DocumentCode :
3201050
Title :
Angle accuracy improvement using DMC randomization for phased array
Author :
Kaichiang Chang ; Beltran, F.
Author_Institution :
Raytheon Co., Wayland, MA, USA
fYear :
1992
fDate :
18-25 June 1992
Firstpage :
107
Abstract :
It is shown that, as an alternative to using cable randomization, decorrelation can be obtained by randomizing the element phase settings at one half of the LSB value. As demonstrated in computer simulations for both methods, this randomization is not only more accurate than cable randomization; it can also be obtained cost-free in most modern phased arrays. To decorrelate the quantization error using DMC (distributed modular controller) randomization, a random number stored in a DMC register is added to DMC´s phase shift calculation. The maximum value of this random number is one-half of the phase shifter LSB. The lower bound for the LSB of this random number is equal to the LSB of the DMC. Therefore, the number of bits in this random number is equal to or less than the difference between the DMC word length and the number of bits in the phase shifter. The choice of randomization bit length is affected by tradeoffs involving DMC cost and throughput and array pointing accuracy. Some of these tradeoffs are summarized for a 16-b DMC.<>
Keywords :
antenna phased arrays; random number generation; 16 bit; DMC randomization; DMC register; LSB; angle accuracy; array pointing accuracy; bit length; computer simulations; cost; decorrelation; distributed modular controller; phase shifter; phased array; quantization error; random number; throughput; word length; Beam steering; Computer errors; Distributed computing; Fault tolerance; Measurement errors; Phase shifters; Phased arrays; Quantization; Radar measurements; Registers;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Antennas and Propagation Society International Symposium, 1992. AP-S. 1992 Digest. Held in Conjuction with: URSI Radio Science Meeting and Nuclear EMP Meeting., IEEE
Conference_Location :
Chicago, IL, USA
Print_ISBN :
0-7803-0730-5
Type :
conf
DOI :
10.1109/APS.1992.221990
Filename :
221990
Link To Document :
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