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机载微波光子技术应用需求与展望 被引量:4

Application Requirement and Prospect of Airborne Microwave Photon Technology
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摘要 受限于相位噪声、瞬时带宽及多功能一体化等电子瓶颈,传统技术无法满足未来机载雷达的应用需求,而微波光子的波动性、粒子性等特性能突破射频系统的瓶颈,实现微波的产生、传输、处理、控制和测量,成为未来战场的关键使能技术。本文总结了未来机载雷达的发展趋势,分析了微波光子技术在机载雷达上的应用,并展望微波光子机载雷达的未来架构。 Limited by electronic bottlenecks,traditional technology cannot satisfy the requirement of future airborne radars.However,the particle behavior and wave behavior of microwave photon can break through the restriction RF systems,realizing the generation,transmission,processing,controlling and measurement of microwave,which makes microwave photon technology the key enable technology in future battlefields.The paper summarizes the development tendency of future airborne radars,analyzes the application of microwave in airborne radars,and forecasts the framework of microwave photon airborne radars.
作者 莫修辞 杨静 赵军 张红波 MO Xiu-ci;YANG Jing;ZHAO Jun;ZHANG Hong-bo(AVIC Leihua Electronic Technology Research Institute,Wuxi 214063,China)
出处 《真空电子技术》 2019年第4期13-17,共5页 Vacuum Electronics
关键词 未来机载雷达 微波光子技术 功能一体化 Future airborne radar Microwave photon technology Functional integration
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  • 1Chen MY. Hybrid photonic true-time delay modules for quasi-continuous steering of 2-D phased-array antennas [J]. J. Lightw. Technol., 2013,31(6).910-917.
  • 2Yi X, Huang TXH, Minasian RA. Photonic beamforming based on programmable phase shifters with amplitude and phase control [ J ]. IEEE Photonics Technol. Lett. , 2011,23 (6) . 1286 - 1288.
  • 3Juswardy B, et al. Opto-VLS[based photonic true-time delay architecture for broadband adaptive nulling in phased array antennas[-J]. Optics Express, 2009,17 (6) . 4773 - 4781.
  • 4Vidal B, Mengual T, Ib6nez-L6pez C, Marti J. Optical beamforming network based on fiber optical delay lines and spatial light modulators for large antenna arrays[-J]. IEEE Photonic Technol. Lett. , 2006, 18 (24)I 2590 - 2592.
  • 5Shahoei H,Li M, Yao J. Continuously tunable time delay using an optically pumped linear chirped fiber bragg gratingrJ]. J. Lightw. Technol. , 2011,29 (10) : 1465 - 1472.
  • 6Li W, Zhang W, Yao J. A wideband 360 photonic- assisted microwave phase shiter using a polarization W modulator and a polarization-maintaining fiber Bragg grating[J ]. Optics Express, 2012, 20 (28) . 29838 - 29843.
  • 7Raz O, Barzilay S, Rotma R, et al. Submicrosecond seanangle switching photonie beamformer with flat RF response in the C and X bands[J]. J. Lightw. Technol. , 2008, 26(15) 12774- 2781.
  • 8Yaron L,Rotman R, Zach S, et al. Photonic beamformer receiver with multiple beam capabilities [J]. IEEE Photon. Teehnol. Lett. , 2010, 22(23) :1723 - 1725.
  • 9ZHANG Ya-mei, WU Huan,ZHU Dan, et.al,An Optically Controlled Phased Array Antenna Based on Single Sideband Polarization Modulation [ J ]. Optics Express, 2014,22(4) :5 761-3 765.
  • 10WU Peng-fei, TANG Su-ning, RAIBLE D E.A Prototype High-speed Optically-steered X-band Phased Array Antenna[J].Optics Express, 2013,21(26):32 599- 32 604.

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