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| United States Patent | RE36,471 |
| Cohen | December 28, 1999 |
An optical communication network includes at least one single-mode fiber, referred to as a "primary fiber," for transmission between a central office and a distribution node, and at least one multiplicity of single-mode fibers, referred to as "distribution fibers," for transmission between the distribution node and a multiplicity of optical network units (ONUs). Transmissions are exchanged between the primary and distribution fibers via at least one optical coupler located at the distribution node. The network is passive in the sense that all monitoring of the transmission media and the ONUs can be performed at the central office, without active intervention at remote locations. The network includes a monitor and a multiplicity of bypass lines by means of which at least a portion of inbound signals from the distribution fibers are transmitted to the monitor without passing through the optical coupler at the distribution node.
| Inventors: | Cohen; Leonard George (Atlanta, GA) |
| Assignee: | Lucent Technologies Inc. (Murray Hill, NJ) |
| Appl. No.: | 660967 |
| Filed: | June 12, 1996 |
| Patent No.: | Issued: | Appl. No.: | Filed: | |
| Reissue of: | 05321541 | Jun 14, 1994 | 857365 | Mar 25, 1992 |
| Current U.S. Class: | 398/82; 398/7; 398/144; 398/167.5; 398/168 |
| Intern'l Class: | H04B 010/20; H04J 014/02 |
| Field of Search: | 359/110,124,125,127,177,178,161,121 |
| 4306313 | Dec., 1981 | Baldwin | 179/175. |
| 4580872 | Apr., 1986 | Bhatt et al. | 350/96. |
| 4590619 | May., 1986 | Winzer | 455/612. |
| 4709418 | Nov., 1987 | Fox et al. | 455/612. |
| 4712859 | Dec., 1987 | Albanese et al. | 350/96. |
| 4902086 | Feb., 1990 | Henry et al. | 350/96. |
| 4977593 | Dec., 1990 | Ballance | 380/1. |
| 5202780 | Apr., 1993 | Fussganger | 359/125. |
| 5285305 | Feb., 1994 | Cohen et al. | 359/110. |
| Foreign Patent Documents | |||
| 0386482A | Jun., 1990 | EP. | |
| 0129541 | May., 1989 | JP. | |
Hill, A. M. "An Experimental Broadband And Telephony Passive Optical Network", Communications: Connecting The Future, vol. 3 of 3, pp. 1856-1860 (1990). Keeble, P. et al. "Optical Performance Specification And Measurement Of Local Loop Passive Optical Networks", Communications--Raising To The Heights, vol. 1, pp. 319-322 (1991). Wagner S. S. et al. "Technology and System Issues For A WDM-Based Fiber Loop Architecture" Journal of Lightwave Technology, vol. 7, No. 11 pp. 1759-1768 (1989). C. Dragone, et al., "Efficient Multichannel Integrated Optics Star Coupler on Silicon," IEEE Photon. Tech. Lett. 1, Aug. 1989, pp. 241-243. C. Dragone, "An N.times.N Optical Multiplexer Using a Planar Arrangement of Two Star Couplers," IEEE Photon. Tech. Lett. 3, Sep. 1991, pp. 812-815. C. Dragone, et al., "Integrated Optics N.times.N Multiplexer on Silicon," IEEE Photon. Tech. Lett. 3, Oct. 1991, pp. 896-899. J. R. Stern, et al., "Passive Optical Local networks for Telephony Applications and Beyond," Elect. Lett. 23, (1987), pp. 1255-1257. I. Sankawa, "Fault Location Technique for In-Service Branched Optical Fiber Networks," IEEE Photon. Tech. Lett. 2, (1990), pp. 766-768. I Sankawa, et al., "Fiber Measurement Techniques For Passive Double Star Networks," Third IEEE Workshop on Local Optical Networks, (Sep. 24, 1991), pp. 4.2-1 to 4.2-10. K. Kumozaki et al., "A Study on the Maintenance Aspect of Passive Double Star Networks For Local Loops," IEEE Workshop on Local Optical Networks (May 1990), Section 4.3/1. F. Yamamoto et al., "In-Service Remote Access and Measurement Methods for Passive Double Star Networks," ISBN: 0-7803-1249-X, pp. 5.02.01-5.02.6. |
TABLE 1
______________________________________
ONU ONU OTDR
COMPONENT .DELTA. SIG
.DELTA. SIG
.DELTA. GHOST
RT
______________________________________
Electromechanical
-- -- -- 1.0
switch
Coarse WDM (OTDR
0.6 -- -- 1.2
access)
Coarse WDM (coupler
0.6 -- -- 1.2
bypass)
SiOB Dense (SiOB)
-- -- -- 5.0
Coarse WDM (SiOB)
0.6 0.6 0.3 1.2
(OTDR access)
Coarse WDM (Fi-end
0.5 -- -- --
filter) (recvr pigtail
reflector)
10 dB coupler (SiOB)
0.75 0.75 10.0 --
(delay line access)
16 .times. 16 Star Coupler
-- -15.0.sup.(1)
-15.0.sup.(1)
--
16 SM .fwdarw. 1 MM
-- 5.0 2.0 --
(delay line interconnect)
2 .times. 1 MM fiber combiner
-- 3.0 3.0 `
(connect loopback fiber)
Fiber loss -- -- -- 8.0
(Outside plant)
Splice loss -- -- -- 11.2
(Outside plant)
TOTAL LOSS (dB)
3.05 -5.65 0.6 28.8
DBR (Power .apprxeq. 10 mw)
DBR/w OA (Power .apprxeq. 150 mw)
______________________________________
.sup.(1) signal loss through 16 .times. 16 coupler .apprxeq. 15 dB resume
MMF interconnect loss .apprxeq. 3 dB
.sup.(2) ONU MON .DELTA. SIG bypasses 16 .times. 16 star coupler
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