Synthesis of compromise sum-difference arrays through time-modulation
In this study, time-modulation is exploited for the synthesis of monopulse sub-arrayed antennas. The solution of the compromise sum-difference problem is obtained by setting the set of static excitations to an optimal sum set and synthesising the 'best compromise' difference pattern throug...
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          | Published in | IET radar, sonar & navigation Vol. 3; no. 6; pp. 630 - 637 | 
|---|---|
| Main Authors | , , , | 
| Format | Journal Article | 
| Language | English | 
| Published | 
        Stevenage
          Institution of Engineering and Technology
    
        01.12.2009
     The Institution of Engineering & Technology  | 
| Subjects | |
| Online Access | Get full text | 
| ISSN | 1751-8784 1751-8792 1751-8792  | 
| DOI | 10.1049/iet-rsn.2009.0058 | 
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| Abstract | In this study, time-modulation is exploited for the synthesis of monopulse sub-arrayed antennas. The solution of the compromise sum-difference problem is obtained by setting the set of static excitations to an optimal sum set and synthesising the 'best compromise' difference pattern through a contiguous partition method based approach. The array elements are aggregated into sub-arrays controlled by means of radio frequency switches with optimised 'on' time-durations. The switch-on instants of the pulse sequences are then computed by means of a particle swarm optimiser to reduce the interferences caused by the sideband radiations. A selected set of numerical results is reported to assess the potentialities of time-modulation in dealing with the synthesis problem at hand. | 
    
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| AbstractList | In this study, time-modulation is exploited for the synthesis of monopulse sub-arrayed antennas. The solution of the compromise sum-difference problem is obtained by setting the set of static excitations to an optimal sum set and synthesising the 'best compromise' difference pattern through a contiguous partition method based approach. The array elements are aggregated into sub-arrays controlled by means of radio frequency switches with optimised 'on' time-durations. The switch-on instants of the pulse sequences are then computed by means of a particle swarm optimiser to reduce the interferences caused by the sideband radiations. A selected set of numerical results is reported to assess the potentialities of time-modulation in dealing with the synthesis problem at hand. | 
    
| Author | Massa, A. Poli, L. Rocca, P. Manica, L.  | 
    
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| Keywords | Partition method Modulation Evolutionary computation Numerical simulation Swarm intelligence Radiofrequency Antenna array Sideband Pulse sequence  | 
    
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| SubjectTerms | Antennas Applied sciences Arrays Electromagnetism Engineering Sciences Exact sciences and technology Information, signal and communications theory Mathematical models Modulation, demodulation Navigation Optimization Radar Radiocommunications Signal and communications theory Signal and Image processing Sonar Switches Synthesis Telecommunications Telecommunications and information theory  | 
    
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