IP Library Granted Patent US 7,756,023
Granted Patent B2
US 7,756,023 · App. 10/596,282 · Granted Jul 13, 2010

Adaptive physical transmission mode selection

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Quick Facts
Patent No.
US 7,756,023
App. No.
10/596,282
Granted
Jul 13, 2010
Kind
B2
Abstract

A data transmission network comprises two groups of nodes ( 1; 2, 3, 4 ), a radio interface associated to each group and connected to the nodes ( 1 ) of the group and a radio path ( 5 ) between the two radio interfaces ( 9 ), in which several groups ( 14 12 , 14 13 , 14 14 ) of virtual paths ( 15 ) of warranted bandwidth are transmitted between one node ( 1 ) of the first group and one node ( 2, 3, 4 ) of the second group. The sum of the bandwidths warranted to the groups ( 14 12 , 14 13 , 14 14 ) of virtual paths does not exceed the total bandwidth of the radio path ( 5 ) when operated in a transmission mode referred to as basic mode. The radio interfaces ( 9 ) support several physical transmission modes of different bandwidths and are adapted to detect the transmission quality of the radio path ( 5 ) and to operate, the transmission quality of the radio path ( 5 ) permitting, the radio path ( 5 ) in a transmission mode of higher bandwidth than that of the basic mode and to use the bandwidth difference between the used mode and the basic mode for bandwidth need of the groups of virtual paths in excess of the warranted bandwidth.

Claims (19)

1. A method of transmitting data over a radio channel between two radio interfaces in a data transmission network that support a plurality of physical transmission modes at different bandwidths, the data transmission network comprising a first group of nodes having a first radio interface configured to support the plurality of physical transmission modes and a second group of nodes having a second radio interface configured to support the plurality of physical transmission modes, the method comprising:

establishing more than one group of virtual channels on the radio channel, each group having an allocated bandwidth to transmit data between the first and second groups of nodes, such that the sum of the allocated bandwidths does not exceed a total bandwidth of the radio channel operating in a basic transmission mode;

detecting a transmission quality of the radio channel;

based on the detected transmission quality, operating the radio channel in a selected transmission mode having a greater bandwidth than that of the basic transmission mode; and

allocating the difference in the bandwidths between the selected transmission mode and the basic transmission mode to the groups of virtual channels such that one or more of the groups of virtual channels operate at a bandwidth that is greater than their allocated bandwidth.

2. The method of claim 1 wherein the selected transmission mode is the transmission mode having the highest bandwidth achievable given the detected transmission quality of the radio channel.

3. The method of claim 1 wherein if the bandwidth of the transmission mode having the highest bandwidth is greater than or equal to a total bandwidth need of the groups of virtual channels, the most robust transmission mode having a bandwidth sufficient to satisfy the bandwidth needs of the groups of virtual channels is selected.

4. The method of claim 3 further comprising altering the transmission power of the radio channel to satisfy small changes in the bandwidth needs of the groups of virtual channels.

5. The method of claim 3 further comprising buffering at least part of the data to be transmitted over a group of virtual channels, and determining that a bandwidth of a currently used transmission mode is less than the total bandwidth needs of the groups of virtual channels if the data in the buffer exceeds a predetermined limit.

6. The method of claim 5 wherein the buffered data comprises data that is to be transmitted over at least one virtual channel at an unspecified bit rate.

7. The method of claim 1 further comprising admitting a new terminal-to-terminal connection in a group of virtual channels based on a call admission control (CAC) method.

8. A data transmission network comprising:

a first group of nodes having a first radio interface configured to support a plurality of physical transmission modes;

a second group of nodes having a second radio interface configured to support the plurality of physical transmission modes;

a radio channel comprising more than one group of virtual channels interconnecting the first and second radio interfaces, each group being allocated a bandwidth to transmit data between the first and second groups of nodes such that the sum of the allocated bandwidths is less than or equal to a total bandwidth of the radio channel when the radio channel is operating in a basic transmission mode; and

a control unit configured to:

detect a transmission quality of the radio channel;

operate the radio channel in a selected transmission mode having a greater bandwidth than that of the basic transmission mode based on the detected transmission quality; and

allocate the difference in the bandwidths between the selected transmission mode and the basic transmission mode to the groups of virtual channels such that one or more of the groups of virtual channels operate at a bandwidth that is greater than their allocated bandwidth.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 30, 2007
From: MARCONI COMMUNICATIONS GMBH (NOW KNOWN AS TELENT GMBH)
To: ERICSSON AB
Reel/Frame 020218/0769 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 17, 2006
From: FUSS, MICHAEL
To: TELENT GMBH
Reel/Frame 017942/0518 →