Wireless device and computer program

The wireless device with multiple SIMs and baseband processors ensures each access line connects to a different base station, improving network efficiency and aligning with sustainable development goals by diversifying network infrastructure.

JP2025117349APending Publication Date: 2025-08-12KDDI CORP
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Patent Information

Application Number
JP2024012138
Authority / Receiving Office
JP · JP
Patent Type
Applications
Current Assignee / Owner
Filing Date
2024-01-30
Publication Date
2025-08-12

AI Technical Summary

Technical Problem

Existing wireless devices with multiple SIMs often connect multiple access lines to the same base station even when the SIMs are issued by different operators, leading to inefficiencies in network utilization.

Method used

A wireless device equipped with multiple SIMs and baseband processors that establish connections to different base stations by prioritizing and adjusting connections based on SIM data, ensuring each access line connects to a distinct base station.

Benefits of technology

Enables multiple access lines to connect to different base stations, enhancing network diversity and efficiency, particularly aligning with the UN's Sustainable Development Goal 9 by promoting resilient infrastructure and innovation.

✦ Generated by Eureka AI based on patent content.

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Abstract

To provide a technique for connecting a plurality of access lines to different base stations.SOLUTION: A wireless device is a wireless device of a mobile communication network that can implement a plurality of subscriber identity modules (SIMs) including a first SIM and a second SIM. The wireless device includes first means for establishing a first connection with a connection destination base station based on data stored in the first SIM, and second means for establishing a second connection with a connection destination base station based on data stored in the second SIM. At least one of the first means and the second means establishes a connection with a base station such that the connection destination base station for the first connection is different from the connection destination base station for the second connection.SELECTED DRAWING: Figure 2
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Description

[Technical Field]

[0001] The present disclosure relates to a technique for selecting a connection destination by a wireless device capable of multiple accesses. [Background technology]

[0002] A subscriber identity module (SIM) is installed in a wireless device (WD) in a mobile communication network. The SIM stores data identifying the operator that issued the SIM and the WD's home public land mobile network (H-PLMN). The WD typically connects to a base station (BS) in the H-PLMN to communicate. If there are multiple BSs available for connection, the WD selects the BS to connect to from among the available BSs according to a predetermined priority. For example, the WD selects the BS with the strongest received signal as the BS to connect to. Alternatively, if the WD can connect to both a fifth-generation (5G) BS and a fourth-generation (4G) BS, it will prioritize connecting to the 5G BS or the 4G BS according to the settings.

[0003] Currently, WDs that can accommodate multiple SIMs are in use. Furthermore, WDs that can simultaneously activate multiple SIMs are also in use. By simultaneously activating multiple SIMs, multi-access becomes possible, and the WD can have multiple connections with the BS. In the following explanation, a wireless connection established with one BS based on one SIM is referred to as "(one) access line." For example, in the case of a WD that can simultaneously activate two SIMs, two access lines are established by simultaneously activating the two SIMs.

[0004] Non-patent document 1 discloses a switching technology that switches the access line used for communication in a multi-access WD to continue communication, and a steering technology that selects a high-quality access line to communicate. [Prior art documents] [Non-patent literature]

[0005] [Non-Patent Document 1] 3GPP TR 22.841,v2.0.0,"Study on Upper layer traffic steering,switching and split over dual 3GPP access" Summary of the Invention [Problem to be solved by the invention]

[0006] In the switching technology and steering technology disclosed in Non-Patent Document 1, it is important that multiple access lines do not connect to the same BS. However, even if two SIMs are issued by different operators, if the H-PLMNs of the two SIMs are the same, the BSs to which the two access lines connect may be the same.

[0007] The present disclosure provides a technique for connecting multiple access lines to different base stations. [Means for solving the problem]

[0008] According to one aspect of the present disclosure, a wireless device is a wireless device of a mobile communication network that can implement multiple subscriber identity modules (SIMs) including a first SIM and a second SIM, and is equipped with a first means for establishing a first connection with a destination base station based on data stored in the first SIM, and a second means for establishing a second connection with a destination base station based on data stored in the second SIM, and at least one of the first means and the second means establishes a connection with a base station such that the destination base station of the first connection is different from the destination base station of the second connection. [Effects of the Invention]

[0009] According to the present disclosure, it is possible to connect multiple access lines to different base stations. [Brief explanation of the drawings]

[0010] [Figure 1] FIG. 1 is a diagram showing an example of the configuration of a wireless device. [Figure 2] 10 is a flowchart of a process executed by a wireless device. [Figure 3] 10 is a flowchart of a process executed by a wireless device. [Figure 4] 10 is a flowchart of a process executed by a wireless device. DETAILED DESCRIPTION OF THE INVENTION

[0011] Hereinafter, the embodiments will be described in detail with reference to the accompanying drawings. Note that the following embodiments do not limit the scope of the invention as claimed, and not all combinations of features described in the embodiments are necessarily essential to the invention. Two or more of the features described in the embodiments may be arbitrarily combined. Furthermore, the same reference numerals are used for the same or similar components, and redundant explanations will be omitted.

[0012] First Embodiment FIG. 1 shows an example of the configuration of a WD according to this embodiment. According to FIG. 1, the WD can accommodate up to two SIMs 3, allowing up to two access lines to be used simultaneously. The SIMs 3 may be physical SIM cards or embedded SIMs (eSIMs) that download data for use. The WD also includes two BB units 2 that perform baseband processing and two radio units 1 that perform radio frequency band processing, corresponding to the two SIMs. The BB units 2 are also referred to as baseband processors. In the following description, when distinguishing between the two SIMs, they are referred to as SIM #1 and SIM #2, as shown in FIG. 1. Similarly, the two BB units 2 and the two radio units 1 are referred to as BB unit #1, BB unit #2, radio unit #1, and radio unit #2. Antennas for transmitting and receiving radio signals may be provided separately for radio unit #1 and radio unit #2. Alternatively, an antenna for transmitting and receiving radio signals may be shared by radio unit #1 and radio unit #2. For example, the two BB units 2 do not need to be physically separate devices, and the two BB units 2 can share the same circuits and memories.

[0013] The control unit 4 controls the entire WD. Although not shown, the WD has a user interface such as a touch panel. The BB unit #1 and wireless unit #1 establish an access line with the BS based on data stored in SIM #1, and the BB unit #2 and wireless unit #2 establish an access line with the BS based on data stored in SIM #2. In the following description, the access line established based on data stored in SIM #1 is referred to as the first line, and the access line established based on data stored in SIM #2 is referred to as the second line.

[0014] In this embodiment, the priority of SIM#1 is higher than the priority of SIM#2. Therefore, the priority of the first line established based on the data stored in SIM#1 is higher than the priority of the second line established based on the data stored in SIM#2. The priority of SIM#3 can be set, for example, by the user of the WD operating the WD. Furthermore, in this embodiment, SIM#1 and SIM#2 can be activated individually. For example, the first line is established when SIM#1 is active, and the first line is not established when SIM#1 is inactive. The same applies to SIM#2. Furthermore, in this embodiment, the user can turn on or off the "adjustment function." When the "adjustment function" is off, the WD does not perform a process to adjust the BS to which the first line is connected to and the BS to which the second line is connected to be different. On the other hand, when the "adjustment function" is on, the WD performs a process to adjust the BS to which the first line is connected to and the BS to which the second line is connected to be different. The process performed by the WD will be described below with reference to FIGS.

[0015] <Registration process when two SIMs are active> When both SIM#1 and SIM#2 are changed from an inactive state to an active state, or when both SIM#1 and SIM#2 are in an active state when the WD is powered on, the WD establishes a first line based on SIM#1 and performs a registration process, and then establishes a second line based on SIM#2. Figure 2 shows the flow chart for this process.

[0016] In S10, the control unit 4 determines whether the adjustment function is on. If the adjustment function is off, the control unit 4 does not perform the adjustment process, and therefore, in S13, the BB unit #1 selects a BS to connect to based on the data stored in SIM #1 and establishes a first line, and the BB unit #2 selects a BS to connect to based on the data stored in SIM #2 and establishes a second line.

[0017] On the other hand, if the adjustment function is on in S10, the control unit 4 causes the BB unit #1 to establish a first line with a high priority in S11. Then, the control unit 4 acquires, from the BB unit #1, specific information that identifies the BS to which the first line is connected. Thereafter, the control unit 4 notifies the BB unit 2 of the BS to which the first line is connected, and causes the BB unit #2 to establish a second line with a lower priority. At this time, the BB unit 2 establishes a second line with a BS different from the BS to which the first line is connected. That is, for example, if the BS to which the first line is connected is BS#1, even if the BS with the highest priority determined based on the data stored in SIM#2 is BS#1, the BB unit #2 establishes a second line with a BS different from BS#1, for example, with a BS with the second highest priority.

[0018] The WD identifies each BS based on, for example, identification information broadcast by the BS. The identification information may be, for example, the BS identifier. Alternatively, the BS identification information may be a combination of the PLMN number of the PLMN to which the BS belongs and the BS identifier. A single BS may be shared by multiple PLMNs. When a single BS is shared by multiple PLMNs, even if the combination of the PLMN number and the BS identifier is used as the identification information, the same BS broadcasts multiple pieces of identification information corresponding to each of the multiple PLMNs. In such a case, the WD may recognize the same BS as different BSs. Therefore, for example, the identification information may be a combination of the BS manufacturer and a serial number assigned by the manufacturer, like a MAC address. Furthermore, the identification information may be a combination of the latitude and longitude (location information) where the BS is located and an arbitrary number (arbitrary information). The arbitrary number may be used to identify one BS from multiple BSs located in the same location. The BS may be configured to periodically broadcast identification information.

[0019] If the BS is functionally divided into a central unit (CU), a distributed unit (DU), and a radio unit (RU), the BS-specific information may be the specific information of any one of the CU, DU, and RU. Alternatively, the BS-specific information may be a combination of one or more of the specific information of the CU, DU, and RU. Furthermore, if the CU and DU are separated into a control plane and a data plane, the specific information of the data plane unit may be used.

[0020] Next, a case will be described in which, when only one SIM 3 is in the active state and an access line is established through that SIM 3, another SIM 3 is changed to the active state.

[0021] <Registration process when SIM#2 is activated after the first line is established> As shown in Fig. 3, the control unit 4 determines whether the adjustment function is on in S20. If the adjustment function is off, the control unit 4 does not perform the adjustment process, and therefore, in S22, the BB unit #2 selects a BS to connect to based on the data stored in SIM #2 and establishes a second line. On the other hand, if the adjustment function is on in S20, the control unit 4 notifies the BB unit #2 of the BS to which the first line is connected in S21, causing the BB unit #2 to establish a second line. At that time, the BB unit #2 establishes a second line with a BS different from the BS to which the first line is connected.

[0022] <Registration process when SIM#1 is activated after the second line is established> As shown in FIG. 4, in S30, the control unit 4 causes the BB unit #1 to establish a first line and obtains from the BB unit #1 specific information about the BS to which the first line is connected. In S31, the control unit 4 determines whether the adjustment function is on. If the adjustment function is off, adjustment processing is not necessary, and the processing in FIG. 4 ends. On the other hand, if the adjustment function is on, the control unit 4 notifies the BB unit #2 of specific information about the BS to which the first line is connected. In S32, the BB unit #2 determines whether the BS to which the second line is connected is the same as the BS to which the first line is connected. If they are not the same, the processing in FIG. 4 ends. On the other hand, if the BS to which the second line is connected is the same as the BS to which the first line is connected, the BB #2 performs a change processing to change the BS to which the second line is connected to another BS. The change processing may be a handover initiated by the WD. Alternatively, the change processing may be, for example, a process of releasing the current second line and establishing a new second line.

[0023] <When the adjustment function is turned on with two lines established> As explained in Figures 2 to 4, when the adjustment function is off, BB unit #1 and BB unit #2 decide the BS to connect to according to their respective priorities, so the BS to which the first line is connected and the BS to which the second line is connected may be the same. In this case, when the adjustment function is changed to on, control unit 4 notifies BB unit #2 of the BS to which the first line is connected. BB unit #2 performs the above change process when the BS to which the second line is connected and the BS to which the first line is connected are the same.

[0024] <Handover (HO) when coordination function is on> When the BS to which the first line is connected is changed due to handover, the BB unit #1 notifies the control unit 4 of the changed BS, and the control unit 4 notifies the BB unit #2 of the changed BS to which the first line is connected. The BB unit #2 performs the above-mentioned change process when the BS to which the second line is connected and the BS to which the first line are connected are the same. On the other hand, the BB unit #2 controls so as not to hand over to the BS to which the first line is connected. For example, when the BS to which the second line is connected or a control node in the PLMN to which the BS belongs determines the handover destination, the BB unit #2 reports a low connection quality with the BS to which the first line is connected to the BS to which the second line is connected, or does not report the BS to which the first line is connected, so as to prevent handover to the BS to which the first line is connected. When the BB unit #2 determines the handover destination, the BB unit #2 selects a BS different from the BS to which the first line is connected. Furthermore, when handover occurs to the BS to which the first line is connected, the above-mentioned change process is performed.

[0025] <Transition from idle state to active state> The WD also establishes an access line when transitioning from idle to active state. The flowcharts for this are the same as those explained in Figures 2 to 4.

[0026] In the above description, when the adjustment function is on, the control unit 4 obtains the BS to which the first line is connected from the BB unit #1 and notifies the BB unit #2. However, the BS to which the first line is connected can be exchanged directly between the BB unit #1 and the BB unit #2 without going through the control unit #4. In this case, the control unit 4 only needs to notify the BB unit #1 and the BB unit #2 of the on / off status of the adjustment function. Furthermore, a register indicating whether the adjustment function is on or off can be provided, and the control unit 4 can set information indicating whether the adjustment function is on or off in the register. In this case, the BB unit #1 and the BB unit #2 access the register to determine whether the adjustment function is on or off. Furthermore, the configuration can also be such that specific information of the BS to which the first line is connected can be set in the register.

[0027] Furthermore, although the embodiment has been described using a WD that can accommodate up to two SIMs as an example, this embodiment can also be applied to a WD that can accommodate three or more SIMs. Generally speaking, it is assumed that SIM#1 to SIM#N (N is an integer greater than or equal to 2) can be accommodated in the WD, and that priority is set to decrease in the order of SIM#1 to SIM#N. Furthermore, access lines based on SIM#1 to SIM#N are referred to as the first line to the Nth line. When all SIMs are in an active state, the WD establishes access lines in the order of the first line to the Nth line. The BS connected to the kth line (k is an integer from 2 to N) is selected to be different from the BS connected to each of the first line to the (k-1)th line. Furthermore, when SIM#n (n is an integer from 1 to N) is changed from an inactive state to an active state, the BS connected to the nth line is selected to be different from the BS connected to the access line with a higher priority. Furthermore, if the BS connected to any of the first line to the (n-1)th line is changed to the BS to which the nth line is connected, the BS connected to the nth line is changed to a BS different from the BS connected to the first line to the (n-1)th line.

[0028] With the above configuration, it is possible to set up multiple access lines connected to different BSs by the WD.

[0029] Second Embodiment Next, the second embodiment will be described, focusing on the differences from the first embodiment. In the first embodiment, priority was set to SIM3. Therefore, when an access line based on a SIM with a higher priority is established or when a handover of the access line based on a SIM with a higher priority occurs, it may become necessary to change the BS to which the access line based on a SIM with a lower priority is connected. In this embodiment, a case will be described in which priority is not set to SIM3, and therefore priority is not set to the access line.

[0030] <Registration process when the adjustment function is on and multiple SIMs are active> In this embodiment, the WD establishes access lines based on each SIM in an arbitrary order. When establishing an access line, the WD connects to a BS different from the BS to which the previously established access line is connected. The arbitrary order may be a fixed order or may be determined by the control unit 4 each time.

[0031] <Registration process when the adjustment function is on and one SIM is changed to the active state> When establishing an access line based on the one SIM, the WD connects to a BS different from the BS to which the already established access line is connected.

[0032] <Handover (HO) when coordination function is on> The WD controls the BS to which the access line is connected after handover so that it is different from the BS to which the already established access line is connected.

[0033] <Idle to active state transition when throttling is on> As in the registration process, when establishing an access line, the WD connects to a BS different from the BS to which the already established access line is connected.

[0034] With the above configuration, it is possible to set up multiple access lines connected to different BSs by the WD.

[0035] In the above embodiment, the WD can turn the adjustment function on and off, and when the adjustment function is on, it performs an adjustment process to connect multiple access lines to different BSs. However, the adjustment function may be fixed to on and cannot be turned off by the user. Furthermore, if three or more SIMs can be installed, at least two SIMs can be subject to the adjustment process, and the remaining SIMs can be excluded from the adjustment process. For example, in the case of a WD that can install M (M is an integer greater than or equal to 3) SIMs #1 to #M, SIMs #1 to #m (m is an integer from 2 to M) can be subject to the adjustment process, and SIMs #(m-1) to #M can be excluded from the adjustment process. In this case, the BSs to which m access lines connected based on SIMs #1 to #m are adjusted to be different from each other, but the BSs to which access lines connected based on SIMs #(m-1) to #M are each connected are selected based on the priority of each SIM. Furthermore, in such a case, rather than allowing SIM#1 to SIM#m that are the subject of the adjustment process to be individually set to active or inactive state, the configuration may be such that it allows the group of SIM#1 to SIM#m to be set to active or inactive state.

[0036] The present disclosure also provides a computer program that, when executed by one or more processors in an apparatus having one or more processors, causes the apparatus to function as the WD described above, and a computer-readable storage medium storing the computer program. The present disclosure also provides a method executed by a WD, a computer program that causes an apparatus having one or more processors to execute the method, and a computer-readable storage medium storing the computer program.

[0037] As a result, it is possible to connect multiple access lines to different base stations, which will contribute to Goal 9 of the United Nations' Sustainable Development Goals (SDGs), which is to "Build resilient infrastructure, promote sustainable industrialization, and foster innovation."

[0038] The invention is not limited to the above-described embodiment, and various modifications and variations are possible within the scope of the gist of the invention. [Explanation of symbols]

[0039] 1: Wireless unit, 2: BB unit, 3: SIM, 4: Control unit

Claims

1. 1. A wireless device of a mobile communications network capable of implementing multiple subscriber identity modules (SIMs), including a first SIM and a second SIM, comprising: a first means for establishing a first connection with a destination base station based on data stored in the first SIM; second means for establishing a second connection with a destination base station based on data stored in the second SIM; Equipped with A wireless device, wherein at least one of the first means and the second means establishes a connection with a base station such that a destination base station for the first connection is different from a destination base station for the second connection.

2. 2. The wireless device of claim 1, wherein at least one of the first means and the second means, when an adjustment function is on, establishes a connection with a base station such that a destination base station of the first connection is different from a destination base station of the second connection.

3. 2. The wireless device according to claim 1, wherein each of the first means and the second means selects a base station different from a destination base station of a connection already established by the other means to establish a connection.

4. 2. The wireless device according to claim 1, wherein, when the first connection has already been established, the second means selects a base station different from a destination base station of the first connection to establish the second connection.

5. 2. The wireless device according to claim 1, wherein the second means performs processing to change the destination base station of the second connection when the first means establishes the first connection with the destination base station of the second connection.

6. The wireless device according to claim 1 , wherein a destination base station of the first connection and a destination base station of the second connection are each identified by base station identification information.

7. 7. The wireless device according to claim 6, wherein the specific information includes at least one of an identifier of the base station, a combination of the identifier of the base station and a public land mobile network (PLMN) number, a combination of an identifier of a manufacturer of the base station and a serial number assigned to the base station by the manufacturer, and a combination of location information where the base station is located and arbitrary information.

8. A computer program product which, when executed on one or more processors of an apparatus having one or more processors, causes the apparatus to function as a wireless device according to any one of claims 1 to 7.