IP Library › Granted Patent US 10,587,523
Granted Patent B2
US 10,587,523 · App. 15/249,612 · Granted Mar 10, 2020

Bandwidth Management

Inventors: Senthil Kumar Mani (Hyderabad, IN); Bala Manikya Prasad Puram (Hyderabad, IN)
Assignee: Imagination Technologies Limited
H04L47/25H04L29/06027H04L41/0896H04L43/0882H04L43/0894H04L43/10H04L65/1083H04L65/602H04L65/80H04N21/2335H04N21/2343H04N21/2402H04N21/2662H04N21/44209H04N21/6373
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Quick Facts
Patent No.
US 10,587,523
App. No.
15/249,612
Granted
Mar 10, 2020
Kind
B2
Abstract

A video packet stream is transmitted from a transmitting device to a receiving device over a network, by transmitting an audio packet stream to the receiving device, determining a measure of network bandwidth in dependence on one or more metrics associated with receiving the audio packet stream at the receiving device, and enabling a video packet stream in dependence on the determined measure.

Claims (44)

1. A method of transmitting a video packet stream at a video stream transmission bitrate from a transmitting device to a receiving device over a network, the method comprising, at the transmitting device:

transmitting an audio packet stream to the receiving device at an audio stream transmission bitrate;

determining a measure of network bandwidth in dependence on one or more metrics associated with receiving the audio packet stream at the receiving device; and

determining whether the measure indicates sufficient available network bandwidth to support an audio stream with a higher transmission bitrate than the audio stream transmission bitrate and, if so, increasing the audio stream transmission bitrate;

if the audio stream transmission bitrate has increased such that the audio stream is adapted to the best available quality, then transmitting one or more probe packets for testing the available bandwidth of the network, wherein the probe packets comprise data duplicated from the audio packet stream;

determining a re-determined measure of network bandwidth in dependence on one or more metrics associated with receiving the audio packet stream at the receiving device during the transmission of the one or more probe packets; and

determining whether the re-determined measure of network bandwidth indicated sufficient available network bandwidth to support the video packet stream at the video stream transmission bitrate and, if so, transmitting a video packet stream over said network to said receiving device; and, subsequent to transmitting the video packet stream:

determining a further re-determined measure of network bandwidth in dependence on one or more metrics associated with receiving the audio packet stream at the receiving device and if the further re-determined measure indicates that the audio and video stream transmission bitrates are greater than the network bandwidth, decreasing the video stream transmission bitrate.

2. The method as claimed in claim 1 , wherein the video packet stream is transmitted over said network to said receiving device at a lowest video quality available to the transmitting device.

3. The method as claimed in claim 1 , further comprising, subsequent to transmitting the video packet stream, adapting the video stream transmission bitrate in dependence on the re-determined measure.

4. The method as claimed in claim 1 , further comprising determining an overload bandwidth in dependence on the further re-determined measure and decreasing the video stream transmission bitrate by the overload bandwidth.

5. The method as claimed in claim 1 , further comprising determining a further re-determined measure of network bandwidth in dependence on one or more metrics associated with receiving the audio packet stream at the receiving device and if the further re-determined measure indicates that the audio and video stream transmission bitrates are greater than the network bandwidth, disabling the transmission of the video packet stream only.

6. The method as claimed in claim 1 , wherein the one or more metrics comprises a measure of network delay, the delay comprising:

a first time taken for a first audio packet to be received at the receiving device from the transmitting device; and

a second time taken for a second audio packet to be received at the transmitting device from the receiving device.

7. The method as claimed in claim 1 , further comprising: classifying the network into a good, bad or normal state in dependence on the re-determined measure; and increasing the video stream transmission bitrate, or transmitting the video packet stream if the network state is classified as good, or decreasing the video stream transmission bitrate, or disabling the video packet stream if the network state is classified as bad.

8. The method as claimed in claim 1 , further comprising the steps of: classifying the network into a good, bad or normal state in dependence on the re-determined measure; prior to the step of transmitting the video packet stream and if the network is classified as good, increasing a rate of increase for the audio stream transmission bitrate; and increasing the audio stream transmission bitrate at said increased rate.

9. The method as claimed in claim 1 , further comprising, at the receiving device, determining whether an audio packet has been received previously via the audio packet stream and, if the audio packet has not been received previously, placing the audio packet in a jitter buffer in place of a missing packet.

10. The method as claimed in claim 1 , further comprising, at the receiving device, determining whether an audio packet has been received previously via the audio packet stream and, if the audio packet has been received previously, discarding the audio packet.

11. A transmitting device for transmitting a video packet stream at a video stream transmission bitrate to a receiving device over a network, the transmitting device comprising:

a transceiver configured to:

transmit an audio packet stream to the receiving device at an audio stream transmission bitrate, and

transmit one or more probe packets for testing the available bandwidth of the network, wherein the probe packets comprise data duplicated from the audio stream;

a bandwidth estimator configured to determine a measure of network bandwidth in dependence on one or more metrics associated with receiving the audio packet stream at the receiving device; and

a controller configured to:

determine whether the measure indicates sufficient available network bandwidth to support an audio stream with a higher transmission bitrate than the audio stream transmission bitrate and, if so, increase a transmission bitrate of the audio packet stream,

if the audio stream transmission bitrate has increased such that the audio stream is adapted to the best available quality, cause transmission of the one or more probe packets for testing the available bandwidth of the network; and

cause transmission of a video packet stream over said network to said receiving device upon the bandwidth estimator determining a re-determined measure of network bandwidth in dependence on one or more metrics associated with receiving the audio packet stream at the receiving device during the transmission of the probe packets if the re-determined measure indicates sufficient available network bandwidth to support the video packet stream at the video stream transmission bitrate; and

subsequent to transmitting the video packet stream:

determine a further re-determined measure of network bandwidth in dependence on one or more metrics associated with receiving the audio packet stream at the receiving device and if the further re-determined measure indicates that the audio and video stream transmission bitrates are greater than the network bandwidth, decrease the video stream transmission bitrate.

12. The transmitting device as claimed in claim 11 , wherein:

the bandwidth estimator is configured to determine a further re-determined measure of network bandwidth in dependence on one or more metrics associated with receiving the audio packet stream at the receiving device; and

the controller is configured to disable the transmission of the video packet stream only if the further re-determined measure indicates that the audio and video stream transmission bitrates are greater than the network bandwidth.

13. The transmitting device as claimed in claim 11 , wherein the controller is further configured to: classify the network into a good, bad or normal state in dependence on the re-determined measure; and increase the video stream transmission bitrate, or transmit the video packet stream, if the network state is classified as good, or decrease the video stream transmission bitrate, or disable the video packet stream, if the network state is classified as bad.

14. The transmitting device as claimed in claim 11 , wherein the controller is further configured to: classify the network into a good, bad or normal state in dependence on the re-determined measure; and prior to transmitting the video packet stream and if the network is classified as good, increase a rate of increase for the audio stream transmission bitrate; and increase the audio stream transmission bitrate at said increased rate.

15. A non-transitory computer readable storage medium having stored thereon computer readable instructions that, when executed at a computer system, cause the computer system to perform a method of transmitting a video packet stream at a video stream transmission bitrate from a transmitting device to a receiving device over a network, the method comprising, at the transmitting device:

transmitting an audio packet stream to the receiving device at an audio stream transmission bitrate;

determining a measure of network bandwidth in dependence on one or more metrics associated with receiving the audio packet stream at the receiving device;

determining whether the measure indicates sufficient available network bandwidth to support an audio stream with a higher transmission bitrate than the audio stream transmission bitrate and, if so, increasing the audio stream transmission bitrate;

if the audio stream transmission bitrate has increased such that the audio stream is adapted to the best available quality, then transmitting one or more probe packets for testing the available bandwidth of the network, wherein the probe packets comprise data duplicated from the audio packet stream;

determining a re-determined measure of network bandwidth in dependence on one or more metrics associated with receiving the audio packet stream at the receiving device during the transmission of the one or more probe packets; and

determining whether the re-determined measure indicates sufficient available network bandwidth to support the video packet stream at the video stream transmission bitrate and, if so, transmitting a video packet stream over said network to said receiving device; and

subsequent to transmitting the video packet stream:

determining a further re-determined measure of network bandwidth in dependence on one or more metrics associated with receiving the audio packet stream at the receiving device and if the further re-determined measure indicates that the audio and video stream transmission bitrates are greater than the network bandwidth, decreasing the video stream transmission bitrate.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 29, 2016
From: MANI, SENTHIL KUMAR; PURAM, BALA MANIKYA PRASAD
To: IMAGINATION TECHNOLOGIES LIMITED
Reel/Frame 039562/0677 →
Priority Claims (1)
GB 1515343.0 · Aug 28, 2015 · national
Continuity (1)
Related Publication 20170063702A1 · Mar 2, 2017
Cited By (1)
US 12,750,545