IP Library Granted Patent US 9,603,064
Granted Patent B2
US 9,603,064 · App. 14/235,294 · Granted Mar 21, 2017

Method and system for a high-speed handover of a mobile terminal in a communication system

Inventors: Seong-Keun Oh (Gyeonggi-do, KR); Min Lee (Gyeonggi-do, KR)
Assignee: AJOU UNIVERSITY INDUSTRY-ACADEMIC COOPERATION FOUNDATION
H04W36/0055H04W36/0016H04W36/36
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Quick Facts
Patent No.
US 9,603,064
App. No.
14/235,294
Granted
Mar 21, 2017
Kind
B2
Abstract

The present invention relates to a handover method, and more particularly, to a high-speed handover method for reducing handover delay. To this end, a handover method for a mobile terminal according to the present invention comprises the steps of: determining a first base station to which handover is to be performed; reserving a channel for performing the handover to the first base station and notifying a second base station, from which a service is currently provided, of information on the reserved channel; and performing the handover to the first base station when state information on channels of the first base station is received from the first base station.

Claims (44)

1. A handover method of a mobile terminal, the method comprising:

a) determining, by the mobile terminal, at least one target node to which the mobile terminal intends to handover;

b) selecting, by the mobile terminal, at least one channel of the at least one target node for a reserved access to the at least one target node;

c) providing, by the mobile terminal, information on the at least one target node and information on the selected at least one channel of the at least one target node for the reserved access to the at least one target node, to at least one source node;

d) providing, by at least one of the at least one source node, the information on the selected at least one channel for the reserved access to the at least one target node;

e) requesting, by the mobile terminal, handover acceptance to the at least one target node; and

f) performing, by the mobile terminal, random access to the at least one target node,

wherein the mobile terminal performs contention-free random access by previously reserving a resource of the at least one target node, or performs contention-based random access using the resource of the at least one target node,

wherein, when the at least one target node cannot allocate a previously reserved resource to the mobile terminal, the at least one target node classifies the previously reserved resource as an unreserved resource,

wherein, when the previously reserved resource is not allocated to the mobile terminal, the mobile terminal performs contention-based random access using the unreserved resource of the at least one target node,

wherein the mobile terminal transmits at least one random access signal using at least one resource of the at least one target node, and

wherein, when the mobile terminal transmits the at least one random access signal using at least two resources, the mobile terminal transmits a same random access signal or different random access signals using the at least two resources.

2. The method of claim 1 , further comprising:

providing, by the at least one of the at least one source node, handover registration information to the at least one target node,

wherein the handover registration information includes at least one of security mode information established between the mobile terminal and the at least one source node, an identifier of the mobile terminal, a unique identification number of the mobile terminal, and channel quality information between the mobile terminal and the at least one target node.

3. The method of claim 1 , wherein the mobile terminal maintains connection to the at least one source node and requests the handover acceptance to the at least one target node, or the mobile terminal releases connection to the at least one source node and requests the handover acceptance to the at least one target node.

4. The method of claim 1 , wherein, when the handover acceptance is requested from the mobile terminal, the at least one target node decides whether to accept a handover of the mobile terminal or not, and provides the decision as to whether or not to accept the handover of the mobile terminal to the mobile terminal.

5. The method of claim 1 , wherein the handover acceptance is requested by transmitting a handover acceptance request message to the at least one target node.

6. The method of claim 1 , wherein a Radio Access Technology (RAT) of the at least one target node differs from a RAT of the at least one source node,

wherein, when the mobile terminal hands off at least two source nodes, RATs of a part or all of the at least two source nodes differ from one another, and

wherein, when the mobile terminal hands on at least two target nodes, RATs of a part or all of the at least two target nodes differ from one another.

7. A mobile communication system comprising:

a mobile terminal configured to determine at least one target node to which the mobile terminal intends to handover, configured to select at least one channel of the at least one target node for a reserved access to the at least one target node, configured to provide information on the at least one target node and information on the selected at least one channel of the at least one target node for the reserved access to the at least one target node, to at least one source node, and configured to request handover acceptance to the at least one target node; and

at least one of the at least one source node configured to provide the information on the selected at least one channel for the reserved access to the at least one target node,

wherein, when the handover acceptance is requested from the mobile terminal through a Radio Resource Control (RRC) message, the at least one target node decides whether to accept a handover of the mobile terminal or not, and provides the decision as to whether or not to accept the handover of the mobile terminal to the mobile terminal using a resource of the at least one target node,

wherein a Radio Access Technology (RAT) of the at least one target node differs from a RAT of the at least one source node,

wherein, when the mobile terminal hands off at least two source nodes, respective RATs of the at least two source nodes differ from one another, and

wherein, if the mobile terminal hands on to at least two target nodes, respective RATs of the at least two target nodes differ from one another.

8. The mobile communication system of claim 7 , wherein the mobile terminal performs random access to the at least one target node using the resource of the at least one target node.

9. The mobile communication system of claim 7 , wherein the mobile terminal maintains connection to the at least one source node and requests the handover acceptance to the at least one target node, or the mobile terminal releases connection to the at least one source node and requests the handover acceptance to the at least one target node.

10. The method of claim 1 , wherein the information on the at least one target node includes at least one of node unique information, cell identification, prefix information of the at least one target node.

11. The method of claim 1 , wherein the information on the at least one target node includes at least one of node unique information, cell identification, prefix information of the at least one target node.

12. A handover method of a mobile terminal, the method comprising:

a) determining, by the mobile terminal, at least one target node to which the mobile terminal intends to handover;

b) selecting, by the mobile terminal, at least one channel of the at least one target node for a reserved access to the at least one target node;

c) providing, by the mobile terminal, information on the at least one target node to at least one source node;

d) providing, by the mobile terminal, information on the selected at least one channel of the at least one target node for the reserved access to the at least one target node, and security mode information of the mobile terminal to the at least one target node using a resource of the at least one target node;

e) requesting, by the mobile terminal, handover acceptance to the at least one target node using the resource of the at least one target node; and

f) performing, by the mobile terminal, random access to the at least one target node,

wherein the mobile terminal performs contention-free random access by previously reserving a resource of the at least one target node, or performs contention-based random access using the resource of the at least one target node,

wherein, when the at least one target node cannot allocate a previously reserved resource to the mobile terminal, the at least one target node classifies the previously reserved resource as an unreserved resource,

wherein, when the previously reserved resource is not allocated to the mobile terminal, the mobile terminal performs contention-based random access using the unreserved resource of the at least one target node,

wherein the mobile terminal transmits at least one random access signal using at least one resource of the at least one target node, and

wherein, when the mobile terminal transmits the at least one random access signal using at least two resources, the mobile terminal transmits a same random access signal or different random access signals using the at least two resources.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 5, 2021
From: AJOU UNIVERSITY INDUSTRY-ACADEMIC COOPERATION FOUNDATION
To: MINDSET LICENSING LLC
Reel/Frame 056146/0108 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 21, 2014
From: OH, SEONG-KEUN; LEE, MIN
To: AJOU UNIVERSITY INDUSTRY-ACADEMIC COOPERATION FOUNDATION
Reel/Frame 032494/0756 →
Priority Claims (1)
KR 10-2011-0074127 · Jul 26, 2011 · national
Continuity (1)
Related Publication 20140169336A1 · Jun 19, 2014