IP Library Granted Patent US 9,923,987
Granted Patent B2
US 9,923,987 · App. 15/435,281 · Granted Mar 20, 2018

Optimization of enhanced network links

Inventors: Gary D. Morton (Erie, CO); Paul R. Thornton (Tupelo, MS); Ryan Pressley (Saltillo, MS); Robert John Shaughnessy (Springfield, VA); Mark Vange (Scottsdale, AZ); Mark Plumb (Toronto, CA); Michael Kouts (Toronto, CA); Glenn Sydney Wilson (Toronto, CA)
Assignee: Circadence Corporation
H04L67/2823H04L41/5025H04L69/08
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Quick Facts
Patent No.
US 9,923,987
App. No.
15/435,281
Granted
Mar 20, 2018
Kind
B2
Abstract

A method and apparatus for dynamic network link acceleration provides a managed communication link for accelerated and reliable network communication between a client and other network devices. In one or more embodiments, a client computing device which generates communication packets of a first type is enhanced with a front end mechanism which selectively encodes the data packets into packets of a second type. The data packets which are encoded into a second type are transmitted over a managed communication link which may provide error correction, security, quality of service, and other services including acceleration of communications.

Claims (25)

1. A method for dynamically maintaining communications between a mobile communication device and a server through an enhanced communications link when network connection types with said mobile communication device change, comprising the steps of:

providing a back-end comprising an interface to said server wherein said back-end exchanges data with said server in data packets of a first type and wherein said back-end is configured to communicate data with said mobile communication device over said enhanced communication link in one or more data packets of a second type, which second type differs from said first type;

receiving at said back-end one or more first configuration packets from said mobile communication device, said one or more first configuration packets comprising first communication link parameters based upon a first network connection type determined by said mobile communication device;

using, at said back-end, said first communication link parameters received from said mobile communication device to establish said enhanced communications link with said mobile communication device, said enhanced communications link having first settings based upon said one or more first communication link parameters;

receiving at said back-end one or more second configuration packets from said mobile communication device, said one or more second configuration packets comprising second communication link parameters based upon a new second network connection type determined by said mobile communication device;

using, at said back-end, said second communication link parameters received from said mobile communication device to adjust settings of said enhanced communications link from said first settings to second settings in order to maintain said enhanced communications link between said back-end and said mobile communication device; and

transmitting one or more data packets of said second type from said back-end to said mobile communication device.

2. The method in accordance with claim 1 wherein said first and second network connection types are selected from the group consisting of: Wi-Fi, 3G cellular and 4G cellular.

3. The method in accordance with claim 1 wherein said first and second communication link parameters comprise a maximum data transfer rate.

4. The method in accordance with claim 1 wherein said first and second communication link parameters comprise an aggression level.

5. The method in accordance with claim 1 wherein said first and second communication link parameters comprise a universally unique identifier for said mobile communication device.

6. The method in accordance with claim 1 further comprising the step of exchanging quality of service information between said back-end and said mobile communication device over said enhanced communications link.

7. The method in accordance with claim 1 wherein said mobile communication device comprises a mobile phone, a PDA, a table or a laptop computing device.

8. The method in accordance with claim 1 wherein said back-end is implemented by computer readable code executed by said server.

9. A system for dynamically maintaining communications between a mobile communication device and a server through an enhanced communications link when network connection types with said mobile communication device change, comprising:

a back-end comprising an interface to said server wherein said back-end exchanges data with said server in data packets of a first type;

an enhanced communications link between said back-end and said mobile communication device, said enhanced communications link transporting data between said back-end and said mobile communication device in one or more data packets of a second type, which second type differs from said first type;

said back-end configured to receive one or more first configuration packets from said mobile communication device, said one or more first configuration packets comprising first communication link parameters based upon a first network connection type determined by said mobile communication device, to use said first communication link parameters received from said mobile communication device to establish said enhanced communications link with said mobile communication device, said enhanced communications link having first settings based upon said one or more first communication link parameters; and

said back-end configured to receive one or more second configuration packets from said mobile communication device, said one or more second configuration packets comprising second communication link parameters based upon a new second network connection type determined by said mobile communication device and use said second communication link parameters received from said mobile communication device to adjust settings of said enhanced communications link from said first settings to second settings in order to maintain said enhanced communications link between said back-end and said mobile communication device.

10. The system in accordance with claim 9 wherein said back-end is implemented via computer readable code executed by said server.

11. The system in accordance with claim 9 further comprising a communication link between said back-end and said server.

12. The system in accordance with claim 9 wherein said enhanced communications link is at least partially a wireless communication link.

13. The system in accordance with claim 9 wherein said data packets of said first type comprise TCP packets.

14. The system in accordance with claim 9 wherein said back-end communicates with a front-end implemented by said mobile communication device.

15. The system in accordance with claim 9 wherein said enhanced communications link is formed between said back-end and said front-end.

Assignments (4)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 30, 2021
From: CIRCADENCE CORPORATION
To: SONS OF INNOVATION LLC
Reel/Frame 056106/0493 →
SECURITY INTEREST Recorded Dec 20, 2018
From: CIRCADENCE CORPORATION
To: RUNWAY GROWTH CREDIT FUND INC.
Reel/Frame 047973/0029 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 2, 2017
From: VANGE, MARK; PLUMB, MARC; KOUTS, MICHAEL; WILSON, GLENN S.
To: CIRCADENCE CORPORATION
Reel/Frame 043750/0913 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 2, 2017
From: THORNTON, PAUL R.; PRESSLEY, RYAN; SHAUGHNESSY, ROBERT JOHN; MORTON, GARY D.
To: CIRCADENCE CORPORATION
Reel/Frame 043750/0974 →
Continuity (9)
Continuation 14672425 · Mar 30, 2015
Continuation 14219299 · Mar 19, 2014
Continuation In Part 13486347 · Jun 1, 2012
Continuation In Part 12584938 · Sep 14, 2009
Continuation In Part 11346767 · Feb 3, 2006
Division 09835876 · Apr 16, 2001
Provisional Application 61803657 · Mar 20, 2013
Provisional Application 60197490 · Apr 17, 2000
Related Publication 20170163757A1 · Jun 8, 2017