Claims
- 1. A capacitance discharge ignition system of the type comprising a spark plug; an ignition coil having a primary winding, and having a secondary winding connected to the spark plug; an energy storage capacitance element connected to the primary winding of the coil; a power supply connected to the energy storage capacitance element; and timing means for controlling the timing of the discharge of the energy storage capacitance element to the primary winding to effect generation of a spark in the spark plug; the ignition system being characterized by further comprising:means for setting a first signal indicative of a desired setpoint for spark duration in the spark plug; means for providing a second signal indicative of the actual spark duration based on current flowing through the primary winding; means for determining an error signal between said first and second indicative signals; and means for modulating the energy delivered to the energy storage capacitance element as a function of said error signal so as to adjust the actual spark duration toward the desired spark duration.
- 2. An ignition system as defined in claim 1 in which said first indicative signal is a desired spark duration setpoint.
- 3. An ignition system as defined in claim 2 in which said setting means includes automated input means for storing said first signal in permanent memory.
- 4. An ignition system as defined in claim 2 in which said setting means includes automated input means for establishing a second desired spark duration setpoint, and manually operable means for trimming the second setpoint to the first setpoint.
- 5. An ignition system as defined in claim 1 in which said providing means includes means for sensing the current through the primary winding of the ignition coil.
- 6. An ignition system as defined in claim 1 in which said providing means includes means for directly measuring the spark duration.
- 7. An ignition system as defined in claim 1 in which said determining means includes processor means (i) receiving said first and second indicative signals, (ii) operative to compute said error signal therefrom, and (ii) operative to provide a control signal to said modulating means, said modulating means being responsive to modulate the energy delivered to the energy storage unit in response thereto.
- 8. An ignition system as defined in claim 7 further comprising means receiving said second indicative signal for generating a signal representative of the actual spark duration, said processor means being operative to convert said first indicative signal into a signal representative of the desired spark duration, said processor means being further operative to compute the difference between said signal representative of the desired spark duration and said signal representative of the actual spark duration.
- 9. A capacitance discharge ignition system of the type comprising a spark plug; an ignition coil having a primary winding, and having a secondary winding connected to the spark plug; an energy storage capacitance element connected to the primary winding of the coil; a power source connected to the energy storage capacitance element; and timing means for controlling the timing of the discharge of the energy storage capacitance element to the primary winding to effect generation of a spark in the spark plug; the ignition system being characterized by further comprising:means for establishing a setpoint signal indicative of the desired spark duration; electrical sensing means operatively connected for sensing an ignition system electrical characteristic indicative of the actual spark duration and operative to provide an output signal indicative thereof; processor means receiving said setpoint signal and the output signal from said electrical sensing means, said processor means being adapted to (i) determine the difference between the setpoint signal and said output signal, and (ii) modulate the energy delivered to the energy storage capacitance element as a function of said difference to adjust the actual spark duration toward the desired spark duration.
- 10. A controller to control the spark duration of at least one spark plug in a capacitance discharge ignition system having an ignition coil connected to the spark plug, the ignition coil having a primary winding, the primary winding connected to an energy storage element, the controller comprising:a first module that outputs a desired spark duration of the spark plug based upon parameters received from an external source; a second module that outputs a spark duration based on a current flowing through the primary winding of the ignition coil; a calculation module that receives the desired spark duration and the spark duration and that outputs an error signal from a difference between the desired spark duration and the spark duration; a first output module that receives the error signal and modulates energy delivered to the energy storage element as a function of the error signal to adjust the spark duration; and a second output module that controls the timing of the discharge of the energy storage element to the primary winding to effect generation of a spark in the spark plug.
- 11. The controller of claim 10 wherein the ignition system further comprises a power source connected to the energy storage element and the output module and wherein the first output module modulates energy delivered to the energy storage element by controlling a voltage level of the power source.
- 12. The controller of claim 10 wherein the energy storage element comprises a capacitor and the output module modulates energy delivered to the capacitor.
- 13. The controller of claim 10 wherein one of the second module and the calculation module determines if the ignition system cannot achieve the desired spark duration for a predefined energy level delivered to the primary winding and wherein the controller further comprises an alarm connected to the spark duration module that provides an alert if the ignition system cannot achieve the desired spark duration for a predefined energy level delivered to the primary winding.
- 14. The controller of claim 10 further comprising a current sense module connected to the primary winding and wherein the second module determines a spark duration from the current flowing through the primary winding by: determining a first time instance when the current rises above a threshold; determining a second time instance when the current falls below the threshold; and setting the spark duration as a function of a difference between the first time instance and the second time instance.
- 15. The controller of claim 14 wherein second module sets the spark duration as a function of a difference between the first time instance and the second time instance by setting the spark duration to the difference between the first time instance and the second time instance.
- 16. A controller for controlling spark duration in at least one spark plug in a capacitance discharge ignition system, the ignition system having an ignition coil having a primary winding and a secondary winding, an energy storage element and a power source connected to the primary winding, the secondary winding connected to the spark plug, the controller comprising:an input setpoint module that receives parameters for determining a spark duration setpoint of the spark plug; a spark duration module that determines the spark duration; a calculation module that receives a first input from the input setpoint and a second input from the spark duration module and computes an energy level setpoint based on a difference between the spark duration setpoint and the spark duration; an output module that receives the energy level setpoint and delivers an amount of energy equivalent to the energy level setpoint module to the primary winding from one of the energy storage element and the power source.
- 17. The controller of claim 16 further comprising an adjustment output module to modulate the energy delivered to the energy storage element to the energy level in order to adjust the spark duration.
- 18. The controller of claim 17 further comprising a current sense module to sense current flowing through the ignition coil and wherein the current sense module provides a current input to the spark duration module for determining the spark duration based on the current flowing through the ignition coil.
- 19. The controller of claim 17 further comprising a current sense module to sense current flowing through the primary winding and wherein the current sense module provides a current input to the spark duration module for determining the spark duration based on the current flowing through the primary winding.
- 20. The controller of claim 17 wherein one of the spark duration module and the calculation module determines if the ignition system cannot achieve the desired spark duration for a predefined energy level delivered to the primary winding and wherein the controller further comprises an alarm connected to the one of the spark duration module and the calculation module that provides an alert if the ignition system cannot achieve the desired spark duration for a predefined energy level delivered to the primary winding.
Parent Case Info
This application claims benefit of provisional application No. 60/081,561 Apr. 13, 1998.
US Referenced Citations (14)
Provisional Applications (1)
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Number |
Date |
Country |
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60/081561 |
Apr 1998 |
US |