IP Library Granted Patent US 9,444,688
Granted Patent B2
US 9,444,688 · App. 14/349,552 · Granted Sep 13, 2016

Receiver-based methods, systems, and computer readable media for controlling TCP sender behavior in mobile communications networks with large buffer sizes

Inventors: Kyunghan Lee (Cary, NC); Injong Rhee (Apex, NC)
Assignee: North Carolina State University
H04L41/0896H04L47/225H04W28/0289H04W48/16H04W48/18
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Quick Facts
Patent No.
US 9,444,688
App. No.
14/349,552
Granted
Sep 13, 2016
Kind
B2
Abstract

Receiver-based methods for controlling TCP sender behavior in cellular communications networks with large buffer sizes are disclosed. One method includes, at a TCP receiver, receiving packets from a TCP sender. The method further includes determining, based on the packets, a minimum round trip time and a moving average round trip time for cellular network carrying the packets between a TCP sender and a TCP receiver. The method further includes adaptably adjusting a received window size to advertise to the TCP sender based on the minimum round trip time and the moving average round trip time. The method further includes advertising the adjusted received window sizes to the TCP sender.

Claims (30)

1. A method for use at a TCP receiver for controlling TCP sender behavior in cellular communications networks with large buffer sizes, the method comprising:

at a TCP receiver:

receiving packets from a TCP sender; continually determining, based on the packets, a minimum round trip time and a moving average round trip time for a cellular network carrying the packets between the TCP sender and the TCP receiver;

adaptively adjusting a receive window size to advertise to the TCP sender based on the minimum round trip time and the moving average round trip time, wherein adaptively adjusting the receive window size includes increasing the receive window size if a ratio of the minimum round trip time and the moving average round trip time is less than a threshold value; and

advertising the adjusted receive window sizes to the TCP sender.

2. The method of claim 1 wherein the TCP receiver is implemented on a mobile handset and the TCP sender is implemented on a cellular base station or a server located in the Internet.

3. A method for use at a TCP receiver for controlling TCP sender behavior in cellular communications networks with large buffer sizes, the method comprising:

at a TCP receiver:

receiving packets from a TCP sender; continually determining, based on the packets, a minimum round trip time and a moving average round trip time for a cellular network carrying the packets between the TCP sender and the TCP receiver;

adaptively adjusting a receive window size to advertise to the TCP sender based on the minimum round trip time and the moving average round trip time; and

advertising the adjusted receive window sizes to the TCP sender, wherein adaptively adjusting the receive window size includes decreasing the receive window size if a ratio of the minimum round trip time and the moving average round trip time is more than a threshold value.

4. A system for use at a TCP receiver for controlling TCP sender behavior in cellular communications networks with large buffer sizes, the system comprising:

a TCP receiver for receiving packets from a TCP sender; and

a dynamic receive window size adjustment module for continually determining, based on the packets, a minimum round trip time and a moving average round trip time for a cellular network carrying the packets between the TCP sender and the TCP receiver, adaptively adjusting a receive window size to advertise to the TCP sender based on the minimum round trip time and the moving average round trip time, and for advertising the adjusted receive window size to the TCP sender, wherein adaptively adjusting the receive window size includes increasing the receive window size if a ratio of the minimum round trip time and the average round trip time is less than a threshold value.

5. The system of claim 4 wherein the TCP sender is implemented on a cellular base station or on a server located in the Internet and wherein the TCP receiver is implemented on a mobile handset.

6. A system for use at a TCP receiver for controlling TCP sender behavior in cellular communications networks with large buffer sizes, the system comprising:

a TCP receiver for receiving packets from a TCP sender; and

a dynamic receive window size adjustment module for continually determining, based on the packets, a minimum round trip time and a moving average round trip time for a cellular network carrying the packets between the TCP sender and the TCP receiver, adaptively adjusting a receive window size to advertise to the TCP sender based on the minimum round trip time and the moving average round trip time, and for advertising the adjusted receive window size to the TCP sender, wherein adaptively adjusting the receive window size includes decreasing the receive window size if a ratio of the minimum round trip time and the average round trip time is more than a threshold value.

7. A non-transitory computer readable medium comprising computer executable instructions that when executed by the processor of a computer control the computer to perform steps comprising:

at a TCP receiver:

receiving packets from a TCP sender; continually determining, based on the packets, a minimum round trip time and a moving average round trip time for a cellular network carrying the packets between the TCP sender and the TCP receiver;

adaptively adjusting a receive window size to advertise to the TCP sender based on the minimum round trip time and the moving average round trip time, wherein adaptively adjusting the receive window size includes increasing the receive window size if the a ratio of the minimum round trip time and the moving average round trip time is less than a threshold value; and

advertising the adjusted receive window sizes to the TCP sender.

8. The non-transitory computer readable medium of claim 7 wherein the TCP receiver is implemented on a mobile handset and the TCP sender is implemented on a cellular base station or a server located in the Internet.

9. The non-transitory computer readable medium of claim 7 wherein the TCP receiver is implemented on a mobile handset and the TCP sender is implemented on a cellular base station or a server located in the Internet.

10. A non-transitory computer readable medium comprising computer executable instructions that when executed by the processor of a computer control the computer to perform steps comprising:

at a TCP receiver:

receiving packets from a TCP sender; continually determining, based on the packets, a minimum round trip time and a moving average round trip time for a cellular network carrying the packets between the TCP sender and the TCP receiver;

adaptively adjusting a receive window size to advertise to the TCP sender based on the minimum round trip time and the moving average round trip time, wherein adaptively adjusting the receive window size includes decreasing the receive window size if a ratio of the minimum round trip time and the moving average round trip time is more than a threshold value; and

advertising the adjusted receive window sizes to the TCP sender.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 9, 2014
From: LEE, KYUNGHAN; RHEE, INJONG
To: NORTH CAROLINA STATE UNIVERSITY
Reel/Frame 033925/0024 →
Continuity (3)
Provisional Application 61543128 · Oct 4, 2011
Provisional Application 61648056 · May 16, 2012
Related Publication 20140241163A1 · Aug 28, 2014