EP1490708B1

Pulse-compression radar system for automotive and other commercial applications

Abstract

This record has no abstract on file.

EP1490708B1, drawing sheet 1
Sheet 1 of 5

Term

Term ended

Expired 19 March 2023, 3.5 years ago.

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

14 claims: 7 independent, 7 dependent

  1. 1
    A receiver for a high resolution radar of the type having a transmitter for transmitting a phase coded pulse compression signal (Tx), comprising:a receive antenna (31) capable of receiving a reflected signal. (Rx) from an object (35) positioned to interrupt said transmitted signal (Tx) and intercept a portion of said signal to said receive antenna (31) to provide said signal at an output;first (44) and second (45) voltage multipliers, each having a local oscillator input port (20) and a receive signal input port and each having an output port;said receive antenna output coupled to said receive signal input port of said first (44) and said second (45) multipliers;a microwave oscillator (10) synchronized to said transmitter signal (Tx) to provide at an output a continuous wave signal at a predetermined frequency;a pulse-former (13) having an input coupled to said output of said oscillator (10) and a first (2) and a second (3) switchable output whereby an oscillator output signal can be applied to either first or second switchable outputs according to a control signal applied to a control terminal of said pulse-former (13);a switch driver (15) having an output coupled to said control terminal of said pulse-former (13) and operative to selectively switch said output (2,3) of said pulse-former (13) between said first (2) and second (3) outputs to provide at said first output (2) a pulse comprising a number of said oscillator cycles indicative of a desired pulse to pulse interval and selected according to a range gated time delay;a bi-phase modulator (16) having an input coupled to said first output (2) of said pulse-former (13)to provide at an output a bi-phase modulated signal;characterised by a phase shifter (43) having an input coupled to said output of said bi-phase modulator (16) to provide a phase shifted signal at an output, with said output of said phase shifter (43)coupled to the local oscillator input port (20) of said second voltage multiplier (45), with said output of said bi-phase modulator (16) coupled directly to said local oscillator input port (20) of said first voltage multiplier (44), said output port of said second voltage multiplier (45) providing a quadrature output (Q) signal and said output port of said first voltage multiplier (44) providing an in-phase (I) output signal;and an autocorrelator (47-55) responsive to said I and Q signals from said voltage multipliers to process said signals for providing a detection signal indicative of the presence and distance of said object (35).
  2. 3
    A radar based sensor detection system, comprising:a microwave source (10) operative to provide a continuous wave signal at an output;a pulse-former (13) coupled to said output of said source (10) and operative to provide at an output a variable length pulse that increases the transmitted energy of said radar system according to the range (R) of object detection;a modulator (16) coupled to said output of said pulse-former (13) for providing a modulated pulse signal at an output;a transmit-receive switch (18) coupled to the output of said modulator (16) and selectively operative between a. first transmit position and a second receive position;a transmit channel coupled to said transmit- receive switch for transmitting said modulated pulse signal when said switch is operated in said transmit position;first and second voltage multipliers (44, 45) each having a local oscillator input (20) an input signal port, and an output port;a receive channel for receiving a reflected transmitted signal from an output of an antenna (31) and applying said received signal to said input signal ports of said voltage multipliers (44, 45);characterised by a receiving channel coupled to said transmit-receive switch (10) for connecting said modulated pulse signal, when said switch is operated in said receive position, to said local oscillator inputs (20) of said first and second voltage multipliers (44, 45);and an autocorrelator (47-55) coupled to said output ports of said voltage multipliers for correlating said received signal to produce an output signal indicating the detection and position of an object (35).
  3. 6
    The system according to any claim 3 to 5, further including a single antenna (70), a switch (72) coupled to said antenna (70) and operative between a transmit position and a receive position wherein said transmit position is coupled to said transmit channel and said receive position is coupled to said receive channel, said switch (72) operative between said positions to employ said single antenna for both transmit and receive operations.
  4. 7
    The system according to any claim 3 to 6, wherein said variable length pulse consists of a chip consisting of a single sub-pulse for objects with a close range distance and consisting of increased length (τ) chips of seven, eleven or thirteen sub-pulses as the range distance (R) is increased.
  5. 9
    The system according to any claim 3 to 8, wherein said receive channel provides a matched filter response to said received signal.
  6. 11
    The system according to any claim 3 to 10 wherein said transmit channel includes an output amplifier (26) having an input coupled to the transmit position of said transmit receiver switch (18) and an output coupled to a transmit antenna (30), said amplifier having a variable gain control (27) for controlling the magnitude of the transmitted pulse signal.
  7. 12
    The system according to any claim 3 to 11 wherein said pulse-former (13) includes a switch operative between a first position (2) coupling said microwave source (10) output to said modulator (16), and a second position (3) coupling said microwave source (10) output to a dissipative load (14) for directing said microwave signal in said second position to said load, a switch driver (15) coupled to said switch and operative to control said switch between said first (2) and second (3) positions.