Automatic detection and modification of channel usage in TDMA wireless communication networks
Abstract
A mobile switching center switches telephone calls in a time division multiplex access wireless communications network architecture. A communications controller in the mobile switching center is adapted to control communications between the mobile switching center and at least one base station controller. An interworking function in the mobile switching center is adapted to transfer information between the mobile switching center and another network other than the wireless communications network. A compact data services unit (CDSU) causes said mobile switching center to automatically detect, whenever a downgrade procedure occurs during a data call switched through said mobile switching center, the subchannels of the telephone call dropped in the downgrade procedure network.
Claims
exact text as granted — not AI-modified1 . A mobile switching center for a time division multiplex access wireless communications network architecture, comprising:
a communications controller adapted to control communications between the mobile switching center and at least one base station controller; an interworking function adapted to transfer information between the mobile switching center and another network other than the wireless communications network; and a compact data services unit (CDSU), said CDSU causing said mobile switching center to automatically detect, whenever a downgrade procedure occurs during a data call switched through said mobile switching center, the subchannels of the telephone call dropped in the downgrade procedure.
2 . The mobile switching center recited in claim 1 , wherein the mobile switching center initiates a subchannel finding procedure whenever a downgrade procedure occurs during a data call switched through said mobile switching center.
3 . The mobile switching center recited in claim 1 , wherein the subchannel finding procedure includes frame synchronization finding for all possible subchannels.
4 . The mobile switching center recited in claim 3 , wherein the mobile switching center uses the lowest physical subchannels as transmit channels during the subchannel finding procedure.
5 . The mobile switching center recited in claim 4 , wherein the subchannel finding procedure is terminated when valid frame synchronization is found on all used subchannels.
6 . The mobile switching center recited in claim 5 , wherein the transmit channels are switched when valid frame synchronization is found for all used subchannels.
7 . The mobile switching center recited in claim 1 , wherein idle sequences are sent in unused subchannels.
8 . The mobile switching center recited in claim 1 , wherein the TDMA wireless communication network is a GSM network.
9 . A mobile switching center for a time division multiplex access wireless communications network architecture, comprising:
a communications controller adapted to control communications between the mobile switching center and at least one base station controller; an interworking function adapted to transfer information between the mobile switching center and another network other than the wireless communications network; and a compact data services unit (CDSU), said CDSU causing said mobile switching center to automatically detect, whenever an upgrade procedure occurs during a data call switched through said mobile switching center, the subchannels of the telephone call added in the upgrade procedure.
10 . The mobile switching center recited in claim 9 , wherein the mobile switching center initiates a subchannel finding procedure whenever an upgrade procedure occurs during a data call switched through said mobile switching center.
11 . The mobile switching center recited in claim 9 , wherein the subchannel finding procedure includes frame synchronization finding for all possible subchannels.
12 . The mobile switching center recited in claim 11 , wherein the mobile switching center uses the lowest physical subchannels as transmit channels during the subchannel finding procedure.
13 . The mobile switching center recited in claim 12 , wherein the subchannel finding procedure is terminated when valid frame synchronization is found on all used subchannels.
14 . The mobile switching center recited in claim 13 , wherein the transmit channels are switched when valid frame synchronization is found for all used subchannels.
15 . The mobile switching center recited in claim 9 , wherein idle sequences are sent in unused subchannels.
16 . The mobile switching center recited in claim 9 , wherein the TDMA wireless communication network is a GSM network.
17 . A method of automatically detecting changes in the channel usage over an interface between a mobile switching center and a base station controller in a TDMA wireless communication, said method comprising the steps of:
automatically detecting, whenever a downgrade procedure occurs during a data call switched through said mobile switching center, the subchannels of the telephone call dropped in the downgrade procedure; and initiating a subchannel finding procedure whenever a downgrade procedure occurs during a data call switched through said mobile switching center.
18 . The method recited in claim 17 wherein the subchannel finding procedure includes frame synchronization finding for all possible subchannels.
19 . The method recited in claim 17 , wherein the lowest physical subchannels are used as transmit channels during the subchannel finding procedure.
20 . The method recited in claim 18 , wherein the subchannel finding procedure is terminated when valid frame synchronization is found on all used subchannels.
21 . (Cancelled)
22 . (Cancelled)
23 . (Cancelled)
24 . (Cancelled)
25 . (Cancelled)
26 . (Cancelled)
27 . (Cancelled)
28 . (Cancelled)
29 . (Cancelled)
30 . (Cancelled)Join the waitlist — get patent alerts
Track US2004198368A1 — get alerts on status changes and closely related new filings.
We store only your email — no account needed. See our privacy policy.