IP Library Granted Patent US 8,768,163
Granted Patent B2
US 8,768,163 · App. 13/219,123 · Granted Jul 1, 2014

Detecting rogue ONU, OLT and PON system

Inventors: Geun Yong Kim (Goyang-si, KR); Sung Chang Kim (Gwangju-si, KR); Dongsoo Lee (Gwangju-si, KR); Mun Seob Lee (Daejeon, KR); Hark Yoo (Gwangju-si, KR); Youngsuk Lee (Gwangju-si, KR); Sim Kwon Yoon (Gwangju-si, KR); Jong Deog Kim (Daejeon, KR)
Assignee: Electronics and Telecommunications Research Institute
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Quick Facts
Patent No.
US 8,768,163
App. No.
13/219,123
Granted
Jul 1, 2014
Kind
B2
Abstract

A method and apparatus of detecting a rogue optical network unit (ONU) is provided. An optical line terminal (OLT) detects an abnormal upstream transmission to determine a plurality of rogue ONU candidates, and transmits a sleep allow message instructing a transition to a sleep mode to each of the plurality of rogue ONU candidates. The OLT detects the rogue ONU among the plurality of rogue ONU candidates based on upstream transmissions from the plurality of rogue ONU candidates in the sleep mode. Since the detection of the rogue ONU is performed in the sleep mode, the remaining ONUs can transition from the sleep mode to the normal mode after the detection of the rogue ONU is completed, thereby making it possible to rapidly resume upstream communication.

Claims (35)

1. A method of detecting a rogue optical network unit (ONU) in a passive optical network (PON), comprising:

configuring parameters for a sleep mode with a plurality of rogue ONU candidates based on an ONT management and control interface (OMCI);

detecting an abnormal upstream transmission to determine the plurality of rogue ONU candidates;

transmitting a sleep allow message instructing a transition to the sleep mode to each of the plurality of rogue ONU candidates; and

detecting the rogue ONU among the plurality of rogue ONU candidates based on upstream transmissions from the plurality of rogue ONU candidates in the sleep mode, wherein the sleep mode includes a dozing mode in which a transmitter of each rogue ONU candidate is turned-on or turned-off and a cyclic sleep mode in which a transmitter and a receiver of each rogue ONU candidate are turned-on or turned-off.

2. The method of claim 1 , further comprising:

transmitting upstream bandwidth allocation information to the plurality of rogue ONU candidates,

wherein the rogue ONU is detected by checking whether the plurality of rogue ONU candidates transmit the upstream in accordance with the bandwidth allocation information.

3. The method of claim 2 , wherein a rogue ONU candidate which transmits the upstream inconsistently with the bandwidth allocation information is detected as the rogue ONU.

4. The method of claim 1 , wherein the sleep allow message is sequentially transmitted to each of the plurality of rogue ONU candidates, whereby each of the plurality of rogue ONU candidates transitions to the sleep mode and transmits the upstream at different time interval.

5. The method of claim 1 , further comprising:

instructing remaining ONUs, not the rogue ONU, among the plurality of rogue ONU candidates, to transition from the sleep mode to a normal mode.

6. An optical line terminal (OLT) of detecting a rogue optical network unit (ONU) in a passive optical network (PON) system, comprising:

an alarm unit for detecting an abnormal upstream transmission; and

a rogue ONU detector for detecting a rogue ONU,

wherein the rogue ONU detector is configured to:

determine a plurality of ONU candidates based on the abnormal upstream transmission,

transmit a sleep allow message instructing a transition to a sleep mode to each of the plurality of rogue ONU candidates, and

detect the rogue ONU among the plurality of rogue ONU candidates based on upstream transmissions from the plurality of rogue ONU candidates in the sleep mode,

wherein the sleep mode includes a dozing mode in which a transmitter of each rogue ONU candidate is turned-on or turned-off and a cyclic sleep mode in which a transmitter and a receiver of each rogue ONU candidate are turned-on or turned-off.

7. The OLT of claim 6 , wherein the rogue ONU detector is configured to transmit upstream bandwidth allocation information to the plurality of rogue ONU candidates, wherein the rogue ONU is detected by checking whether the plurality of rogue ONU candidates transmit the upstream in accordance with the bandwidth allocation information.

8. The OLT of claim 7 , wherein the rogue ONU detector is configured to detect a rogue ONU candidate which transmits the upstream inconsistently with the bandwidth allocation information as the rogue ONU.

9. The OLT of claim 6 , wherein the rogue ONU detector is configured to transmit the sleep allow message sequentially to each of the plurality of rogue ONU, whereby each of the plurality of rogue ONU candidates transitions to the sleep mode and transmits the upstream at different time interval.

10. A passive optical network (PON) system detecting a rogue optical network unit (ONU), comprising:

one or more ONUs for transmitting upstreams; and

an optical line terminal (OLT) for detecting a rogue ONU and configured to:

configure parameters for a sleep mode with a plurality of rogue ONU candidates based on an ONT management and control interface (OMCI);

detect an abnormal upstream transmission to determine the plurality of rogue ONU candidates;

transmit a sleep allow message instructing a transition to the sleep mode to each of the plurality of rogue ONU candidates; and

detect the rogue ONU among the plurality of rogue ONU candidates based on upstream transmissions from the plurality of rogue ONU candidates in the sleep mode,

wherein the sleep mode includes a dozing mode in which a transmitter of each rogue ONU candidate is turned-on or turned-off and a cyclic sleep mode in which a transmitter and a receiver of each rogue ONU candidate are turned-on or turned-off.

11. The PON system of claim 10 , wherein the OLT is configured to transmit upstream bandwidth allocation information to the plurality of rogue ONU candidates, wherein the rogue ONU is detected by checking whether the plurality of rogue ONU candidates transmit the upstream in accordance with the bandwidth allocation information.

12. The PON system of claim 11 , wherein the OLT is configured to detect a rogue ONU candidate which transmits the upstream inconsistently with the bandwidth allocation information as the rogue ONU.

13. The PON system of claim 10 , wherein the OLT is configured to transmit the sleep allow message sequentially to each of the plurality of rogue ONU, whereby each of the plurality of rogue ONU candidates transitions to the sleep mode and transmits the upstream at different time interval.

14. The PON system of claim 10 , wherein the OLT is configured to instruct the remaining ONUs, not the rogue ONU, among the plurality of rogue ONU candidates, to transition from the sleep mode to a normal mode.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 26, 2011
From: KIM, GEUN YONG; KIM, SUNG CHANG; LEE, DONGSOO; LEE, MUN SEOB; YOO, HARK; LEE, YOUNGSUK; YOON, SIM KWON; KIM, JONG DEOG
To: ELECTRONICS AND TELECOMMUNICATIONS RESEARCH INSTITUTE
Reel/Frame 026817/0616 →
Priority Claims (1)
KR 10-2010-0133177 · Dec 23, 2010 · national
Continuity (1)
Related Publication 20120163808A1 · Jun 28, 2012