Патент США № | 10523331 |
---|---|
Автор(ы) | Calhoun и др. |
Дата выдачи | 31 декабря 2019 г. |
Delivering a radio frequency (RF) signal to a remote phased array antenna system involves using an optical modulator at an RF source location to modulate a high power optical carrier signal with a source RF signal S.sub.RF so as to produce a high power transmit modulated optical carrier (TMOC) signal. An optical link communicates the high power TMOC signal to a remote antenna location, where the high power TMOC is split into N optical paths to obtain N reduced power TMOC signals. In each of the N optical paths, photodetection operations are performed upon the reduced power TMOC signal to obtain N reduced power S'.sub.RF signals which are then constructively combined to obtain a high power S'.sub.RF signal which is communicated to at least one antenna element.
Автор(ы): | David M. Calhoun (Victor, NY), Stefan Preble (Pittsford, NY) | ||||||||||
---|---|---|---|---|---|---|---|---|---|---|---|
Заявитель: |
|
||||||||||
Патентообладатель: | PRECISION OPTICAL TRANSCEIVERS INC. (Rochester, NY) |
||||||||||
Идентификатор семейства: | 67214352 | ||||||||||
Номер заявки: | 15/869,870 | ||||||||||
Приоритет: | 12 января 2018 г. |
Идентификатор патента | Дата публикации | |
---|---|---|
US 20190222320 A1 | Jul 18, 2019 | |
Действующий класс US: | 1/1 |
Действующий класс СПК: | H01Q21/22; H01Q3/2676; H04Q11/0062; H04B10/25753; H04B10/564; H04Q11/0005; H04Q2011/0039; H04Q2011/0096; H04B2210/006 |
Действующий класс МПК: | H04Q11/00; H04B10/564; H01Q21/22; H04B10/2575 |
4739334 | April 1988 | Soref |
4885589 | December 1989 | Edward et al. |
5117239 | May 1992 | Riza |
5333000 | July 1994 | Hietala et al. |
5751242 | May 1998 | Goutzoulis |
5867295 | February 1999 | Betts |
6229482 | May 2001 | Vaughan |
6836515 | December 2004 | Kay et al. |
7446696 | November 2008 | Kondo et al. |
7545868 | June 2009 | Kennedy et al. |
7724179 | May 2010 | Williams et al. |
8180183 | May 2012 | Yap |
9070972 | June 2015 | Wang et al. |
9525489 | December 2016 | Schuetz et al. |
9614280 | April 2017 | Shi et al. |
9831901 | November 2017 | Kpodzo et al. |
10103823 | October 2018 | Kyrolainen et al. |
10312999 | June 2019 | Neuman |
2003/0090777 | May 2003 | Yap |
2004/0208636 | October 2004 | Reynolds et al. |
2006/0067709 | March 2006 | Newberg et al. |
2007/0280704 | December 2007 | Fitzgerald |
2008/0225375 | September 2008 | Newberg et al. |
2009/0067772 | March 2009 | Khurgin et al. |
2009/0110398 | April 2009 | Pfeiffer |
2009/0263144 | October 2009 | McKinney |
2011/0038632 | February 2011 | Zou |
2012/0070151 | March 2012 | Shin et al. |
2012/0189308 | July 2012 | Watanabe |
2013/0202308 | August 2013 | Middleton et al. |
2014/0126914 | May 2014 | Berlin et al. |
2015/0349892 | December 2015 | Fischer et al. |
2017/0207531 | July 2017 | Murakowski |
2018/0091335 | March 2018 | Schnizler |
2018/0102847 | April 2018 | Kim et al. |
2019/0212472 | July 2019 | Tennant et al. |
2019/0222320 | July 2019 | Calhoun et al. |
Righini, G.C., et al., "Glass Optical Waveguides: A Review of Fabrication Techniques," Optical Engineering 53(7), 071819 (Jul. 2014). cited by applicant . Longbrake, M., "True Time-Delay Beamsteering for Radar," Wright State University, Air Force Research Laboratory Sensors Directorate, Dayton, OH, 2012 IEEE National Aerospaceand Electronics Conference (NAECON), Jul. 2012. cited by applicant . Chang, Chia-Ming, et al., "High-power dual-fed traveling wave photodetector circuits in silicon photonics," Aug. 24, 2015, vol. 23, No. 17, DOI: 10.1364/OE.23.022857, Optics Express 22857. cited by applicant . Beling, A., et al., "InP-based waveguide photodiodes heterogeneously integrated on silicon-on-insulator for photonic microwave generation," Nov. 4, 2013, vol. 21, No. 22, DOI: 10.1364/OE.21.025901, Optics Express 25901. cited by applicant. |