The present invention relates to a mobile station in a CDMA communication system, and more particularly to a receiving method of a common control channel in a handover area.
A conventional mobile station (radio communication apparatus) receives a physical channel SCCPCH, a common control channel a base station transmits, via a single radio link (Radio Link, RL), as specified by Max no of S-CCPCH RL (=1) described in 3GPP (3rd Generation Partnership Project) TS25.331 10.3.3.27 Physical channel capability.
In
Next, referring to
First, the mobile station 111 sends a reconnection request message as the signal 116 to the cell 1A (that is, the base station 112) during communication because of degradation in communication quality or the like. In this case, in the baseband demodulator 102, the combiner 106 has the parameters set for the common control channel to be sent from the cell 1A, and is activated in such a manner that the combiner 106 can demodulate the common control channel from the cell 1A. Here, consider the case where the mobile station 111 carries out cell switching from the cell 1A to the cell 2B before the cell 1A transmits a response message to the reconnection request message to the cell 1A, which can occur when the receiving level of the mobile station varies or its physical movement between the cells takes place. In this case, the mobile station 111 transmits to the cell 2B (the base station 113) the same reconnection request message as that transmitted to the cell 1A as the signal 117, and terminates the combiner 106 in the baseband demodulator 102 once. Then, having the parameters set for the common control channel from the cell 2B, the combiner 106 is restarted in a state it can demodulate the common control channel from the cell 2B.
As for the response to the request message such as the reconnection request message from the network side, it can sometimes be transmitted with a large delay because of the processing load of the network. The conventional mobile station is controlled as described above. Accordingly, even if the response from the cell 1A is transmitted at last as the signal 118 after the cell switching from the cell 1A to the cell 2B, the mobile station cannot receive the response message because it can receive only the common control channel from the single cell (cell 2B in this case) as described above. As is often the case in the handover area, if the mobile station carries out the cell switching further from the cell 2B to another cell before the cell 2B transmits a response message, the mobile station cannot receive the response message from the cell 2B transmitted with a delay because the same control is carried out. Repetition of such operation will bring about a timeout because a predetermined time period has elapsed without receiving any response to the request message, thereby causing a communication problem such as call disconnection.
Thus, the conventional mobile station rather easily cause a communication problem such as a call disconnection if the response to the request message via the common control channel is delayed because of the processing delay on the network side, thereby offering a problem of bringing about unstable communication.
Therefore it is an object of the present invention to provide a radio communication apparatus and receiving method of a common control channel capable of receiving the response message through the common control channel regardless of the processing delay on the network side.
According to a first aspect of the present invention, there is provided a radio communication apparatus comprising: a transmitting section for transmitting a request message to a first cell and a second cell; a first combiner for demodulating a first common control channel transmitted from the first cell; a second combiner for demodulating a second common control channel transmitted from the second cell; a baseband controller for starting the first combiner and the second combiner, and for controlling the combiners into a state in which the combiners can demodulate the first common control channel and the second common control channel simultaneously; and a radio communication controller for receiving a response message to the request message contained in one of the first common control channel and the second common control channel. Here, the baseband controller may start both the first combiner and the second combiner, when the radio communication controller issues instructions to make cell switching before receiving the response message from the first cell.
This configuration makes it possible to receive the response message contained in the common control channel positively even in a handover area in which the cell switching can occur frequently, thereby enabling the improvement of the stability of the communication.
The request message may be a message that requests reconnection of a dedicated channel, and the response message may be a message that specifies a dedicated channel to be reconnected. Thus, it can increase the success rate of the reconnection of the dedicated channel, thereby implementing the stability of the communication.
The request message may be a message that requests switching from a dedicated channel to the common control channel, and the response message may be a message that permits the switching from the dedicated channel to the common control channel. Thus, it can improve the success rate of the switching from the dedicated channel to the common control channel, thereby implementing the stability of the communication.
The request message may be a message that requests cell reselection for making cell switching during communication via the common control channel, and the response message may be a message that enables the cell reselection. Thus, it can increase the success rate of the cell reselection, thereby implementing the stability of the communication.
According to a second aspect of the present invention, there is provided a radio communication apparatus comprising: a transmitting section for transmitting a request message to a first cell and a second cell; a first combiner that is set in a time shared manner that enables the first combiner to demodulate one of a first common control channel and a physical channel containing broadcast information, which channels are transmitted from the first cell; a second combiner that is set in a manner that enables the second combiner to demodulate a second common control channel transmitted from the second cell; a baseband controller for setting the first combiner and the second combiner, and for controlling the combiners into a state in which the combiners can demodulate the first common control channel and the second common control channel simultaneously; and a radio communication controller for receiving a response message to the request message, which response message is contained in one of the first common control channel and the second common control channel. Here, the baseband controller may control into the state in which the first common control channel and the second common control channel can be demodulated simultaneously, when the radio communication controller issues instructions to make cell switching before receiving the response message from the first cell. In addition, the baseband controller may set the first combiner in a state that the first combiner can demodulate the physical channel including the broadcast information, when receiving the physical channel containing the broadcast information and the first common control channel simultaneously.
This configuration makes it possible to receive the response message contained in the common control channel positively without increasing the number of combiners even in a handover area in which the cell switching can occur frequently, thereby preventing up sizing of the circuit and enabling the improvement of the stability of the communication.
The request message may be a message that requests reconnection of a dedicated channel, and the response message may be a message that specifies a dedicated channel to be reconnected. Thus, it can increase the success rate of the reconnection of the dedicated channel, thereby implementing the stability of the communication.
The request message may be a message that requests switching from a dedicated channel to the common control channel, and the response message may be a message that permits the switching from the dedicated channel to the common control channel. Thus, it can improve the success rate of the switching from the dedicated channel to the common control channel, thereby implementing the stability of the communication.
The request message may be a message that requests cell reselection for making cell switching during communication via the common control channel, and the response message may be a message that enables the cell reselection. Thus, it can increase the success rate of the cell reselection, thereby implementing the stability of the communication.
According to a third aspect of the present invention, there is provided a receiving method of a common control channel comprising: a first step of setting a first combiner such that the first combiner can demodulate a first common control channel transmitted from a first cell; a second step of transmitting a request message to the first cell; a third step of switching a cell that carries out communication from the first cell to a second cell; a fourth step of setting a second combiner such that the second combiner can demodulate a second common control channel transmitted from the second cell; a fifth step of transmitting a request message to the second cell; and a sixth step of activating the first combiner and the second combiner to receive the response message contained in one of the first and second common control channels, when the third step is carried out before the response message to the request message is received from the first cell after the second step.
This makes it possible to receive the response message contained in the common control channel positively even in a handover area in which the cell switching can occur frequently, thereby enabling the improvement of the stability of the communication.
The best mode for carrying out the invention will now be described with reference to the accompanying drawings to explain the present invention in more detail.
The embodiment 1 in accordance with the present invention will be described.
The reference numeral 3 designates a baseband modulator-demodulator including a baseband demodulator 31 for carrying out baseband demodulation, a baseband modulator 32 for carrying out baseband modulation, and a baseband controller 33 for controlling them in accordance with the control from a radio communication controller 5. The baseband controller 33 has a memory for storing the finally used combiner, which will be described later. The baseband demodulator 31 has a configuration for implementing the characteristics of the present invention, the details of which will be described with reference to
The reference numeral 4 designates a communication path encoder including a decoder 41 and an encoder 42. A radio communication controller 5 carries out protocol control for radio communication, controls the radio stage 2, baseband modulator-demodulator 3 and communication path encoder 4, and communicates with a terminal interface 6. The terminal interface 6 has interface functions with user interface modules 7 such as a camera, video recorder, LCD and operating panel, and includes a data format converter 61, terminal interface controller 62, speech encoder/decoder 63, and individual module interface 64.
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For the primary common control channel, which is a physical channel transmitted from the base station to users in common, is used for transmitting broadcast information, the combiner 36 operates dedicatedly to enable reception of the system information, cell information and the like. The secondary common control channel (SCCPCH), which is a physical channel transmitted from the base station to users in common, is used for transmitting control information and short packets. The dedicated channel (DPCH), which is a physical channel assigned to each user, is used for transmitting data such as speech, packets and the like. The common control channel and the dedicated channel are not received simultaneously. As for the dedicated channel (DPCH), the same signal is transmitted through it from a plurality of base stations with which the mobile station can communicate. On the other hand, the secondary common control channel (SCCPCH) differs from cell to cell, and the parameters to be set to the combiners also differ from cell to cell. According to the present configuration, since the two combiners 37 and 38 can simultaneously demodulate two common control channels containing the data proper to the individual cells, the mobile station can wait for receiving common control channels simultaneously from the two cells.
An example of the operation of the mobile station with the foregoing configuration will now be described.
In
In addition, the radio communication controller 5 instructs the baseband controller 33 to activate the common control channel, that is, to activate the combiner for the common control channel from the cell A (step S405).
When a start request of the common control channel at step S405 takes place at step S601 of
Returning to
In
If the completion request of the common control channel (cell 1A) at step S502 takes place at step S701 of
The time period to be set to the timer is made longer than the maximum delay time of an expected response message. Then, the combiner 37 maintains the current state, that is, the receivable state of the common control channel from the cell 1A until the timer expires (step S703).
If the start request of the common control channel (cell 2B) at the foregoing step S504 takes place at step S601 of
Returning to
If the start request of the common control channel at step S504 takes place at step S601 of
If the completion request of the common control channels (of both the cells 1A and 2B) at step S512 takes place at step S701 of
In addition, when the common control channel protective timer expires in
According to the foregoing control procedure, the mobile station can receive the common control channels from the two cells before and after the cell switching, even if the cell switching takes place before receiving the response message after transmitting the reconnection request. Thus, the mobile station can circumvent the problem of the communication interruption by receiving the response message from the cell that transmits the response first, even if the response message delays because of some cause on the network side. Consequently, the mobile station can continue stable communication even in a handover area in which the cell switching can easily occur.
In addition, such control is also possible in which the radio communication controller 5 starts the combiner 38 for the common control channel of the cell 2B with maintaining the combiner 37 in the receivable state of the common control channel of the cell 1A in the foregoing steps S502 and S504. The present embodiment 1 can be implemented by merely modifying the physical layer without changing from the conventional control the control of the radio communication controller 5, which is carried out in accordance with the higher level protocol. This makes it possible to facilitate the design of the mobile station.
Although the embodiment 1 is described by way of example of the control procedure during the reconnection request, a similar advantage can also be achieved in other control that needs the response message via the common control channel in the state in which the cell switching is easy to occur. For example, consider a case where the transmission volume decreases during the packet communication via the dedicated channel, and the switching of the communication is made to the common control channel. In this case, the mobile station must transmit a cell update signal to the cell in communication, and receive its response message via the common control channel. Thus, carrying out the same control as that of the embodiment 1 enables the mobile station to receive the delayed response message even in the handover area in which the cell switching is easy to occur, thereby being able to increase the success rate of the switching from the dedicated channel to the common control channel.
In addition, when the cell switching takes place during transmission of a short packet via the common control channel, the mobile station must transmit the cell update signal to the target cell of the switching, and receive the response message via the common control channel. In this case, if the cell switching occurs before receiving the response message, such a procedure will be repeated as the mobile station transmits the cell update signal to the next cell, and waits for the response message via the common control channel. In this case also, the success rate of reselecting the cell without any communication interruption is increased by receiving the response message from both the cells before and after the cell switching as in the embodiment 1.
Next, an embodiment 2 in accordance with the present invention will be described. The functional block diagram of the radio communication apparatus (mobile station) of the present embodiment 2 is the same as that of
The physical channel (PCCPCH) including the broadcast information transmits the system information, cell information and the like at a fixed rate. Although the broadcast information must always be placed in a receivable state, the information is not transmitted uninterruptedly. In view of this, as in the embodiment 1, when the cell switching occurs while waiting the response message via the common control channel, the baseband demodulator 31 halts the combiner 36 operating for the broadcast information, and restarts it as the combiner for the common control channel before the cell switching. In this case, the combiner 39 is activated as the combiner for the common control channel after the cell switching. Alternatively, it is possible to restart the combiner 36 as the combiner for the common control channel after the cell switching, and to start the combiner 39 as the combiner for the common control channel before the cell switching. Then, after receiving the response message with one of the combiners 36 and 39, the baseband demodulator 31 halts the two combiners immediately, and restarts the combiner 36 as the combiner for the broadcast information, and restarts the combiner 39 in accordance with the contents of the response message.
As for the system having an occasion of receiving the physical channel including the broadcast information and the common control channel simultaneously (for example, 20 msec overlap at a period of every three seconds), it is necessary to control the combiner 36 in such a manner that the priority is assigned to receiving the broadcast information.
The foregoing control enables the combiners 36 and 39 to demodulate the two common control channels, which provide the data proper to the individual cells, simultaneously. Thus, the mobile station can receive the common control channels from the two cells before and after the cell switching. Accordingly, even if the response message is delayed because of some cause on the network side, the problem of the communication interruption can be avoided by receiving the response message from the cell that provides the response first. As a result, the mobile station can continue stable communication in a handover area in which the cell switching is likely to occur frequently.
Furthermore, using one of the combiners for both the broadcast information and common control channel by switching on a time sharing basis, the foregoing advantage can be achieved without increasing the number of the combiners. Even though the control is carried out in such a manner that the broadcast information is received first in the overlap section of the broadcast information and the common control channel, the foregoing advantage can be expected because the likeliness of receiving the response message at the overlap is low.
Filing Document | Filing Date | Country | Kind |
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PCT/JP02/06593 | 6/28/2002 | WO |