Claims
- 1. A conformal array compensating beamformer comprising:
- a plurality of sensing elements, arranged in a non-planar configuration and adapted to receive incoming acoustic signals, for transforming said incoming acoustic signals into a plurality of proportional electrical analog signals;
- a plurality of converting means for receiving said plurality of proportional electrical analog signals from said corresponding plurality of sensing elements and converting said plurality of proportional electrical signals into a plurality of digital signals;
- phase computing means for receiving said digital signals from a preselected, at least three of said plurality of converting means, computing therewith the phase angles of the digital signals from each said preselected converting means and adding said phase angles in such a way as to produce phase shift factor 2k.sub.z Z.sub.2 ;
- a plurality of multiplier means, corresponding to said plurality of converting means, for multiplying said 2k.sub.z Z.sub.2 phase factor from said phase computing means with a corresponding Z.sub.k /2Z.sub.2 scale factor selected from a plurality of Z.sub.k /2Z.sub.2 scale factors stored in ROM for values of k from 1 to N whereby a corresponding plurality of k.sub.z Z.sub.k phase shifts are produced as the output of said multiplier means;
- a plurality of phase shifting means for receiving said plurality of k.sub.z Z.sub.k phase shifts from said corresponding plurality of multiplier means and said plurality of digital signals from said corresponding plurality of converting means, and shifting the phase of said plurality of digital signals by the amount of said corresponding plurality of phase shifts thereby producing a plurality of phase shifted digital signals as the output thereof; and
- summing means for receiving said plurality of phase shifted digital signals from said plurality of phase shifting means and adding said plurality of phase shifted digital signals so as to form the projected planar array output of said beamformer.
- 2. A conformal array compensating beamformer according to claim 1 wherein said plurality of converting means further comprises analog-to-digital converters using quadrature sampling techniques for converting said plurality of proportional electrical analog signals into said plurality of digital signals.
- 3. A conformal array compensating beamformer according to claim 2 wherein said phase computing means further comprises:
- a plurality of phase computing subcircuits for receiving the real and imaginary parts of at least three of said plurality of digital signals from said plurality of converting means and computing the associated phase angles therefrom:
- a plurality of inverting means for inverting the sign of at least two of the phase angles produced by said plurality of phase computing subcircuits; and
- a summing junction for receiving the phase angles from said plurality of phase computing subcircuits and said plurality of inverting means, and producing the phase shift factor 2k.sub.z Z.sub.2 therewith.
- 4. A conformal array compensating beamformer according to claim 3 wherein each of said plurality of phase computing subcircuits further comprise:
- an address former whereby said real and imaginary parts of the digital signal from a selected converting means are used to form an address; and
- a ROM for receiving said address from said address former and retrieving from said address in said ROM phase angle data stored thereat corresponding to said digital signal.
- 5. A conformal array compensating beamformer according to claim 4 wherein said plurality of phase shifting means further comprise:
- a plurality of trigonometric computing means for receiving said plurality of k.sub.z Z.sub.k phase shifts from said plurality of multiplier means and computing a corresponding plurality of sine and cosine signals associated therewith; and
- a plurality of complex multiplier means for receiving said plurality of sine and cosine signals from said plurality of trigonometric computing means and said plurality of digital signals from said plurality of converting means whereby the phase of said plurality of digital signals is shifted accordingly before being transmitted to said summing means.
- 6. A conformal array compensating beamformer according to claim 5 wherein said address former further comprises a microprocessor.
- 7. A conformal array compensating beamformer according to claim 6 wherein said plurality of phase computing subcircuits further comprise a quantity of four.
- 8. A conformal array compensating beamformer according to claim 7 wherein said plurality of inverting means further comprise a quantity of two.
STATEMENT OF GOVERNMENT INTEREST
The invention described herein may be manufactured and used by or for the Government of the United States of America for governmental purposes without the payment of any royalties thereon or therefor.
US Referenced Citations (1)
Number |
Name |
Date |
Kind |
3942150 |
Booth et al. |
Mar 1976 |
|