Laser Technology, Volume. 46, Issue 2, 188(2022)
An optical beamforming network based on dispersing optics
[1] [1] YAN J H, HE Z Sh, CAO J Y, et al. Optical true time delay techniques in optically controlled phased array antennas[J]. Optical Communication Technology, 2007, 31(7):35-38(in Chinese).
[2] [2] QIU G F, ZHU L. Research on aperture fill phenomena of wideband phased array radar [J]. Journal of China Academy of Electronics and Information Technology, 2010, 5(4):354-359(in Chinese).
[3] [3] FRIGYES I, SEEDS A J. Optically generated true-time delay in phased-array antennas[J]. IEEE Transactions on Microwave Theory & Techniques, 1995, 43(9):2378-2386.
[4] [4] SUN J, QIU Q, SHI Sh J. Effect of optical phase-shifting network on beam levels of phased array antenna [J]. Journal of Electronics & Information Technology, 2014, 36(7):1762-1766(in Chinese).
[5] [5] AKIYAMA T, MATSUZAWA H, SAKAI K, et al. Multiple-beam optically controlled beamformer using spatial-and-wavelength division multiplexing[C]// International Topical Meeting on Microwave Photonics. New York, USA: IEEE, 2009: 32-47.
[6] [6] AKIYAMA T, MATSUZAWA H, HARAGUCHI E, et al. Spatial light modulator based optically controlled beamformer for variable multiple-spot beam antenna[C]// International Topical Meeting on Microwave Photonics. New York, USA: IEEE, 2011: 58-79.
[7] [7] JUNG B M, SHIN J D, KIM B G. Optical true time-delay for two-dimensional X-band phased array antennas[J]. IEEE Photonics Technology Letters, 2007, 19(12):877-879.
[8] [8] McKENNA T P, NANZER J A, CLARK T R. Photonic beamsteering of a millimeter-wave array with 10Gb/s data transmission[J]. IEEE Photonics Technology Letters, 2014, 26(14):1407-1410.
[9] [9] TSOKOS C, MYLONAS E, GROUMAS P, et al. Optical beamforming network for multi-beam operation with continuous angle selection[J]. IEEE Photonics Technology Letters, 2019, 31(2):177-180.
[10] [10] ZHUANG L, ROELOFFZEN C G H, HEIDEMAN R G, et al. Single-chip ring resonator-based 1×8 optical beam forming network in CMOS-compatible waveguide technology[J]. IEEE Photonics Technology Letters, 2007, 19(15):1130-1132.
[11] [11] BURLA M, MARPAUNG D A I, ZHUANG L, et al. Multiwavelength-integrated optical beamformer based on wavelength division multiplexing for 2-D phased array antennas[J]. Journal of Lightwave Technology, 2014, 32(20):3509-3520.
[12] [12] TONG D T K, WU M C. Multiwavelength optically controlled phased-array antennas[J]. IEEE Transactions on Microwave Theory and Techniques, 2002, 46(1):108-115.
[13] [13] GOUTZOULIS A P, DAVIES D K, ZOMP J M. Hybrid electronic fiber optic wavelength-multiplexed system for true time delay steering of phased array antennas[J]. Optical Engineering, 2005, 31(11):2312-2322.
[14] [14] MINASIAN R A, ALAMEH K E. Optical-fiber grating-based beamforming network for microwave phased arrays[J]. IEEE Transactions On Microwave Theory And Technology, 1997, 45(8):1513-1518.
[15] [15] LIU Y, YANG J, YAO J. Continuous true-time-delay beamforming for phased array antenna using a tunable chirped fiber grating delay line[J]. IEEE Photonics Technology Letters, 2002, 14(8):1172-1174.
Get Citation
Copy Citation Text
ZHENG Wei, WANG Chao, YANG Wenli, WU Chunbang, ZHANG Zhenjie. An optical beamforming network based on dispersing optics[J]. Laser Technology, 2022, 46(2): 188
Category:
Received: Jan. 28, 2021
Accepted: --
Published Online: Mar. 8, 2022
The Author Email: