IP Library Granted Patent US 8,892,100
Granted Patent B2
US 8,892,100 · App. 13/305,857 · Granted Nov 18, 2014

Radio communication method, radio mobile device and radio base station accomodation apparatus

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Quick Facts
Patent No.
US 8,892,100
App. No.
13/305,857
Granted
Nov 18, 2014
Kind
B2
Abstract

A radio communication method in which, when hand-off of the down direction is performed while a radio mobile device subjects one application packet of the up direction to fragmentation to divide the one application packet into a plurality of radio packets and transmits the plurality of radio packets, sequence numbers of radio packets managed by a first radio base station to the plurality of fragmented radio packets of the one application packet even after the hand-off of the down direction is performed and to apply sequence numbers of radio packets managed by a second radio base station to fragmented radio packets of the application packet transmitted subsequently after completion of transmission of the plurality of fragmented radio packets of the one application packet; and making a radio base station accommodation apparatus identify a radio base station and restore data for each radio base station.

Claims (25)

1. A radio communication method in a radio communication system including at least one radio mobile device, a plurality of radio base stations and a radio base station accommodation apparatus to accommodate them, the radio communication method comprising:

handling first-route sequence numbers of radio packets transmitted to a first radio base station and second-route sequence numbers of radio packets transmitted to a second radio base station, of the radio communication system, independently through a Route Selection Protocol (RSP);

fragmenting an application packet of an up direction from the radio mobile device, into a plurality of packets each having a packet size suited for transmission in the radio communication system;

performing instantaneous hand-off of the radio mobile device from a first radio base station to a second radio base station, irrespective of transmission status of any plurality of packets of any application packet, where a management of the sequence numbers of radio packets in the radio base station is performed using Radio Link Protocol (RLP) packets each of which includes a RLP header and a part of data;

in the event that the radio mobile device had transmitted only a portion of the plurality of RLP packets of a subject application packet to the first radio base station using the first-route sequence numbers which were used prior to the hand-off,

making: the radio mobile device control to transmit a remainder of the plurality of RLP packets of the subject application packet to the first radio base station using the first-route sequence numbers after the hand-off is performed; and the radio mobile device control to apply second-route sequence numbers handled by the second radio base station to fragmented radio packets of a next application packet having all radio packets thereof transmitted only to the second radio base station, and transmit the fragmented radio packets of the next application packet to the second radio base station; and

making the radio base station accommodation apparatus identify a radio base station and restore data for each radio base station.

2. A radio communication method according to claim 1 , wherein there are two RLPs for the first radio base station and the second radio base station.

3. A radio mobile device in a radio communication system including at least one radio mobile device, a plurality of radio base stations and a radio base station accommodation apparatus to accommodate them, comprising:

a radio transmitter-receiver part, a modulator-demodulator circuit, a control part and a memory part, configured to effect operations of;

handling first-route sequence numbers of radio packets transmitted to a first radio base station and second-route sequence numbers of radio packets transmitted to a second radio base station, of the radio communication system, independently through a Route Selection Protocol (RSP);

fragmenting an application packet of an up direction from the radio mobile device, into a plurality of packets each having a packet size suited for transmission in the radio communication system;

performing instantaneous hand-off of the radio mobile device from a first radio base station to a second radio base station, irrespective of transmission status of any plurality of packets of any application packet, where a management of the sequence numbers of radio packets in the radio base station is performed using Radio Link Protocol (RLP) packets each of which includes a RLP header and a part of data;

in the event that the radio mobile device had transmitted only a portion of the plurality of RLP packets of a subject application packet to the first radio base station using the first-route sequence numbers which were used prior to the hand-off,

making: the radio mobile device control to transmit a remainder of the plurality of RLP packets of the subject application packet to the first radio base station using the first-route sequence numbers after the hand-off is performed; and the radio mobile device control to apply second-route sequence numbers handled by the second radio base station to fragmented radio packets of a next application packet having all radio packets thereof transmitted only to the second radio base station, and transmit the fragmented radio packets of the next application packet to the second radio base station; and

making the radio base station accommodation apparatus identify a radio base station and restore data for each radio base station.

4. A radio mobile device according to claim 3 , wherein there are two RLPs for the first radio base station and the second radio base station.

5. A non-transitory, computer-readable medium embodying a radio communication program implemented by a radio communication system including at least one radio mobile device, a plurality of radio base stations and a radio base station accommodation apparatus to accommodate them, the radio communication program, when implemented, effecting operations comprising:

handling first-route sequence numbers of radio packets transmitted to a first radio base station and second-route sequence numbers of radio packets transmitted to a second radio base station, of the radio communication system, independently through a Route Selection Protocol (RSP);

fragmenting an application packet of an up direction from the radio mobile device, into a plurality of packets each having a packet size suited for transmission in the radio communication system;

performing instantaneous hand-off of the radio mobile device from a first radio base station to a second radio base station, irrespective of transmission status of any plurality of packets of any application packet, where a management of the sequence numbers of radio packets in the radio base station is performed using Radio Link Protocol (RLP) packets each of which includes a RLP header and a part of data;

in the event that the radio mobile device had transmitted only a portion of the plurality of RLP packets of a subject application packet to the first radio base station using the first-route sequence numbers which were used prior to the hand-off,

making: the radio mobile device control to transmit a remainder of the plurality of RLP packets of the subject application packet to the first radio base station using the first-route sequence numbers after the hand-off is performed; and the radio mobile device control to apply second-route sequence numbers handled by the second radio base station to fragmented radio packets of a next application packet having all radio packets thereof transmitted only to the second radio base station, and transmit the fragmented radio packets of the next application packet to the second radio base station; and

making the radio base station accommodation apparatus identify a radio base station and restore data for each radio base station.

6. A non-transitory, computer-readable medium according to claim 5 , wherein there are two RLPs for the first radio base station and the second radio base station.