Motor overspeed detection
A motor control system of a combine having a rotor that is simultaneously driven by an engine and a hydraulic motor is configured to determine at overspeed condition of the motor and to disengage the motor from the engine when the overspeed condition exists.
1. A motor control system for a combine having a hydraulic motor and an internal combustion engine that are configured to be simultaneously coupled to and simultaneously drive a combine rotor, the system comprising:
at least one electronic controller configured to calculate at least two alternative first and second motor speed values, include a first threshold motor speed and a second wherein the first motor speed value is obtained from a motor speed sensor and wherein the second motor speed value is obtained from both an engine speed sensor and a rotor speed sensor and further wherein the electronic controller is configured to compare the first and second motor speed values with at least one threshold motor speed value and to disengage the motor from the engine when both alternative first and second motor speed values exceed the threshold motor speed value for a predetermined interval.
2. The system of claim 1 , wherein the combine includes a planetary gear set coupling the engine and motor to the rotor, and a clutch coupled to and between the engine and the planetary gear set.
3. The system of claim 2 , wherein the control system is configured to disengage the motor from the engine by disengaging the clutch.
4. The system of claim 1 , wherein the electronic controller is configured to prevent disengagement of the motor when a clutch is slipping.
5. A method for controlling motor overspeed in a combine having a hydraulic motor and an internal combustion engine that are configured to be simultaneously coupled to and simultaneously drive a combine rotor, the method comprising the steps of:
electronically calculating at least two alternative first and second motor speed values, wherein the first motor speed value is obtained from a motor speed sensor and wherein the second motor speed value is obtained from both an engine speed sensor and a rotor speed sensor;
electronically comparing the first and second motor speed values with at least one threshold motor speed value, and
disengaging the motor from the engine when both first and second motor speed values exceed the threshold motor speed value for a predetermined interval.
6. The method of claim 5 , wherein the combine includes a planetary gear set coupling the engine and motor to the rotor and a clutch coupled to and between the engine and the planetary gear set.
7. The method of claim 6 , wherein the step of disengaging the motor includes the step of disengaging the clutch.
8. The method of claim 5 , further comprising the step of preventing disengagement of the motor when a clutch is slipping.
9. A motor control system for a combine having a hydraulic motor and an internal combustion engine that are configured to be simultaneously coupled to and simultaneously drive a combine rotor, the system comprising:
means for calculating at least two alternative first and second motor speed values, wherein the first motor speed value is obtained from a motor speed sensor and wherein the second motor speed value is obtained from both an engine speed sensor and a rotor speed sensor,
means for comparing the first and second motor speed values with at least one threshold motor speed value, and
means for disengaging the motor from the engine when both the first and second motor speed values exceed the threshold motor speed value for a predetermined interval.
10. The system of claim 9 , wherein the combine includes a planetary gear set coupling the engine and motor to the rotor, and a clutch coupled to and between the engine and the planetary gear set.
11. The system of claim 10 , further comprising means for disengaging the motor from the engine by disengaging the clutch.