IP Library Granted Patent US 8,699,354
Granted Patent B2
US 8,699,354 · App. 11/314,678 · Granted Apr 15, 2014

Method and apparatus for detecting a fault on an optical fiber

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Quick Facts
Patent No.
US 8,699,354
App. No.
11/314,678
Granted
Apr 15, 2014
Kind
B2
Abstract

The mode of operation in which a port is configured to operate may be selected so that the manner in which the port will interpret a loss of signal on a receive fiber may be specified. In an immediate mode, the port will interpret a loss of signal on a receive fiber as an indication of a fault on the transmit fiber (or interfaces associated with the transmit fiber) and will immediately shut its transmit interface down. In a multiple cycle detection mode, the port will not immediately interpret a loss of signal on a receive fiber as an indication of a fault on the transmit fiber, but rather will begin monitoring the receive fiber to look for a specified loss of signal pattern on the receive fiber. In this mode the port will interpret a repetitive loss of signal on the receive fiber as an indication of a fault on the transmit fiber. By providing a mode selector, the manner in which the ports are configured to operate may be adjusted individually, as a group, or globally.

Claims (20)

1. A method for detecting a fault on a first optical fiber connected to a transmit interface of a port, the method comprising:

receiving a command identifying a particular fault detection mode of a plurality of fault detection modes to be associated with the port;

receiving, at a receive interface of the port, a loss of signal indication on a second optical fiber connected to the receive interface of the port;

interpreting the received loss of signal indication on the second optical fiber according to the particular fault detection mode associated with the port based on the command, the particular fault detection mode comprising an immediate mode wherein the received loss of signal indication is immediately interpreted as a fault on the first optical fiber connected to the transmit interface of the port or a multiple cycle detection mode wherein the received loss of signal indication at the receive interface on the second optical fiber is received for a particular number of cycles before being interpreted as the fault on the first optical fiber connected to the port, wherein the command identifies the multiple cycle detection mode and the particular number of cycles, wherein when the particular fault detection mode associated with the port is set to the immediate mode, interpreting the received loss of signal indication is performed so that any loss of signal indication on the second optical fiber is interpreted to indicate the fault on the first optical fiber connected to the port.

2. A network element, comprising:

a plurality of ports, each of the ports being connectable to a respective transmit fiber and a respective receive fiber; and

programmable logic configured to receive, for each port of the plurality of ports, an individual command identifying a particular fault detection mode of a plurality of fault detection modes to be associated with each port, said particular fault detection mode determining how each port will react after receipt of a loss of signal indication on the respective receive fiber connected to each port by specifying whether the receipt of the loss of signal indication will be interpreted as an immediate indication of a change in a status of the respective transmit fiber connected to each port or whether the receipt of the loss of signal indication on the respective receive fiber must exist for a particular period of time before being interpreted as an indication of the change in the status of the respective transmit fiber connected to each port, wherein a first particular fault detection mode is an immediate mode and a second particular fault detection mode is a multiple cycle detection mode that enables each port associated therewith to interpret a repetitive loss of signal indication pattern on the respective receive fiber connected to each associated port as an indication of a fault associated with the respective transmit fiber connected to each associated port.

3. The network element of claim 2 , wherein the immediate mode enables each port associated therewith to interpret the loss of signal indication on the respective receive fiber connected to each associated port as an immediate indication of a fault associated with the respective transmit fiber connected to each associated port.

4. The network element of claim 2 , wherein the repetitive loss of signal indication pattern has an oscillation period and duty cycle, and wherein the programmable logic further enables a number of oscillations required to interpret the repetitive loss of signal indication pattern as the indication of a fault to be adjusted.

5. The network element of claim 2 , wherein the programmable logic is configured to enable the particular fault detection mode to be selected for groups of ports of the plurality of ports.

6. The network element of claim 2 , wherein groups of ports of the plurality of ports reside on Input/Output (I/O) cards, and wherein the programmable logic is configured to enable the particular fault detection mode to be selected for the ports on a per-I/O card basis.

7. The network element of claim 2 , further comprising a switch fabric interconnecting the plurality of ports.

8. A network element, comprising:

a plurality of ports, each of the ports being connectable to a respective transmit fiber and a respective receive fiber; and

programmable logic configured to receive, for each port of the plurality of ports, an individual command identifying a particular fault detection mode of a plurality of fault detection modes to be associated with each port, said particular fault detection mode determining how each port will react after receipt of a loss of signal indication on the respective receive fiber connected to each port by specifying whether the receipt of the loss of signal indication will be interpreted as an immediate indication of a change in a status of the respective transmit fiber connected to each port or whether the receipt of the loss of signal indication on the respective receive fiber must exist for a particular period of time before being interpreted as an indication of the change in the status of the respective transmit fiber connected to each port, wherein a first particular fault detection mode is an immediate mode and a second particular fault detection mode is a multiple cycle detection mode, wherein the immediate mode enables each port associated therewith to interpret the loss of signal indication on the respective receive fiber connected to each associated port as an immediate indication of a fault associated with the respective transmit fiber connected to each associated port.

9. The network element of claim 8 , wherein the multiple cycle detection mode enables each port associated therewith to interpret a repetitive loss of signal indication pattern on the respective receive fiber connected to each associated port as an indication of a fault associated with the respective transmit fiber connected to each associated port.

10. The network element of claim 8 , wherein the repetitive loss of signal indication pattern has an oscillation period and duty cycle, and wherein the programmable logic further enables a number of oscillations required to interpret the repetitive loss of signal indication pattern as the indication of a fault to be adjusted.

11. The network element of claim 8 , wherein the programmable logic is configured to enable the particular fault detection mode to be selected for groups of ports of the plurality of ports.

12. The network element of claim 8 , wherein groups of ports of the plurality of ports reside on Input/Output (I/O) cards, and wherein the programmable logic is configured to enable the particular fault detection mode to be selected for the ports on a per-I/O card basis.

13. The network element of claim 8 , further comprising a switch fabric interconnecting the plurality of ports.

Assignments (8)
RELEASE OF SECURITY INTEREST Recorded Oct 26, 2020
From: JEFFERIES FINANCE LLC
To: RPX CLEARINGHOUSE LLC
Reel/Frame 054305/0505 →
SECURITY INTEREST Recorded Jun 29, 2018
From: RPX CLEARINGHOUSE LLC
To: JEFFERIES FINANCE LLC
Reel/Frame 046485/0644 →
RELEASE (REEL 038041 / FRAME 0001) Recorded Jan 2, 2018
From: JPMORGAN CHASE BANK, N.A.
To: RPX CORPORATION; RPX CLEARINGHOUSE LLC
Reel/Frame 044970/0030 →
SECURITY AGREEMENT Recorded Mar 9, 2016
From: RPX CORPORATION; RPX CLEARINGHOUSE LLC
To: JPMORGAN CHASE BANK, N.A., AS COLLATERAL AGENT
Reel/Frame 038041/0001 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 9, 2015
From: ROCKSTAR CONSORTIUM US LP; ROCKSTAR CONSORTIUM LLC; BOCKSTAR TECHNOLOGIES LLC; CONSTELLATION TECHNOLOGIES LLC; MOBILESTAR TECHNOLOGIES LLC; NETSTAR TECHNOLOGIES LLC
To: RPX CLEARINGHOUSE LLC
Reel/Frame 034924/0779 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 10, 2013
From: ROCKSTAR BIDCO, LP
To: ROCKSTAR CONSORTIUM US LP
Reel/Frame 031749/0498 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 28, 2011
From: NORTEL NETWORKS LIMITED
To: ROCKSTAR BIDCO, LP
Reel/Frame 027143/0717 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 21, 2005
From: PATEL, JAGDISH S.; KAMBLE, KESHAV; FOSTER, GREGORY
To: NORTEL NETWORKS LIMITED
Reel/Frame 017408/0275 →