Communications: directive radio wave systems and devices (e.g. – Plural radar
Patent
1993-03-09
1994-08-23
Barron, Jr., Gilberto
Communications: directive radio wave systems and devices (e.g.,
Plural radar
342129, 342179, 342180, G01S 1389
Patent
active
053411412
ABSTRACT:
A three dimensional imaging radar system and method for generating and processing radar information to produce a three dimensional image of objects viewed by the system. The system is designed to create three dimensional images of physical objects at relatively short range, up to a distance of about 1000 feet. The radar system comprises a servo controlled antenna system, wherein the servo system provides azimuth and elevation pointing angle output signals. Two radar transmitters provide radar signals in two different radar bands that are selectively transmitted by the antenna system as a radar beam. A radar receiver preprocesses radar return signals reflected from targets. A digital signal processor is provided that processes the radar return signals from targets and which embodies system improvements comprising a Fourier transform processor, a coherent integrator that provides low pass and high pass filtering to reduce noise, a detector comprising a digital Pythagorean processor that converts the radar return signals into amplitude values for each range bin, a noncoherent integrator, and an adaptive threshold comparator. A buffer memory is is provided that has a predetermined number of range cells that store the amplitude of the radar return signal at each range. A digital scan converter comprising a three dimensional coordinate converter converts the azimuth and elevation pointing angle signals into x, y and z addresses of radar signals that are stored in the buffer memory. A computer selectively controls the transmission of the radar signals each radar system, adaptively controls the movement of the antenna system using the servo system, and processes the x, y and z addresses of radar signals stored in the buffer memory to produce a three dimensional image for display on a monitor. A digital sweep linearizer is provided which produces a highly accurate linear sweep signal that drives a voltage tuned oscillator. The coherent integrator provides "noise reducing" low pass or high pass filtering of the signals prior to detection. The bandpass of the filters in the coherent integrator is controlled by the digital signal processor.
Carlson Ronald F.
Frazier Lawrence M.
Sheffler James B.
Barron Jr. Gilberto
Brown Charles D.
Denson-Low Wanda K.
Heald Randall M.
Hughes Missile Systems Company
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