure switch (240) fluidly connected to said pressure control solenoid (108, 114, 112, 116, 210) monitoring when said pressure control solenoid (108, 114, 112, 116, 210) is in a full feed state;a pressure control solenoid control module, including programming to apply through a series of clutch fill events a series of incrementally changing command pressures in said pressure control solenoid (108, 114, 112, 116, 210) to create an overlap state in said pressure control solenoid (108,114, 112, 116, 210), monitor said pressure switch (240), determine changes in cycle times of said pressure switch (240) corresponding to sequential applications of said series of incrementally changing command pressures, select a preferred command pressure based upon said changes in pressure switch cycle times, and control said clutch (70, 62, 73, 75) based upon said preferred command pressure.