User-plane congestion management
US-2016112896-A1 · Apr 21, 2016 · US
US10153975B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-10153975-B2 |
| Application number | US-201314767648-A |
| Country | US |
| Kind code | B2 |
| Filing date | Feb 15, 2013 |
| Priority date | Feb 15, 2013 |
| Publication date | Dec 11, 2018 |
| Grant date | Dec 11, 2018 |
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A method performed by a first network node for controlling user plane traffic flows relating to wireless devices in a wireless telecommunications network is provided. The first network node is configured to transmit the user plane traffic flows over a first transmission path to a second network node in the wireless telecommunications network. The first network node determines that a user plane traffic flow related to a wireless device is to be transmitted over a second transmission path to an intermediary network node configured to communicate with the first and second network nodes in the wireless telecommunications network based on the type of the user plane traffic flow, the wireless device related to the user plane traffic flow and/or the content of the user plane traffic flow. Then, the first network node controls the user plane traffic flow such that the user plane traffic flow is transmitted over the second transmission path to the intermediary network node in the wireless telecommunications network.
Opening claim text (preview).
The invention claimed is: 1. A method performed by a first network node for controlling user plane traffic flows relating to wireless devices in a wireless telecommunications network, the first network node being configured to transmit the user plane traffic flows over a first transmission path to a second network node in the wireless telecommunications network, the method comprising: determining that the user plane traffic flow is to be transmitted over a second transmission path to an intermediary network node configured to communicate with the first and second network nodes in the wireless telecommunications network based on one or more of the type of the user plane traffic flow, the wireless device related to the user plane traffic flow, and the content of the user plane traffic flow; and controlling the user plane traffic flow such that the user plane traffic flow is transmitted over the second transmission path to the intermediary network node in the wireless telecommunications network; and wherein the determining that the user plane traffic flow is to be transmitted over the second transmission path to the intermediary network node is based on the user plane traffic flow being compressible by a payload compression functionality in the intermediary network node. 2. The method according to claim 1 , wherein the determining further comprises determining that the user plane traffic flow is to be transmitted over the second transmission path to the intermediary network node based on that the content of the user plane traffic flow indicates that content requested in the user plane traffic flow is content that is cacheable in a cache memory in the intermediary network node. 3. The method according to claim 1 , wherein the determining further comprises determining that the content of the user plane traffic flow is unencrypted by using Deep Packet Inspection, DPI. 4. The method according to claim 1 , wherein the determining further comprises determining that the user plane traffic flow is of another type than a real-time communication user plane traffic flow or a live streaming user plane traffic flow, by using Internet Protocol, IP, header classification. 5. The method according to claim 1 , wherein the determining further comprises determining that the user plane traffic flow is to be transmitted over the second transmission path to the intermediary network node based on that the type of the user plane traffic flow is Transport Control Protocol, TCP. 6. The method according to claim 1 , wherein the determining further comprises determining that the user plane traffic flow is to be transmitted over the second transmission path to the intermediary network node based on the subscription type of the wireless device to which the user plane traffic flow is related. 7. A first network node for controlling user plane traffic flows relating to wireless devices in a wireless telecommunications network, the first network node being configured to transmit the user plane traffic flows over a first transmission path to a second network node in the wireless telecommunications network, the first network node comprising: processing circuitry configured to: determine that the user plane traffic flow is to be transmitted over a second transmission path to an intermediary network node configured to communicate with the first and second network nodes in the wireless telecommunications network based on one or more of the type of the user plane traffic flow, the wireless device related to the user plane traffic flow, and the content of the user plane traffic flow; control the user plane traffic flow such that the user plane traffic flow is transmitted over the second transmission path to the intermediary network node in the wireless telecommunications network; and wherein the processing circuitry is configured to determine that the user plane traffic flow is to be transmitted over the second transmission path to the intermediary network node based on that the user plane traffic flow is compressible by a payload compression functionality in the intermediary network node. 8. The first network node according to claim 7 , wherein the processing circuitry is further configured to determine that the user plane traffic flow is to be transmitted over the second transmission path to the intermediary network node based on that the content of the user plane traffic flow indicates that content requested in the user plane traffic flow is content that is cacheable in a cache memory in the intermediary network node. 9. The first network node according to claim 7 , wherein the processing circuitry is further configured to determine that the user plane traffic flow is compressible by determining that the content of the user plane traffic flow is unencrypted using Deep Packet Inspection, DPI. 10. The first network node according to claim 7 , wherein the processing circuitry is further configured to determine that the user plane traffic flow is compressible by determining that the type of the user plane traffic flow is of another type of user plane traffic flow than a real-time communication user plane traffic flow or a live streaming user plane traffic flow, using Internet Protocol, IP, header classification. 11. The first network node according to claim 7 , wherein the processing circuitry is further configured to determine that the user plane traffic flow is to be transmitted over the second transmission path to the intermediary network node based on that the type of the user plane traffic flow is Transport Control Protocol, TCP. 12. The first network node according to claim 7 , wherein the processing circuitry is further configured to determine that the user plane traffic flow is to be transmitted over the second transmission path to the intermediary network node based on the subscription type of the wireless device to which the user plane traffic flow is related. 13. The first network node according to claim 7 , wherein the intermediary network node is a Radio Network Controller, RNC, and wherein the first network node is an eNodeB and the second network node is a Serving Gateway, SGW, or vice versa. 14. The first network node according to claim 7 , wherein the intermediary network node is a Service Aware Proxy, SAP, and wherein the first network node is a Packet Data Network Gateway, PGW, and the second network node is a core network routing node, or vice versa. 15. The first network node according to claim 7 , wherein the intermediary node is a stand-alone routing node, and wherein the first network node and the second network node are one of the following combinations: a Packet Data Network Gateway, PGW, and a Service Aware Proxy, SAP; a eNodeB and a Serving Gateway, SGW; a Radio Network Controller, RNC, and a Serving Gateway, SGW; or a WiFi Access Point/Controller, WiFi AP/AC, and a PGW.
Route determination based on the nature of the carried application · CPC title
by balancing the load, e.g. traffic engineering · CPC title
Communication route or path selection, e.g. power-based or shortest path routing · CPC title
Load balancing or load distribution (transferring a connection for handling the traffic H04W36/22; wireless traffic scheduling H04W72/12) · CPC title
Selecting a network or a communication service · CPC title
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