Claims
- 1. A presence detection system comprising:
a reader device attached to a first body, comprising: an ultrasonic transducer for generating and transmitting ultrasonic pulses at a first rate of occurrence;
an RF receiver for receiving an RF signal; and a first microcontroller coupled to said ultrasonic transducer and said RF receiver for receiving signals from said RF receiver and for controlling the operation of ultrasonic transducer and said RF receiver; and a tag device attached to a second body, comprising:
an ultrasonic receiver for receiving ultrasonic pulses from said ultrasonic transducer of said reader device; and an RF pulse generator for generating and transmitting an RF pulse; wherein: A. said first microcontroller instructs said ultrasonic transducer to generate and transmit said ultrasonic pulses: B. said ultrasonic receiver of said tag device receives at least one of said ultrasonic pulses; C. said ultrasonic receiver triggers said RF signal generator to transmit an RF pulse; D. said RF receiver of said reader device receives said RF signal; and E. said first microcontroller detects the presence of said tag device based on the reception of said RF pulse.
- 2. The system of claim 1 wherein said tag device further comprises a timing circuit which operates to trigger said RF pulse generator of said tag device to transmit an RF pulse at a second rate of occurrence, said second rate of occurrence being different from said first rate of occurrence.
- 3. The system of claim 1 wherein one of said ultrasonic pulses transmitted by said ultrasonic transducer is transmitted at a time τ1, and said RF pulse resulting from the reception of said ultrasonic pulse by said ultrasonic receiver is received by said RF receiver of said reader device at a time τ2;
wherein said first microcontroller determines a distance D between said reader device and said tag device according to the equation: D=VS (τ2-τ1); where VS is the velocity of sound in air.
- 4. The system of claim 2 wherein said timing circuit generates a timing pulse to trigger said RF transmitter to transmit an RF pulse at said second rate of occurrence when said ultrasonic receiver does not receive an ultrasonic pulse from said ultrasonic transducer within a predetermined period of time from the reception of a previous ultrasonic pulse.
- 5. The system of claim 4 wherein said first rate of occurrence is three pulses per second.
- 6. The system of claim 5 wherein said second rate of occurrence is one pulse per second.
- 7. The system of claim 6 wherein said first body is a movable vehicle having said reader device attached thereto.
- 8. The system of claim 7 wherein said second body is a person having said tag device attached thereto.
- 9. The system of claim 1 further comprising an alarm device coupled to said first microcontroller, wherein said first microcontroller activates said alarm device upon detecting the presence of said tag device.
- 10. The system of claim 3 further comprising an alarm device coupled to said first microcontroller, wherein said first microcontroller activates said alarm device upon detecting the presence of said tag device.
- 11. The system of claim 10 wherein said alarm device includes at least one of a visual indicator of the activation of said alarm and an audible indicator of the activation of said alarm.
- 12. The system of claim 11 wherein said visual indicator comprises a plurality of LEDs in which the number of LEDs that are triggered increases as the distance between said reader device and said tag device decreases.
- 13. The system of claim 11 wherein said audible indicator comprises a beeper in which the frequency of beeps output by the beeper increases as the distance between said reader device and said tag device decreases.
- 14. The system of claim 2 wherein said timing circuit comprises a microcontroller which is programmed trigger said RF pulse generator at predetermined intervals and when said ultrasonic pulse is received by said ultrasonic receiver.
- 15. A system for determining the distance between a first object and a second object comprising:
a reader device mounted on said first body, said reader device including an ultrasonic transducer, a microcontroller and an RF receiver; and a tag device mounted on said second object, said tag device including an ultrasonic receiver and an RF pulse transmitter; wherein, in response to receiving an ultrasonic pulse transmitted by said reader device at a time TA, said tag device transmits an RF pulse, which is received by said reader device at a time TB, and said microcontroller of said reader device determines the distance D between the first and second objects according to the equation: D=VS·(TB-TA); where VS is the velocity of sound in air.
- 16. A method of detecting the presence of an object comprising:
A. transmitting ultrasonic pulses at a first rate of occurrence from a first location; B. receiving at least one of said ultrasonic pulses at a second location; C. transmitting an RF pulse in response to said reception of said ultrasonic pulse at said second location; D. receiving said RF pulse at said first location; and E. detecting the presence of said object at said second location based on the reception of said RF pulse at said first location.
- 17. The method of claim 16 further comprising determining a distance of said object from said first location based on an elapsed time between said transmission of said ultrasonic pulse from said first location to the reception of said RF pulse at said first location.
- 18. The method of claim 17 further comprising activating an alarm when said distance between said object and said first location is less than a predetermined range.
- 19. The method of claim 18 wherein said activating step comprises at least one of illuminating a series of LEDs and activating a beeper.
- 20. A method for determining a distance between a first object location and a second object location comprising:
A. transmitting an ultrasonic pulse from the location of said first object at a time TA; B. receiving said ultrasonic pulse at the location of said second object; C. transmitting an RF pulse from said second object location in response to the reception of said ultrasonic pulse; D. receiving said RF pulse at said first object location at a time TB; and E. determining the distance D between said first object location and said second object location according to the equation: D=VS·(TB-TA); where VS is the velocity of sound in air.
CROSS-REFERENCE TO RELATED APPLICATIONS
[0001] This application claims the benefit of U.S. Provisional Application Serial No. 60/240,164, filed Oct. 13, 2000, entitled COLLISION AVOIDANCE SYSTEM.
Provisional Applications (1)
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Number |
Date |
Country |
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60240164 |
Oct 2000 |
US |