Invention Grant
- Patent Title: Method and network architecture for upgrading legacy passive optical network to wavelength division multiplexing passive optical network based next-generation passive optical network
- Patent Title (中): 将传统无源光网络升级为波分复用无源光网络的下一代无源光网络的方法和网络架构
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Application No.: US12513741Application Date: 2006-11-14
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Publication No.: US07773838B2Publication Date: 2010-08-10
- Inventor: Chang-Hee Lee , Ki-Man Choi , Sil-Gu Mun , Jung-Hyung Moon , Hoon-Keun Lee
- Applicant: Chang-Hee Lee , Ki-Man Choi , Sil-Gu Mun , Jung-Hyung Moon , Hoon-Keun Lee
- Applicant Address: KR Seoul
- Assignee: LG-Nortel Co., Ltd.
- Current Assignee: LG-Nortel Co., Ltd.
- Current Assignee Address: KR Seoul
- Agency: Ked & Associates, LLP
- Priority: KR10-2006-0109544 20061107
- International Application: PCT/KR2006/004767 WO 20061114
- International Announcement: WO2008/056843 WO 20080515
- Main IPC: G02B6/28
- IPC: G02B6/28

Abstract:
The present invention discloses a network architecture for upgrading a legacy time division multiplexing-passive optical network (TDM-PON) to a wavelength division multiplexing-passive optical network (WDM-PON) based next-generation passive optical network (next-generation PON), wherein the legacy TDM-PON comprises: a central office (CO) having a first optical line termination (OLT); a remote node (RN) having a splitter; a single mode fiber (SMF) connecting the first OLT and the splitter; and a first group of one or more optical network terminations (ONTs) being connected to the splitter by a first group of one or more distribution fibers, and wherein the network architecture further comprises: in case that the next-generation PON is a WDM-PON, a first apparatus for combining and splitting wavelength bands being positioned between the SMF and the first OLT, in order to add a second OLT to be used for the WDM-PON within the CO or within another CO which is located in a position different from the CO, while sharing the SMF; a second apparatus for combining and splitting wavelength bands being positioned at a front terminal of the splitter; and an arrayed waveguide grating (AWG) being connected to the second apparatus for combining and splitting wavelength bands within the RN, and being connected to a second group of one or more ONTs by a second group of one or more distribution fibers within the RN or within another RN which is located in a position different from the RN.
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