Патент США № | 9917651 |
---|---|
Автор(ы) | Puleri и др. |
Дата выдачи | 13 марта 2018 г. |
A feed signal generator (10) for a phased array antenna, comprising: an input (12) to receive an optical spectrum having first and second phase-locked spectral components, respectively having first and second optical frequencies; wavelength selective separator apparatus (14) to separate the optical spectrum into a first optical signal being the first spectral component and a second optical signal being the second spectral component; an optical time delay element (16) to apply a time delay to the first optical signal to form a delayed optical signal; a heterodyning device (20) to heterodyne the delayed optical signal and the second optical signal to generate a feed signal (22) having a power proportional to a product of the amplitudes of the second and delayed optical signals and a phase proportional to the time delay; and optical amplitude control apparatus (18) to set an amplitude of the delayed optical signal such that the product of said amplitudes causes the power of the feed signal to have a preselected value.
Автор(ы): | Marzio Puleri (Pisa, IT), Antonio D'Errico (Pisa, IT), Anna Molony (Warwick, GB) | ||||||||||
---|---|---|---|---|---|---|---|---|---|---|---|
Заявитель: |
|
||||||||||
Патентообладатель: | Telefonaktiebolaget LM Ericsson (publ) (Stockholm, SE) |
||||||||||
Идентификатор семейства: | 51059462 | ||||||||||
Номер заявки: | 15/320,470 | ||||||||||
Приоритет: | 01 июля 2014 г. | ||||||||||
PCT Filed: | July 01, 2014 | ||||||||||
PCT No.: | PCT/EP2014/063994 | ||||||||||
371(c)(1),(2),(4) Date: | December 20, 2016 | ||||||||||
PCT Pub. No.: | WO2016/000767 | ||||||||||
PCT Pub. Date: | January 07, 2016 |
Идентификатор патента | Дата публикации | |
---|---|---|
US 20170163351 A1 | Jun 8, 2017 | |
Действующий класс US: | 1/1 |
Действующий класс СПК: | H04B10/506; G01S7/02; H04B10/64; H01Q21/22; H01Q3/2676; H04L7/0075; G01S2013/0254; H04B2210/006 |
Действующий класс МПК: | H04B10/50; H04L7/00; H04B10/64; G01S7/02; G01S13/02; H01Q3/26; H01Q21/22 |
Область поиска: | ;398/192 |
5644316 | July 1997 | Lewis |
7382983 | June 2008 | Mizuma |
7877020 | January 2011 | Hayes |
9614280 | April 2017 | Shi |
2012/0163501 | June 2012 | Dong |
WO 03 043195 | May 2003 | WO | |||
WO 2014 018927 | Jan 2014 | WO | |||
WO 2014018927 | Jan 2014 | WO | |||
Analysis and Engineering of Chromatic Dispersion in Silicon Waveguide Bends and Ring Resonators by Lin Zhang et al.; Optical Society of America--2011. cited by applicant . Development of a Broadband Integrated Optical Beamformer for Ku-Band Phased Array Antennas; Topic: Mobile user--on the Move antennas (vehicular, train, maritime, aeronautical) General technology and techniques advances (Beamforming techniques) by Chris Roeloffzen et al.--2012. cited by applicant . Flexible True-Time Delay Beamforming in a Photonics-Based RF Broadband Signals Generator by Filippo Scotti et al.; Th2B5--2013. cited by applicant . Single-Chip Ring Resonator-Based 1.times.8 Optical Beam Forming Network in CMOS-Compatible Waveguide Technology by L. Zhuang et al.; IEEE Photonics Technology Letters, vol. 19, No. 15--Aug. 1, 2007. cited by applicant . True Time-Delay Phased-Array Antenna Feed System Based on Optical Heterodyne Techniques by Ligeng Xu et al.; IEEE Photonics Technology Letters, vol. 8, No. 1--Jan. 1996. cited by applicant . International Search Report for International application No. PCT/EP2014/063994--dated Mar. 16, 2015. cited by applicant . Photonic Technologies for Antenna Beamforming by Moshe Tur et al.; Optical Society of America--2011. cited by applicant. |