The present invention relates to a radio base station device supporting an IP transmission system, and to an operation control method of the device. In particular, the present invention relates to a control method for IP transmission paths between a radio base station device and a radio network controller in an IP-based radio access network.
The 3GPP is promoting standardization for applying IP technology to RAN, and has defined specifications for using IP instead of ATM, which is defined in 3GPP release 99, for Iub transmission, the specifications being TS 25.426 “UTRAN Iur and Iub interface data transport & transport signalling for DCH data streams” (http://www.3gpp.org/ftp/Specs/html-info/25426.htm), and TS 25.432 “UTRAN Iub interface: signalling transport” (http://www.3gpp.org/ftp/Specs/html-info/25432.htm). It is defined that, on the Iub, C-(Control) plane for signaling for transfer control of a control signal by the call processing control unit 1000 is to be transmitted in accordance with a transport layer protocol SCTP (Stream Control Transmission Protocol) defined in IETF (The Internet Engineering Task Force) RFC 2960, and that U-(User) plane for transfer control of user data by the baseband signal processing unit 600 is to be transmitted in accordance with UDP (User Datagram Protocol) defined in IETF RFC 768.
Problems to be Solved By the Invention
Conventional ATM defined in 3GPP Release 99 is highly reliable, so that an RNC and a base station have been connected to each other by a single transmission path. Also in the above-mentioned specifications, the base station 300 and the RNC 200 are connected to each other by a single IP transmission path on the Iub of the radio access network (RAN) 100. SCTP is used as a transport layer protocol for C-plane and UDP is used as a transport layer protocol for U-plane, so that data is transmitted over each transmission path.
Since IP transmission paths are less reliable than ATM, failure of a transmission path may occur, caused by congestion or the like. In the above-mentioned specifications, however, detection of failure of an IP transmission path is not defined for C-plane transmission and U-plane transmission.
As described in
A purpose of the invention made in the above-mentioned background is to provide a radio base station device, radio control system, and operation control method that, upon a state of congestion caused by an increase in communication data and upon an unexpected failure of an IP transmission path, change the IP transmission path to a reserve IP transmission path without interruption of voice and disconnection of a call at the time of failure.
Means for Solving the Problems
A radio base station device of the invention comprises: a call processing control unit for transferring a signaling control signal, and transmitting a failure detection packet to a plurality of transmission paths connected to a radio network controller so as to detect failure of each of the transmission paths; a baseband signal processing unit for transferring a user data control signal; a channel management table storing a currently set up channel and a transmission path used by the channel, as being associated with each other; and a channel management control unit for, in response to detection of failure of a transmission path by the call processing control unit, receiving information indicating a state of each of the transmission paths from the call processing control unit, identifying with reference to the channel management table a channel using the transmission path having failure detected, changing the identified channel to a transmission path having no failure detected, and notifying the call processing control unit and the baseband signal processing unit of an address related to the transmission path to which the identified channel is changed. In the above-mentioned radio base station device, the channel management control unit may update the channel management table in response to a setup and release of a channel with a radio network controller. Also in the above-mentioned radio base station device, the channel management control unit may determine the transmission path to which the identified channel is to be changed, based on travel time information of the failure detection packet included in information indicating a state of each of the transmission paths. Furthermore, the above-mentioned radio base station device may comprise a priority-of-use storage unit storing information indicating a predetermined priority of use for each of the transmission paths, and the channel management control unit may determine the transmission path to which the identified channel is to be changed, based on the priority of use for each transmission path read from the priority-of-use storage unit.
A radio network controller of the invention comprises: a call processing control unit for transferring a signaling control signal, and transmitting a failure detection packet to a plurality of transmission paths connected to a radio base station device so as to detect failure of each of the transmission paths; a baseband signal processing unit for transferring a user data control signal; a channel management table storing a currently set up channel and a transmission path used by the channel, as being associated with each other; and a channel management control unit for, in response to detection of failure of a transmission path by the call processing control unit, receiving information indicating a state of each of the transmission paths from the call processing control unit, identifying with reference to the channel management table a channel using the transmission path having failure detected, changing the identified channel to a transmission path having no failure detected, and notifying the call processing control unit and the baseband signal processing unit of an address related to the transmission path to which the identified channel is changed.
A radio control system of the invention is for performing communication between a portable terminal and a radio network controller via a radio base station device, the radio base station device and the radio network controller being connected to each other by a plurality of transmission paths, the radio base station device and the radio network controller comprising: a call processing control unit for transferring a signaling control signal, and transmitting a failure detection packet to each of the transmission paths so as to detect failure of each of the transmission paths; a baseband signal processing unit for transferring a user data control signal; a channel management table storing a currently set up channel and a transmission path used by the channel, as being associated with each other; and a channel management control unit for, in response to detection of failure of a transmission path by the call processing control unit, receiving information indicating a state of each of the transmission paths from the call processing control unit, identifying with reference to the channel management table a channel using the transmission path having failure detected, changing the identified channel to a transmission path having no failure detected, and notifying the call processing control unit and the baseband signal processing unit of an address related to the transmission path to which the identified channel is changed.
An operation control method of the invention is of a radio base station device, the radio base station device comprising: a call processing control unit for transferring a signaling control signal; a baseband signal processing unit for transferring a user data control signal; and a channel management control unit for managing a channel set up with the radio network controller, the operation control method comprising: a table update step in which the channel management control unit, in response to a setup and release of the channel, updates a channel management table storing a currently set up channel and a transmission path used by the channel, as being associated with each other; a failure detection step in which the call processing control unit transmits a failure detection packet to a plurality of transmission paths connected to a radio network controller so as to detect failure of each of the transmission paths; a state-of-transmission-path transmission step in which the call processing control unit, in response to detection of failure of a transmission path in the failure detection step, transmits information indicating a state of each of the transmission paths to the channel management control unit; and a transmission path change step in which the channel management control unit identifies with reference to the channel management table a channel using the transmission path having failure detected, changes the identified channel to a transmission path having no failure detected, and notifies the call processing control unit and the baseband signal processing unit of an address related to the transmission path to which the identified channel is changed.
There are other aspects of the invention as described below. This disclosure of the invention therefore intends to provide part of aspects of the invention and does not intend to limit the scope of the invention claimed herein.
Now, the invention will be described in detail. However, the following detailed description and appended drawings are not intended to limit the invention. The scope of the invention is defined by the appended claims.
A radio base station device of the embodiment comprises: a call processing control unit for transferring a signaling control signal, and transmitting a failure detection packet to a plurality of transmission paths connected to a radio network controller so as to detect failure of each of the transmission paths; a baseband signal processing unit for transferring a user data control signal; a channel management table storing a currently set up channel and a transmission path used by the channel, as being associated with each other; and a channel management control unit for, in response to detection of failure of a transmission path by the call processing control unit, receiving information indicating a state of each of the transmission paths from the call processing control unit, identifying with reference to the channel management table a channel using the transmission path having failure detected, changing the identified channel to a transmission path having no failure detected, and notifying the call processing control unit and the baseband signal processing unit of an address related to the transmission path to which the identified channel is changed.
As above, the radio base station device and the radio network controller are connected to each other by a plurality of transmission paths, and the radio base station device transmits a failure detection packet to the plurality of transmission paths so as to detect failure of each of the transmission paths. When occurrence of a failure is detected in a transmission path in which a channel is set up, the channel management control unit changes the channel set up in the transmission path where the failure has occurred to a transmission path where no failure has occurred, and then a signaling control signal and a user data control signal are transmitted. This can reduce the possibility of an interruption of voice and disconnection of a call at the time of failure.
In the radio base station device, the channel management control unit may update the channel management table in response to a setup and release of a channel with a radio network controller.
A state of channel setup can be grasped by updating the channel management table as above in response to a setup and release of a channel.
In the radio base station device, the channel management control unit may determine the transmission path to which the identified channel is to be changed, based on travel time information of the failure detection packet included in information indicating a state of each of the transmission paths.
By determining the transmission path to which the identified channel is to be changed, based on travel time information of the failure detection packet as above, a transmission path can be changed to a transmission path being in a good transmission state.
The radio base station device may comprise a priority-of-use storage unit storing information indicating a predetermined priority of use for each of the transmission paths, and the channel management control unit may determine the transmission path to which the identified channel is to be changed, based on the priority of use for each transmission path read from the priority-of-use storage unit.
This allows the priority of use for the transmission paths to be set in advance according to characteristics of the transmission paths or the like.
A radio network controller of the embodiment comprises: a call processing control unit for transferring a signaling control signal, and transmitting a failure detection packet to a plurality of transmission paths connected to a radio base station device so as to detect failure of each of the transmission paths; a baseband signal processing unit for transferring a user data control signal; a channel management table storing a currently set up channel and a transmission path used by the channel, as being associated with each other; and a channel management control unit for, in response to detection of failure of a transmission path by the call processing control unit, receiving information indicating a state of each of the transmission paths from the call processing control unit, identifying with reference to the channel management table a channel using the transmission path having failure detected, changing the identified channel to a transmission path having no failure detected, and notifying the call processing control unit and the baseband signal processing unit of an address related to the transmission path to which the identified channel is changed.
Consequently, as in the case of the above-mentioned radio base station device, the possibility of an interruption of voice and disconnection of a call at the time of failure can be reduced also when a failure occurs in a transmission path. Each configuration of the above-mentioned radio base station device can be applied to this radio network controller.
A radio control system of the embodiment is for performing communication between a portable terminal and a radio network controller via a radio base station device, the radio base station device and the radio network controller being connected to each other by a plurality of transmission paths, the radio base station device and the radio network controller comprising: a call processing control unit for transferring a signaling control signal, and transmitting a failure detection packet to each of the transmission paths so as to detect failure of each of the transmission paths; a baseband signal processing unit for transferring a user data control signal; a channel management table storing a currently set up channel and a transmission path used by the channel, as being associated with each other; and a channel management control unit for, in response to detection of failure of a transmission path by the call processing control unit, receiving information indicating a state of each of the transmission paths from the call processing control unit, identifying with reference to the channel management table a channel using the transmission path having failure detected, changing the identified channel to a transmission path having no failure detected, and notifying the call processing control unit and the baseband signal processing unit of an address related to the transmission path to which the identified channel is changed.
Consequently, as in the case of the above-mentioned radio base station device, the possibility of an interruption of voice and disconnection of a call at the time of failure can be reduced also when a failure occurs in a transmission path. Each configuration of the above-mentioned radio base station device can be applied to this radio control system.
An operation control method of the embodiment is of a radio base station device, the radio base station device comprising: a call processing control unit for transferring a signaling control signal; a baseband signal processing unit for transferring a user data control signal; and a channel management control unit for managing a channel set up with the radio network controller, the operation control method comprising: a table update step in which the channel management control unit, in response to a setup and release of the channel, updates a channel management table storing a currently set up channel and a transmission path used by the channel, as being associated with each other; a failure detection step in which the call processing control unit transmits a failure detection packet to a plurality of transmission paths connected to a radio network controller so as to detect failure of each of the transmission paths; a state-of-transmission-path transmission step in which the call processing control unit, in response to detection of failure of a transmission path in the failure detection step, transmits information indicating a state of each of the transmission paths to the channel management control unit; and a transmission path change step in which the channel management control unit identifies with reference to the channel management table a channel using the transmission path having failure detected, changes the identified channel to a transmission path having no failure detected, and notifies the call processing control unit and the baseband signal processing unit of an address related to the transmission path to which the identified channel is changed.
Consequently, as in the case of the above-mentioned radio base station device, the possibility of an interruption of voice and disconnection of a call at the time of failure can be reduced also when a failure occurs in a transmission path. Each configuration of the above-mentioned radio base station device can be applied to this operation control method.
Now, the radio base station device and radio control system of the embodiment of the invention will be described with reference to the drawings. e
An RNC transmission channel management control unit 15 and the RNC wired transmission path unit 14 placed in the RNC 2 have the same functions as the transmission channel management control unit 13 and the wired transmission path unit 11 of the base station 3, respectively. The RNC 2 is shown with other components thereof omitted.
SCTP used for transmission of C-plane is a protocol that supports multihoming, by which a plurality of transmission paths can be managed with one transport layer session. SCTP has a function to monitor all transmission paths (transfer paths). That is, the call processing control unit 12 periodically transmits a failure detection packet called a HEARTBEAT chunk to all transfer paths regardless of whether the path is used for data transfer or not, so as to monitor the state of the transmission paths.
With the state monitoring, failure of a transmission path can be detected. SCTP is defined in detail in IETF RFC 2960. In this configuration, the state of all transfer paths of the wired transmission path units 11 is constantly monitored by means of SCTP used for transmission of C-plane.
As a result of monitoring as above, when a failure is detected by SCTP in a transfer path used for transmission of C-plane and U-plane, the transmission channel management control unit 13 can immediately notify the call processing control unit 12 and the baseband signal processing unit 10 to change the transmission of C-plane and U-plane to an available transfer path. The call processing control unit 12 and the baseband signal processing unit 10 control the change of the transmission path, so that the base station 3 and the RNC 2 can change the path to an available transfer path at the same time.
Consequently in the device configuration like the one shown in
In the following, an operation of the embodiment of the invention will be described.
A transmission channel is classified as a physical channel or a transport channel, according to the interface. A physical channel is a channel between the user equipment (UE) 6 and the base station 3. A transport channel is a channel between the base station 3 and the RNC 2.
Moreover, a channel is classified as a common channel or a dedicated channel, according to the function or characteristics of the transmission signal. A common channel is a channel used in common among all pieces of user equipment (UE) 6. A dedicated channel is a channel used individually by each piece of user equipment (UE) 6. Examples of channels are a common channel FACH (Forward Access Channel), a dedicated channel DCH (Dedicated Channel), and the like.
In
On the other hand, when a user call is cleared in
In a state where voice or packet communication has been started (step S6), the call processing control unit 12 performs transmission of C-plane and control of an SCTP failure detection packet, and transmission is performed via the transmission channel management control unit 13 (step S11). An SCTP signal is transmitted to the currently-used main wired transmission path unit 11a and also to the not-currently-used sub wired transmission path unit 11b. The baseband signal processing unit 10 performs transmission of U-plane (step S12).
Upon detecting failure of a transmission path by an SCTP failure detection packet, the call processing control unit 12 notifies the transmission channel management control unit 13 of failure detection information 32 (step S13).
Upon receiving a notification of the failure detection information 32, the transmission channel management control unit 13, based on the failure detection information 32, identifies a transmission path where a failure has occurred, and identifies a channel set up in the transmission path with reference to the channel management table 31. The transmission channel management control unit 13 changes the identified channel to a transmission path where no failure has occurred. In the embodiment, the transmission channel management control unit 13 determines, as the transmission path to which the identified channel is to be changed, a transmission path having the shortest travel time (ACK Time) of the failure detection packet among transmission paths where no failure has occurred (S14). In the example shown in
In order to stop the use of the main wired transmission path unit 11a where a failure has occurred, the transmission channel management control unit 13 then notifies the baseband signal processing unit 10 of a stop request 33 for U-plane (step S15), and waits until a stop response is sent back (step S16).
After receiving a stop response from the baseband signal processing unit 10, the transmission channel management control unit 13 notifies the baseband signal processing unit 10 and the call processing control unit 12 of a change control request 34 (steps S17 and S18) in order to change the transmission on the Iub to the sub wired transmission path unit 11b where no failure has occurred.
The baseband signal processing unit 10 and the call processing control unit 12 then, referring to the description of the change control request 34, controls to change the path to an available transmission path, and restarts transmission of C-plane and U-plane (steps S19 and S20). Though not shown in
In the embodiment, when a state of congestion or failure occurs in a transmission path, the transmission channel management control unit can manage a used channel and a plurality of transmission path units and can perform a change process. Consequently, in a W-CDMA based mobile communications system, when a state of congestion of a transmission path occurs due to data-intensive communication data such as moving images or the like used by many users, or also when an unexpected failure occurs in a currently-used transmission path, the transmission path for transmission between the base station 3 and the RNC 2 in the RAN 1 can be controlled to be changed for C-plane and U-plane at the same time. The embodiment has the advantage of being able to reduce the possibility of an interruption of voice and disconnection of a call at the time of failure.
While there has been described what are at present considered to be preferred embodiments of the invention, it will be understood that various modifications may be made thereto. It is intended that claims cover all modifications as fall within the true spirit and scope of the invention.
The invention can reduce the possibility of an interruption of voice and disconnection of a call at the time of failure by changing a channel set up in the transmission path where the failure has occurred to a transmission path where no failure has occurred. The invention has this great advantage, and is useful as a radio base station device or the like supporting an IP transmission system.
Number | Date | Country | Kind |
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2004-191024 | Jun 2004 | JP | national |
Filing Document | Filing Date | Country | Kind | 371c Date |
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PCT/JP05/04943 | 3/18/2005 | WO | 12/13/2006 |