RADIO BASE STATION AND RADIO COMMUNICTION SYSTEM FOR STARTING INTER-SYSTEM HANDOFF
It is possible to forcibly cause a terminal to perform an inter-system handoff for system control in a region where service areas of a plurality of radio access systems are overlapped. When it is detected that communication resource of the radio base station is insufficient, a communication terminal which can be replaced by a communication using other system is selected and an inter-system handoff is started.
1 . In a mobile communication system with service areas overlapped and accommodating a first radio access system and a second radio access system for conducting different types of communication, a radio base station for the first radio access system, characterized by comprising:
a resource management unit for storing the communication resource state of the radio base station; and
a handoff control unit for starting the inter-system handoff by detecting, with reference to the resource management unit, the shortage of the communication resources of the radio base station to conduct the radio communication with plural terminals, and upon detection of the shortage of the communication resources, selecting a terminal using the communication service replaceable with the communication service of the second radio access system, from among the terminals communicating using the radio base station, and carrying out the handoff of the selected terminal to the second radio access system.
2 . The radio base station as set forth in claim 1 , characterized in that the handoff control unit, upon reception of a block command from the maintenance device communicating with the radio base station, regards the communication resources as depleted and thus detects the shortage of the communication resources.
3 . The radio base station as set forth in claim 1 , characterized in that the handoff control unit, upon reception of a command from the maintenance device communicating with the radio base station to suspend a specific communication service, regards the communication resources as depleted and thus detects the shortage of the communication resources.
4 . The radio base station as set forth in claim 1 , characterized in that the handoff control unit judges that the communication resources are in shortage in the case where the number of QoS control failures per unit time at the radio terminal exceeds a predetermined threshold value.
5 . The radio base station as set forth in claim 1 , characterized in that the handoff control unit selects, as a terminal for inter-system handoff, a terminal of which the number of handoffs per unit time has exceeded a predetermined threshold value.
6 . The radio base station as set forth in claim 1 , characterized in that the handoff control unit selects, as a terminal for inter-system handoff, a terminal of which the number of QoS control failures per unit time has exceeded a predetermined threshold value.
7 . The radio base station as set forth in claim 1 , characterized in that the handoff control unit starts the inter-system handoff upon detection of the shortage of the communication resources of a single radio base station communicating with plural radio base stations in the case where a terminal transfers from the soft handoff state communicating with plural radio base stations to the state communicating with the particular single radio base station.
8 . The radio base station as set forth in claim 1 , characterized in that the handoff control unit judges whether the communication resources are in shortage or not using, as a trigger, the handoff of a terminal communicating with another radio base station associated with the first radio access system to the radio base station of the handoff control unit.
9 . The radio base station as set forth in claim 1 , characterized in that the handoff control unit judges periodically whether the communication resources are in shortage or not.
10 . In a mobile communication system with service areas overlapped and accommodating a first radio access system and a second radio access system for conducting different types of communication, the first radio access system characterized by comprising:
a resource shortage detection means for detecting the shortage of the communication resources for the radio base station of the first radio access system to conduct the radio communication with plural terminals;
an inter-system handoff object selection means for selecting, upon detection of the communication resource shortage, a terminal using the communication service replaceable with the communication service of the second radio access system, from among the terminals in communication using the radio base station; and
an inter-system handoff starting means for carrying out the handoff of the selected terminal to the second radio access system.
11 . The radio access system as set forth in claim 10 , characterized in that the resource shortage detection means regards the communication resources as depleted and thus detects the shortage of the resources upon reception of a block command from the maintenance device communicating with the radio base station.
12 . The radio access system as set forth in claim 10 , characterized in that the resource shortage detection means judges that the resource shortage is detected upon reception of a command from the maintenance device communicating with the radio base station to suspend a specific communication service.
13 . The radio access system as set forth in claim 10 , characterized in that the resource shortage detection means judges that the communication resource shortage is detected in the case where the number of the QoS control failures per unit time exceeds a threshold value.
14 . The radio access system as set forth in claim 10 , characterized in that the inter-system handoff object selection means selects a terminal of which the number of handoffs per unit time exceeds a threshold value.
15 . The radio access system as set forth in claim 10 , characterized in that the inter-system handoff object selection means selects a terminal of which the number of QoS control failures per unit time exceeds a threshold value.
16 . The radio access system as set forth in claim 10 , characterized in that the resource shortage detection means starts the inter-system handoff upon detection of the shortage of the communication resources of a single radio base station in the case where a terminal transfers from the soft handoff state communicating with plural radio base stations to the state communicating with the particular single radio base station.
17 . The radio access system as set forth in claim 10 , characterized in that the resource shortage detection means judges whether the communication resources are in shortage or not using, as a trigger, the handoff of a terminal communicating with the first radio base station associated with the first radio access system to the second radio base station.
18 . In a mobile communication system with service areas overlapped and accommodating a first radio access system and a second radio access system for conducting different types of communication, an inter-system handoff starting method characterized by comprising:
a first step for measuring the state of the communication resources of each radio base station;
a second step for detecting, based on the communication resource state of the each radio base station, the shortage of the communication resources for the radio base station to conduct the radio communication with plural terminals;
a third step for selecting, upon detection of the communication resource shortage, a terminal which is in communication using the radio base station and which uses the communication service replaceable with the communication service of the second radio access system; and
a fourth step for starting the inter-system handoff of the selected terminal to the second radio access system.