Claims
- 1. A motion detector for detecting movements of a vehicle supported on a pair of rails, said detector to be mounted on an end-of-train unit for attachment to said vehicle, said detector comprising:
- a. a single axis accelerometer mounted at an angle from a plane formed by said pair of rails;
- b. said single axis accelerometer having a sensitivity to acceleration along an axis generally parallel to a longitudinal axis of said pair of rails;
- c. said single axis accelerometer when mounted at said angle also having a sensitivity to acceleration along an axis generally normal to said plane formed by said pair of rails;
- d. said single axis accelerometer generating a motion signal having components of acceleration corresponding to said parallel axis and said normal axis; and
- e. an analyzer receiving said components and determining therefrom a motion state and a direction, said motion state being one of stopped and moving, said direction being one of forward and reverse.
- 2. The motion detector of claim 1 wherein determining said motion state comprises:
- a. said analyzer receiving a reference signal from said accelerometer during a reference period, said reference signal corresponding to a stopped motion state;
- b. said analyzer receiving at least one operational signal from said accelerometer during an operational period, said operational period occurring after said reference period; and
- c. said analyzer determining said motion state from a comparison of the components of said reference signal and said at least one operational signal.
- 3. The motion detector of claim 1 wherein determining said direction comprises:
- a. said analyzer receiving a reference signal during a reference period, said reference signal corresponding to a stopped motion state;
- b. said analyzer receiving at least one operational signal from said accelerometer during an operational period, said operational period occurring after said reference period, said components of said at least one operational signal having a polarity indicative of one of positive and negative acceleration; and
- c. said analyzer determining said direction from the polarity of said parallel component.
- 4. The motion detector of claim 3 further comprising:
- a. a power controller operatively connected to said accelerometer for regulating the power provided thereto; and
- b. said power controller employing one of cycling said accelerometer by providing power to said accelerometer intermittently to conserve power and cutting off power to said accelerometer.
- 5. The motion detector of claim 4 wherein said power controller is responsive to at least one of a manual input and input from an end-of-train unit.
- 6. The motion detector of claim 4 wherein said power controller is responsive to said analyzer.
- 7. The motion detector of claim 1 wherein the accelerometer is angled about 40 degrees upwards from said plane formed by said pair of rails, in order to increase the sensitivity of said accelerometer along said axis generally parallel to said longitudinal axis.
- 8. The motion detector of claim 1 further comprising said accelerometer and said analyzer mounted on a circuit board and said circuit board mounted in an end-of-train unit for attachment to said vehicle.
- 9. The motion detector of claim 8 further comprising said circuit board mounted on a frame member attachable to an end-of-train unit, said frame member having a surface angled upwards from a plane formed by said pair of rails.
- 10. The motion detector of claim 9 wherein said surface is angled about 40 degrees upwards from said plane formed by said pair of rails.
- 11. A method of detecting movements of a vehicle supported on a pair of rails, said vehicle having an inertial sensor, said method comprising the steps of:
- a. sensing with said inertial sensor a motion signal indicative of acceleration along a single axis, said single axis angled from a plane formed by the pair of rails, said motion signal having a parallel component and a normal component, said parallel component generally parallel to a longitudinal axis of said pair of rails, said normal component generally normal to the plane formed by said pair of rails; and
- b. determining a motion state and a direction from said components, said motion state being one of stopped and moving, said direction being one of forward and reverse.
- 12. The method of claim 11 wherein determining said motion state comprises the steps of:
- a. sensing a reference signal during a reference period, said reference period corresponding to a stopped motion state;
- b. sensing at least one operational signal during an operational period occurring after said reference period, said operational period corresponding to a moving motion state; and
- c. determining a motion state from a comparison of the components of said reference signal and said at least one operational signal.
- 13. The method of claim 12 further comprising the step of intermittently sensing said at least one operational signal to provide a desirable average power consumption over a certain period of time corresponding to a distance traveled by the rail vehicle.
- 14. The method of claim 13 wherein the step of determining said direction is omitted during said intermittently sensing.
- 15. The method of claim 13 wherein said intermittently sensing comprises sensing said at least one operational signal for a shorter duration and not sensing said at least one operational signal for a longer duration to provide an acceptable average power consumption over the distance traveled by the rail vehicle.
- 16. The method of claim 15 wherein said shorter duration is from about 80 to 86 milliseconds and said longer duration is from about 980 to 990 milliseconds.
- 17. The method of claim 11 wherein determining said direction comprises the steps of:
- a. sensing a reference signal during a reference period, said reference period corresponding to a stopped motion state;
- b. sensing at least one operational signal during an operational period occurring after said reference period, said operational period corresponding to a moving motion state, said components of said at least one operational signal having a polarity indicative of one of positive and negative acceleration; and
- c. determining a direction from the polarity of the parallel component.
Parent Case Info
This is a division of Ser. No. 08/902,816 filed Jul. 30, 1997.
US Referenced Citations (11)
Divisions (1)
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Number |
Date |
Country |
Parent |
902816 |
Jul 1997 |
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