EP0206517B1

A method of controlling fuel supply and a fuel injection apparatus

Abstract

This record has no abstract on file.

EP0206517B1, drawing sheet 1
Sheet 1 of 6

Term

Term ended

Expired 21 May 2006, 20.3 years ago.

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

7 claims: 2 independent, 5 dependent

  1. 1
    A method of controlling fuel supply to a combustion chamber of a diesel engine, where the diesel engine has periods of substantially steady state operation during which the conditions of the combustion chamber are in a substantially stabilized state, and periods of transient operation therebetween during which the conditions of the combustion chamber are unstabilized and changing toward a new stabilized state at a rate proportional to cylinder firing frequency, the method comprising the steps of providing fuel and timing values for each cylinder firing, the fuel value being indicative of the desired fuel quantity based on operator demand and the timing value being indicative of the optimum initiation of fuel supply based on a schedule of values compiled during testing under substantially steady state operation;sensing the change in the fuel quantity from a previous cylinder firing as an indication of the extent to which the demanded engine operation deviates from steady state operation;modifying the scheduled timing value by a correction amount determined in relation to the sensed change in fuel quantity when a significant deviation from steady state operation is indicated, which correction amount accounts at least in part for differences between the optimum timing value and the scheduled timing value due to the unstabilized conditions of the combustion chamber associated with the indicated deviation;and reducing the correction amount at a rate determined in relation to the cylinder firing frequency when the sensed change in fuel quantity indicates a return to substantially steady state operation;characterised by updating the correction amount at the cylinder firing frequency so long as the sensed change in fuel quantity indicates a significant deviation from steady state operation;by detecting the return of the fuel injection amount to a substantially steady state;and by maintaining a timing correction amount after said return has been detected which is gradually reduced to zero at a rate determined in relation to the cylinder firing frequency.
  2. 5
    A fuel injection apparatus for a multiple cylinder diesel engine (12) comprises an injection device for initiating the injection of fuel for individual engine cylinders in relation to the prior passage of a respective engine piston through a top dead centre position in accordance with a timing value and subsequently terminating such injection relative to the initiation in accordance with a value of fuel quantity;and a control unit (44) for determining timing value and fuel quantity for the injection device as a function of operator demand and sensed engine operating conditions, the control unit, upon passage of each engine piston through a top dead centre position determining a fuel quantity in relation to operator demand;sensing the change in fuel quantity from a previously determined fuel quantity;determining a correction amount for an empirically derived timing value compiled under substantially stabilized steady state conditions of the diesel engine when the sensed change in fuel quantity indicates a significant deviation from steady state operation, such correction amount accounting at least in part for differences between the optimum timing value and the compiled timing value due to the unstabilized conditions associated with the indicated deviation;and reducing the correction amount at a rate determined in relation to the correction magnitude when the sensed change in fuel quantity indicates a return to substantially steady state operation;characterised in that the control unit (44) detects the return of the fuel injection amount to a substantially steady state;and maintains a timing correction amount after said return has been detected which is gradually reduced to zero at a rate determined in relation to the cylinder firing frequency.