Nova Patents
CA2199120C

Time-of-flight radio location system

Abstract

A bi-static radar configuration measures the directtime-of-flight of a transmitted RF pulse and is capableof measuring this time-of-flight with a jitter on the orderof about one pico-second, or about 0.01 inch of freespace distance for an electromagnetic pulse over a rangeof about one to ten feet. A transmitter (53) transmits asequence of electromagnetic pulses in response to a transmittiming signal, and a receiver (58) samples the sequence ofelectromagnetic pulses with controlled timing response to thesamples. A timing circuit supplies the transmit timing signalto the transmitter and supplies the receive timing signal tothe receiver. The receive timing signal causes the receiverto sample the sequence of electromagnetic pulses such thatthe time between transmission of pulses in the sequence andsampling by the receiver sweeps over a range of delays.

CA2199120C, drawing sheet 1
Sheet 1 of 6

Term

Term ended

Expired 29 August 2015, 11.1 years ago.

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

30 claims: 9 independent, 21 dependent

  1. 1
    CA 02199120 2006-01-06 The embodiments of the invention in which an exclusive property or privilege is claimed are defined as follows:1. An apparatus for measuring time-of-flight of an electromagnetic pulse, the apparatus comprising: a transmitter which transmits a sequence of electro-magnetic pulses in response to a transmit timing signal;a receiver which samples the sequence of electro-magnetic pulses with controlled timing, in response to a receive timing signal, and generates a sample signal in response to the samples;a timing circuit which supplies the transmit timing signal to the transmitter and supplies the receive timing signal to the receiver, the receive timing signal causing the receiver to sample the sequence of electro-magnetic pulses such that time between transmission of pulses in the sequence and sampling by the receiver sweeps over a range of delays;and a sample detection circuit which in response to the sample signal and the timing circuit indicates a time-of-flight between the transmitter and the receiver of pulses in the sequence.
  2. 4
    The apparatus of any one of claims 1 to 3, wherein the transmit timing signal causes the transmitter to transmit the sequence of electro-magnetic pulses at a consistent pulse repetition rate to define a time between pulses, and the time between pulses is greater than the difference in the delays at the beginning and the end of the range of delays. CA 02199120 2006-01-06
  3. 5
    The apparatus of any one of claims 1 to 3, wherein the transmit timing signal causes the transmitter to transmit the sequence of electro-magnetic pulses at a pulse repetition rate, and wherein the receive timing signal sweeps over the range of delays in a sweep cycle such that pulses in the sequence are sampled at the pulse repetition rate and with different delays in the range of delays, such that the sample signal represents magnitude of a received pulse in an equivalent time.
  4. 10
    An apparatus for detecting position of an object, the apparatus comprising:a transmitter, for placement on the object, which transmits a sequence of electro-magnetic pulses in response to a transmit timing signal;a receiver which samples the sequence of electro-magnetic pulses with controlled timing, in response to a receive timing signal, and generates a sample signal in response to the samples;a timing circuit which supplies the transmit timing signal to the transmitter and supplies the receive timing signal to the receiver, the receive timing signal causing the receiver to sample the sequence of electro-magnetic pulses such that time between transmission of pulses in the sequence by the transmitter and sampling by the receiver sweeps over a range of delays;CA 02199120 2006-01-06 a pulse detection circuit which in response to the sample signal and the timing circuit generates a pulse detect signal when the sample signal reaches a threshold during a sweep;and a signal processor, coupled with the pulse detection circuit, to indicate a position of the object in response to the pulse detect signal.
  5. 18
    The apparatus of any one of claims 10 to 17, wherein the receiver includes an automatic gain control circuit.
  6. 19
    The apparatus of any one of claims 10 to 18, wherein the transmit timing signal causes the transmitter to transmit the sequence of electro-magnetic pulses at a pulse repetition rate, and wherein the receive timing signal sweeps over the range of delays in a sweep cycle such that pulses in the sequence are sampled at the pulse repetition rate and with different delays in the range of delays, such that the sample signal represents magnitude of a received pulse in an equivalent time.
  7. 24
    The apparatus of any one of claims 10 to 23, including at least one additional receiver spaced away from another receiver, and coupled to the timing circuit and the signal processor, which generates an additional sample signal.
  8. 25
    An apparatus for detecting position of an object, the apparatus comprising:a transmitter, for placement on the object, which transmits a sequence of microwave pulses in response to a transmit timing signal with a pulse repetition rate greater than about 1 megaHertz;a receiver having an antenna, a sample gate coupled to the antenna, which samples a signal on the antenna at the pulse repetition rate and with controlled timing in response to a receive timing signal, and an amplifier coupled to the sample gate including automatic gain control such that pulses in the sequence are sampled to generate an equivalent time sample signal;a timing circuit which supplies the transmit timing signal to the transmitter and supplies the receive timing signal to the receiver, the receive timing signal causing the receiver to sample the sequence of electro-magnetic pulses such that time between transmission of pulses in the sequence by the transmitter and sampling by the receiver sweeps over a range of delays varying by less than 20 nanoseconds in a sweep duration of greater than about 10 milliseconds;and a signal processor, coupled with the receiver, to indicate a position of the object within a range of less than 10 feet in response to the equivalent time sample signal.
  9. 28
    A method for detecting position of an object at a range of less than 10 feet, the method comprising:mounting a transmitter on the object;transmitting from the transmitter a sequence of electromagnetic pulses;detecting time-of-flight of the electromagnetic pulses from the transmitter to a receiver, the step of detecting time-of-flight including: sampling the sequence of pulses with controlled timing to produce an equivalent time representation of a transmitted pulse at the receiver;and processing the equivalent time signal to indicate the time-of-flight;and processing the time-of-flight to indicate position of the object.