IP Library › Granted Patent US 8,984,191
Granted Patent B2
US 8,984,191 · App. 13/421,738 · Granted Mar 17, 2015

Automated data center network patching system

Inventor: Timothy James Cox (Oak Point, TX)
Assignee: Cisco Technology, Inc.
H04L41/0806H04L41/0843H04L41/12H04L41/145H04Q1/13
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Quick Facts
Patent No.
US 8,984,191
App. No.
13/421,738
Granted
Mar 17, 2015
Kind
B2
Abstract

In one embodiment, a computer implemented method is provided for generating a network patch plan. The method can include selecting at least two devices to be interconnected. The method can include selecting a role for each of the at least two devices. The method can include identifying a patching template. The method can include determining a priority order of available logical ports associated with each of the at least two devices. The method can include generating a patch plan based on the priority order.

Claims (34)

1. A patch plan system comprising: a memory; and a processor in communication with the memory, the memory including computer code executable with the processor, wherein the computer code is configured to:

retrieve at least two devices to be interconnected;

retrieve a role for each of the at least two devices;

identify a patching template;

determine a priority order of available device ports associated with each of the at least two devices, the available device ports on the at least two devices being identified by determination of device ports on the at least two devices that are not being consumed; and

generate a patch plan based on the priority order.

2. The patch plan system of claim 1 , wherein the patch plan comprises instructions to interconnect the at least two devices, the instructions comprising one or more patch cords needed to interconnect the at least two devices.

3. The patch plan system of claim 1 , wherein the patching template is identified based on the at least two devices and the role for the each of the at least two devices.

4. The patch plan system of claim 1 , the computer code further configured to define at least one logic port for each of the at least two devices.

5. The patch plan system of claim 1 , the computer code further configured to determine at least one cabling path between the at least two devices.

6. The patch plan system of claim 5 , the computer code further configured to provide a notification when the at least one cabling path is not determined.

7. A computer implemented method for generating a network patch plan, comprising:

retrieving at least two devices to be interconnected;

retrieving a role for each of the at least two devices;

identifying a patching template based on the role for the each of the at least two devices;

determining a priority order of available logical ports associated with each of the at least two devices, wherein the available logical ports associated with each of the at least two devices are identified by determination of ports on the at least two devices that are not being consumed; and

generating a patch plan based on the priority order.

8. The computer implemented method of claim 7 , wherein each of the available logical ports is associated with a physical port of the respective one of the at least two devices.

9. The computer implemented method of claim 7 , wherein the patch plan comprises at least one image illustrating how to interconnect the at least two devices.

10. The computer implemented method of claim 7 , wherein the step of identifying a patching template based on the at least two devices and the role for the each of the at least two devices.

11. The computer implemented method of claim 7 , wherein each of the at least two devices is associated with at least one role.

12. The computer implemented method of claim 7 , further comprising determining at least one cabling path between the at least two devices.

13. A tangible computer-readable media comprising a plurality of instructions for execution with a processor, the tangible computer-readable medium comprising:

instructions executable to retrieve at least two devices to be interconnected;

instructions executable to retrieve a role for each of the at least two devices;

instructions executable to identify a patching template;

instructions to identify available logical ports associated with each of the at least two devices by determination of ports on the at least two devices that are not being consumed;

instructions executable to determine a priority order of the available logical ports associated with each of the at least two devices; and

instructions executable to generate a patch plan based on the priority order.

14. The one or more tangible computer-readable media of claim 13 , further comprising instructions executable to determine at least one cabling path between the at least two devices.

15. The one or more tangible computer-readable media of claim 14 , further comprising instructions executable to generate a patch plan based on the priority order and the least one cabling path.

16. The one or more tangible computer-readable media of claim 13 , further comprising instructions executable to associate at least one link type with each of the at least two devices.

17. The one or more tangible computer-readable media of claim 13 , further comprising instructions executable to associate at least one logical port with each of the at least two devices.

18. The one or more tangible computer-readable media of claim 17 , further comprising instructions executable to assign a priority order to each of at least one logical port.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 16, 2012
From: COX, TIMOTHY JAMES
To: CISCO TECHNOLOGY, INC.
Reel/Frame 027877/0353 →
Continuity (1)
Related Publication 20130246673A1 · Sep 19, 2013