WO2010074034A1 - 通信システム、フェムト基地局、コール状態制御サーバ、ホーム加入者サーバ、通信方法およびプログラム - Google Patents
通信システム、フェムト基地局、コール状態制御サーバ、ホーム加入者サーバ、通信方法およびプログラム Download PDFInfo
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- WO2010074034A1 WO2010074034A1 PCT/JP2009/071250 JP2009071250W WO2010074034A1 WO 2010074034 A1 WO2010074034 A1 WO 2010074034A1 JP 2009071250 W JP2009071250 W JP 2009071250W WO 2010074034 A1 WO2010074034 A1 WO 2010074034A1
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04W—WIRELESS COMMUNICATION NETWORKS
- H04W76/00—Connection management
- H04W76/50—Connection management for emergency connections
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- G—PHYSICS
- G01—MEASURING; TESTING
- G01S—RADIO DIRECTION-FINDING; RADIO NAVIGATION; DETERMINING DISTANCE OR VELOCITY BY USE OF RADIO WAVES; LOCATING OR PRESENCE-DETECTING BY USE OF THE REFLECTION OR RERADIATION OF RADIO WAVES; ANALOGOUS ARRANGEMENTS USING OTHER WAVES
- G01S5/00—Position-fixing by co-ordinating two or more direction or position line determinations; Position-fixing by co-ordinating two or more distance determinations
- G01S5/02—Position-fixing by co-ordinating two or more direction or position line determinations; Position-fixing by co-ordinating two or more distance determinations using radio waves
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04W—WIRELESS COMMUNICATION NETWORKS
- H04W4/00—Services specially adapted for wireless communication networks; Facilities therefor
- H04W4/02—Services making use of location information
- H04W4/029—Location-based management or tracking services
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04W—WIRELESS COMMUNICATION NETWORKS
- H04W4/00—Services specially adapted for wireless communication networks; Facilities therefor
- H04W4/90—Services for handling of emergency or hazardous situations, e.g. earthquake and tsunami warning systems [ETWS]
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- G—PHYSICS
- G01—MEASURING; TESTING
- G01S—RADIO DIRECTION-FINDING; RADIO NAVIGATION; DETERMINING DISTANCE OR VELOCITY BY USE OF RADIO WAVES; LOCATING OR PRESENCE-DETECTING BY USE OF THE REFLECTION OR RERADIATION OF RADIO WAVES; ANALOGOUS ARRANGEMENTS USING OTHER WAVES
- G01S2205/00—Position-fixing by co-ordinating two or more direction or position line determinations; Position-fixing by co-ordinating two or more distance determinations
- G01S2205/01—Position-fixing by co-ordinating two or more direction or position line determinations; Position-fixing by co-ordinating two or more distance determinations specially adapted for specific applications
- G01S2205/06—Emergency
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04W—WIRELESS COMMUNICATION NETWORKS
- H04W24/00—Supervisory, monitoring or testing arrangements
- H04W24/10—Scheduling measurement reports ; Arrangements for measurement reports
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04W—WIRELESS COMMUNICATION NETWORKS
- H04W28/00—Network traffic management; Network resource management
- H04W28/02—Traffic management, e.g. flow control or congestion control
- H04W28/06—Optimizing the usage of the radio link, e.g. header compression, information sizing, discarding information
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04W—WIRELESS COMMUNICATION NETWORKS
- H04W4/00—Services specially adapted for wireless communication networks; Facilities therefor
- H04W4/02—Services making use of location information
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04W—WIRELESS COMMUNICATION NETWORKS
- H04W64/00—Locating users or terminals or network equipment for network management purposes, e.g. mobility management
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04W—WIRELESS COMMUNICATION NETWORKS
- H04W68/00—User notification, e.g. alerting and paging, for incoming communication, change of service or the like
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04W—WIRELESS COMMUNICATION NETWORKS
- H04W84/00—Network topologies
- H04W84/02—Hierarchically pre-organised networks, e.g. paging networks, cellular networks, WLAN [Wireless Local Area Network] or WLL [Wireless Local Loop]
- H04W84/04—Large scale networks; Deep hierarchical networks
- H04W84/042—Public Land Mobile systems, e.g. cellular systems
- H04W84/045—Public Land Mobile systems, e.g. cellular systems using private Base Stations, e.g. femto Base Stations, home Node B
Definitions
- the present invention relates to a communication system, a femto base station, a call state control server, a home subscriber server, a communication method, and a program for making a call connection to a radio terminal using a femto cell, including a call to a communication device of an emergency organization.
- a radio terminal UE; user equipment
- UE user equipment
- an emergency call telephone number such as 110 for a police report or 119 for a fire report is used as the current location information of a calling radio terminal when reporting to an emergency organization.
- so-called reverse number conversion phone number conversion
- a 3G (third generation mobile communication) network will be described as an example of an existing public mobile communication network in which a UE such as a mobile phone is call-connected to another terminal or device.
- an existing 3G network system includes an HLR (Home Location Register) 10 used in an IMS (IP Multimedia subsystem) network and a communication device of an emergency organization (in FIG. 1, expressed as an emergency organization device).
- HLR Home Location Register
- IMS IP Multimedia subsystem
- PSTN fixed network
- GMSC Gateway Mobile Switching Center
- the system based on the existing 3G network accommodates UE1 to be connected for communication, and connects UE1 to any one of the above-described HLR 10, ERS11, and GMSC12.
- the system based on the existing 3G network has UTRAN (UMTS Terrestrial Radio Access Network) 93 by Node-B 91 and RNC 92 and MSC (Mobile Switching Center) 94 equipped with VLR 95.
- UTRAN UMTS Terrestrial Radio Access Network
- UE, Node-B, RNC, MSC, VLR, HLR, and GMSC in such an existing 3G network are devices compliant with 3GPP (3rd Generation Partnership Project), specific functions and processing operations are described. Is omitted.
- RAN Radio Access Network
- UTRAN uses Node-B that accommodates caller UE1 by radio communication or its Node- by means of a RANAP (Radio Access Network Application Part) message.
- SAI Service Area Identification
- SAI is set as the first position information.
- SAI first location information
- MCC Mobile Country Code
- MNC Mobile Network Code
- LAC Local Area Code
- the MSC 94 that has received the SAI stores the SAI in the VLR 95 in association with the base station specifying information that is information for specifying the base station connected to the caller, and also stores the SAI in the HLR 10 with a MAP (Mobile Application Part) message. Send.
- MAP Mobile Application Part
- the MSC 94 converts a predetermined telephone number such as an emergency call telephone number such as 110 or 119 into a telephone number assigned in advance according to the current location information of the caller UE 1, so-called reverse number conversion. I do.
- a predetermined telephone number such as an emergency call telephone number such as 110 or 119
- reverse number conversion When the telephone number transmitted from the UE 1 is included in the telephone number to be converted to the reverse number, it is converted into the call destination telephone number by reverse number conversion, and the call connection is made to the converted call destination telephone number. .
- GEOarea Geographical Area
- MSC94 Mobile Communications Service
- the MSC 94 stores the GEOarea in the VLR 95, and transmits the GEOarea together with the MAP message to the ERS 11 when the call destination by the UE1 is an emergency organization communication apparatus.
- GEOarea is assumed to be second position information.
- GEOarea (second location information) is defined in the format illustrated in FIG. 4 and indicates location information including latitude and longitude information of the transmission source device.
- a connection request (SETUP) is sent from the UE1 to the RAN 93.
- the MSC 94 Upon receiving the SETUP message from the RAN 93, the MSC 94 sends a CALLPROC as a reply to the UE 1 and sends an IAM message to the GMSC 12, thereby allowing the emergency organization to Call control is performed on the communication device 14 via the fixed network 13.
- the MSC 94 transmits a position measurement request to the UTRAN 93 using a RANAP message, and causes the UE 1 to measure position information including latitude and longitude information.
- Node-B 91 transmits GEOarea to MSC 94.
- the MSC 94 transmits the GEOarea to the ERS 11 using a MAP message.
- the ERS 11 transmits the GEOarea received from the MSC 94 to the communication device 14 of the emergency organization. As a result, a call can be made between the UE 1 and the communication device 14 of the emergency organization.
- MSC 94 when receiving a call end (DISC; Disconnect) from UE1, notifies ERS 11 of the end of the call using a MAP message.
- DISC call end
- the ERS 11 displays the location information of the request destination UE Is inquired of the HLR 10 by a MAP message. Then, the ERS 11 specifies the acquisition source based on the reply of this inquiry, and transmits a position information request by the MAP message to the MSC 94 specified as the acquisition source.
- the MSC 94 causes the UE 1 to perform location measurement using a RANAP message.
- the system based on the existing 3G network causes the UE 1 to measure the position information including the latitude / longitude information, and when the MSC 94 receives the GEOarea transmitted from the Node-B 91, the GEOarea received by the MSC 94 is received by the MAP message. It transmits to the communication apparatus 14 of an emergency organization via ERS11.
- a radio network controller acquires specific information that is unique to a radio transmitter / receiver (WTRU) and transmits a radio base station, etc.
- the unique information is transferred to the node so that the received node can use the unique information.
- Patent Document 1 Japanese translations of PCT publication No. 2007-511185
- femto cell femto cell
- a femto base station that covers a narrow communication area with a radius of about several tens of meters connects the UE to the mobile communication core network by radio connection. Covers indoor communication areas such as inside. This makes it possible to cover a communication area without incurring costs for infrastructure development of an existing macro cell base station.
- One of the objects of the present invention is to provide a communication system, a femto base station, a call state control server, a home subscriber server, a communication method, and a communication capable of responding to a call to an emergency organization communication device using a femto base station. Is to provide a program.
- a femto base station is a femto base station provided in a communication system connected to a public communication network including a communication device of an emergency organization, and the base station or a plurality of base stations including the base station
- a storage unit that stores first position information that is information for specifying the position of a set of base stations, and a notification of first position information to a communication device of an emergency organization when a call is made from a wireless terminal
- a communication control unit that adds the first position information to the SIP message and transmits the information to another device.
- a call state control server is a call state control server provided in a communication system connected to a public communication network including a communication device of an emergency organization.
- a call destination telephone in which a predetermined telephone number is predetermined according to first position information that is information for specifying a position of a femto base station to communicate with or a set of a plurality of base stations including the femto base station If the conversion table associated with the number and the INVITE SIP message including the first location information is received from the femto base station and the telephone number included in the SIP message of the INVITE is included in the conversion table, the conversion table is used. A telephone number is converted into a call destination telephone number, and the converted call destination telephone number is converted into a communication system by a SIP message of INVITE. Having a communication control unit for transmitting to the media gateway control server provided.
- a home subscriber server is a home subscriber server provided in a communication system connected to a public communication network including a communication device of an emergency organization, and includes information including longitude and latitude information of a wireless terminal.
- the second location information is a visitor location register for storing the second location information in association with the base station specifying information that is information for specifying the femto base station connected to the wireless terminal, and the wireless communication is performed when the wireless terminal is authenticated.
- a communication control unit that stores second position information received from the femto base station connected to the terminal in the visitor location register in association with the base station specifying information.
- a communication method is a communication method in a communication system having a femto base station connected to a public communication network including a communication device of an emergency organization.
- the femto base station has a call from a wireless terminal.
- the communication device of the emergency organization In order to notify the communication device of the emergency organization of the first location information that is information for specifying the location of the base station or a set of a plurality of base stations including the base station. Is added to the SIP message and transmitted to another device.
- a recording medium is a computer-readable recording storing a program to be executed by a computer of a femto base station provided in a communication system connected to a public communication network including a communication device of an emergency organization.
- the first location information which is information for specifying the location of the base station or a set of a plurality of base stations including the base station, is sent to the emergency agency.
- a program for causing a computer to execute a first communication control process in which first location information is added to a SIP message and transmitted to another device in order to notify the communication device is stored.
- FIG. 1 is a block diagram showing a system configuration example using an existing 3G network.
- FIG. 2 is a diagram showing a flow of position information transmission in the existing 3G network.
- FIG. 3 is a diagram showing a format example of the SAI.
- FIG. 4 is a diagram showing a format example of GEOarea.
- FIG. 5 is a sequence diagram showing a communication operation in the existing 3G network.
- FIG. 6 is a block diagram showing a configuration example of a communication system as an embodiment of the present invention.
- FIG. 7A is a block diagram illustrating a configuration example of a femto base station according to the present embodiment.
- FIG. 7B is a block diagram illustrating a configuration example of the call state control server of the present embodiment.
- FIG. 1 is a block diagram showing a system configuration example using an existing 3G network.
- FIG. 2 is a diagram showing a flow of position information transmission in the existing 3G network.
- FIG. 3 is a diagram showing a format
- FIG. 7C is a block diagram showing a configuration example of the home subscriber server according to the present embodiment.
- FIG. 8 is a diagram showing a flow of position information transmission in the communication system as the embodiment of the present invention.
- FIG. 9 is a sequence diagram showing a communication operation in the communication system as the embodiment of the present invention.
- a femto base station (Femto AP; Femto Access Point) connects a UE, which is a wireless terminal, and makes a call to an emergency organization using location information within a range defined in a standard such as 3GPP.
- a femto base station Femto AP; Femto Access Point
- the communication system 1 of this embodiment is connected to the HLR 10, the ERS 11, and the GMSC 12 as shown in FIG.
- the communication system 1 of this embodiment includes a Femto AP 2 that constructs a predetermined communication area, a Femto AP-OSS (Operation Support System) 3, and a PDG (Packet Data Gateway) 4 that connects to each Femto AP 2 via a network.
- AAA Authentication Authorization Accounting
- CSCF Call State Control Server
- HSS Home Subscriber Server
- MGCF Media Gateway Control Server
- FIG. 7A is a block diagram illustrating a configuration example of the Femto AP according to the present embodiment.
- Femto AP2 (indicated as Femto AP2a, 2b in Fig. 6) is a small radio base station that covers a narrow communication area with a radius of several tens of meters.
- the Femto AP 2 includes a communication control unit 21 and a storage unit 22.
- the storage unit 21 stores SAI.
- the communication control unit 21 receives a connection request from the UE 1, the communication control unit 21 adds SAI indicating the position of the base station or a set of a plurality of base stations including the base station to the SIP device and transmits it to another device.
- the SIP message is, for example, INVITE.
- Another device that is the destination of the SIP message is, for example, the CSCF 6.
- Femto AP-OSS3 is a device for setting and monitoring Femto AP2 via the network.
- PDG4 is a device that relays messages.
- AAA5 is a device that performs authentication processing of UE1 and the like.
- FIG. 7B is a block diagram illustrating a configuration example of the CSCF of the present embodiment.
- the CSCF 6 includes a communication control unit 61 and a storage unit 62.
- the storage unit 62 stores an exchange table. Since the conversion table performs the above-described reverse number conversion, for example, a predetermined telephone number such as an emergency call telephone number such as 110 or 119 is registered in association with a telephone number assigned in advance according to position information by SAI. It is a table that was made.
- the communication control unit 61 has functions such as session control, management, authentication, and routing using SIP (Session Initiation Protocol).
- the communication control unit 61 determines whether or not the telephone number included in the INVITE SIP message is included in the conversion table. When the telephone number is included in the conversion table, the communication control unit 61 converts the telephone number into a call destination telephone number based on the conversion table, and converts the converted call destination telephone number into the INVITE. It transmits to MGCF9 by the SIP message.
- the communication control unit 61 receives the INVITE SIP message including the SAI from the Femto AP 2, and if the telephone number included in the INVITE SIP message is included in the number group predetermined in the conversion table, the communication control unit 61 sends the GEOarea to the ERS 11. Is transmitted to the HSS 7 by a DIAMETER message. Further, when receiving the BYE SIP message from the Femto AP 2, the communication control unit 61 sends a call end notification to the HSS 7 by a DIAMETER message.
- FIG. 7C is a block diagram showing a configuration example of the HSS of the present embodiment.
- the HSS 7 includes a communication control unit 71 and a VLR (Visitor Location Register) 8, and manages the subscriber information of the UE1.
- the communication control unit 71 acquires the subscriber information of UE1 from the HLR 10, and stores the acquired subscriber information of UE1 in the VLR 8 for management.
- the HSS 7 has a MAP GW (MAP Gateway) function.
- the communication control unit 71 associates the GEOarea including the longitude / latitude information of the UE 1 received from the Femto AP 2 connected to the UE 1 with the base station specifying information that is information for specifying the Femto AP 2 when the UE 1 is authenticated. Stored in the VLR 8.
- the communication control unit 71 when the communication control unit 71 receives a location information request from the ERS 11 within a predetermined time after receiving the end-of-call notification from the CSCF 6, the communication control unit 71 transmits the GEOarea stored in the VLR 8 to the ERS 11.
- the MGCF 9 has a function of interconnecting the communication system according to the present embodiment with an existing telephone network, and provides a function of controlling an unillustrated MGW (media gateway).
- MGW media gateway
- the system operator operates Femto AP-OSS3 to perform initial setting of Femto AP2.
- the Femto AP-OSS 3 sets and registers the SAI (first position information) and GEOarea (second position information) in the Femto AP 2 and stores them in the storage unit 22.
- the LAC value in SAI may be determined from the installation location of Femto AP2, for example.
- the SAC value may be uniquely assigned to each Femto AP.
- GEOarea is determined by the location of Femto AP2.
- Femto AP2 When there is a call from UE1, Femto AP2 sends GEOarea to SIPCF in response to SIP authentication request (Registration), and SAI to SIPCF by INVITE.
- the SAI in a predetermined area in the header part of the SIP message and the GEOarea in a predetermined area in the body part of the SIP message.
- CSCF 6 converts the reverse number using the conversion table for the destination number. Then, the destination number from UE1 is converted into a call destination telephone number, and a call connection is made to the converted call destination telephone number.
- the HSS 7 stores the GEOarea received from the UE 1 during SIP Registration in the VLR 8 in association with the base station identification information for identifying the Femto AP 2 connected to the caller. Further, the HSS 7 transmits the SAI to the HLR 10 using the MAP message by the MAP GW function. Further, when making a call to the emergency organization, the HSS 7 transmits GEOarea to the ERS 11 and causes the ERS 11 to transmit GEOarea to the communication device 14 of the emergency organization.
- the Femto AP 2 makes an authentication request (Registration) to the HSS 7 by a call from the UE 1, and transmits a pre-set GEOarea to the HSS 7 using the Registration message.
- the HSS 7 associates the GEOarea with the base station specifying information for specifying the transmission source Femto AP 2 and stores it in the VLR 8.
- Femto AP2 when a connection request (SETUP) is sent from UE1, Femto AP2 sends CALLPROC to UE1 as a reply and adds SAI to the INVITE SIP message to CSCF6. Send.
- SETUP connection request
- Femto AP2 sends CALLPROC to UE1 as a reply and adds SAI to the INVITE SIP message to CSCF6. Send.
- the SAI is added in a predetermined area in the header part of the SIP message of INVITE.
- the CSCF 6 When the CSCF 6 receives the SIP message of the INVITE with the SAI added from the Femto AP 2, the CSCF 6 checks whether or not the telephone number included in the INVITE message is included in the number group of the conversion table as the reverse number conversion target described above. . When the received telephone number is included in the conversion table, the CSCF 6 converts the telephone number into a call destination telephone number corresponding to the SAI using the conversion table, and includes information on the call destination telephone number. An INVITE SIP message is transmitted to the MGCF 9.
- the MGCF 9 transmits an IAM message similar to that in the case of the existing 3G network described above to the GMSC 12, and performs call control via the fixed network 13 on the communication device 14 of the emergency organization that is the converted call destination telephone number. Do.
- the CSCF 6 transmits the INVITE SIP message to the MGCF 9
- the CSCF 6 transmits a position information transmission request to the HSS 7 by a DIAMETER message.
- the HSS 7 transmits the GEOarea to the ERS 11 by the same MAP message as in the case of the above-described existing 3G network, and causes the ERS 11 to transmit the GEOarea to the communication device 14 of the emergency organization.
- a call between the UE 1 and the emergency organization communication device 14 is started.
- Femto AP2 When a call end (DISC) is transmitted from UE1 to Femto AP2, Femto AP2 transmits a BYE SIP message to CSCF6.
- the CSCF 6 transmits a call end to the HSS 7 by a DIAMETER message.
- the HSS 7 When receiving the call end notification, the HSS 7 transmits a call end notification to the ERS 11 using the same MAP message as in the case of the above-described existing 3G network.
- the ERS 11 If a location information request is transmitted from the communication device 14 of the emergency organization to the ERS 11 before the time determined in advance by the Timer of the ERS 11 after the end of the talk, the ERS 11 indicates the UE that is the target of the location information request.
- the HLR 10 is inquired by the MAP message about the acquisition destination for acquiring the position information.
- the ERS 11 transmits a position information request by the MAP message to the HSS 7 specified based on the reply of the inquiry.
- the HSS 7 Upon receiving this location information request, the HSS 7 transmits the GEOarea of the corresponding Femto AP 2 stored in the VLR 8 to the ERS 11 by the MAP message, and causes the ERS 11 to transmit the GEOarea to the communication device 14 of the emergency organization.
- control by other devices is also performed, but these are determined by standards such as 3GPP and are not directly related to the features of the present invention, and thus description thereof is omitted.
- a femto cell is used within the range specified by the 3GPP standard, and an existing 3G Similar to the network, it is possible to realize a communication system that supports outgoing calls to communication devices of emergency organizations based on location information.
- a communication system using this femtocell can be introduced without the need for improvement to an existing 3G network.
- the HSS 7 sends the corresponding Femto AP2 GEOarea stored in the VLR 8, There is no need to perform position measurement again, and unnecessary processing can be reduced.
- a “system” in this specification refers to a logical collection of a plurality of devices (or functional modules that realize a specific function), and each device or each functional module is contained in a single housing. Whether or not there is no particular question.
- CSCF and MGCF realize predetermined functions, and it is not particularly questioned whether or not the configuration for realizing each function is in a single casing.
- each of the above-described embodiments according to each embodiment of the present invention is recorded.
- the function can be realized by causing a CPU (Central Processing Unit) of a computer constituting the system to perform processing by a program supplied from the recording medium.
- the CPU is provided in, for example, a communication control unit in each of the femto base station, the call state control server, and the home subscriber server.
- the present invention can be applied even when an information group including a program is supplied to the output device from the above recording medium or from an external recording medium via a network.
- the program code itself read from the recording medium realizes the novel function of the present invention
- the recording medium storing the program code and the signal read from the recording medium constitute the present invention. It will be.
- recording medium for example, flexible disk, hard disk, optical disk, magneto-optical disk, CD-ROM, CD-R, CD-RW, DVD-ROM, DVD-RAM, DVD-RW, DVD + RW, magnetic tape, non-volatile Sex memory cards, ROM, etc. may be used.
- each function in each of the above-described embodiments can be realized in the femto base station, the call state control server, and the home subscriber server controlled by the program.
- a femto base station can be used to make a call to a communication device of an emergency organization based on location information in the same manner as an existing public mobile communication network.
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Abstract
Description
2、2a、2b Femto AP
3 FemtoAP-OSS
4 PDG
5 AAA
6 CSCF
7 HSS
8 VLR
9 MGCF
10 HLR
11 ERS
12 GMSC
13 固定網
14 緊急機関の通信装置
91 Node-B
92 RNC
93 UTRAN
94 MSC
95 VLR
Claims (29)
- 緊急機関の通信装置を含む公衆通信網に接続される通信システムであって、
無線端末と無線接続するフェムト基地局を有し、
前記フェムト基地局は、前記無線端末から発呼があると、自基地局、または自基地局を含む複数の基地局の集合の位置を特定するための情報である第1の位置情報を前記緊急機関の通信装置に通知するために、該第1の位置情報をSIPメッセージ内に付加して他の装置に送信する第1の通信制御部を備えたことを特徴とする通信システム。 - 前記第1の通信制御部は、前記第1の位置情報をINVITEのSIPメッセージにおける予め定められた領域内に付加して前記他の装置に送信することを特徴とする請求項1記載の通信システム。
- 前記通信システムは、コール状態制御サーバと、ホーム加入者サーバと、メディアゲートウェイ制御サーバと、をさらに有し、
前記フェムト基地局、前記コール状態制御サーバ、および前記メディアゲートウェイ制御サーバのそれぞれは、SIPメッセージを用いて呼制御を行うことを特徴とする請求項1または2記載の通信システム。 - 前記ホーム加入者サーバは、
前記無線端末の認証の際に該無線端末と接続している前記フェムト基地局から受信した、該無線端末の経度緯度情報を含む情報である第2の位置情報が、該フェムト基地局を特定するための情報である基地局特定情報に関連付けて格納されるビジターロケーションレジスタを有することを特徴とする請求項3記載の通信システム。 - 前記コール状態制御サーバは、
所定の電話番号を前記第1の位置情報に応じて予め定められた発呼先電話番号に関連付けた変換テーブルと、
前記フェムト基地局から前記第1の位置情報を含むINVITEのSIPメッセージを受信し、該INVITEのSIPメッセージに含まれる電話番号が前記変換テーブルに含まれる場合、該変換テーブルに基づいて該電話番号を前記発呼先電話番号に変換し、変換された発呼先電話番号をINVITEのSIPメッセージにより前記メディアゲートウェイ制御サーバに送信する第2の通信制御部と、を備えたことを特徴とする請求項4記載の通信システム。 - 前記第2の通信制御部は、前記フェムト基地局から前記第1の位置情報を含むINVITEのSIPメッセージを受信し、該INVITEのSIPメッセージに含まれる電話番号が前記変換テーブルに予め定められた番号群に含まれる場合、前記ホーム加入者サーバに前記第2の位置情報を送出させるための位置情報送出要求を、DIAMETERメッセージにより該ホーム加入者サーバに送信することを特徴とする請求項5記載の通信システム。
- 前記第2の通信制御部は、前記フェムト基地局からBYEのSIPメッセージを受信すると、DIAMETERメッセージにより終話通知を前記ホーム加入者サーバに送出することを特徴とする請求項5または6記載の通信システム。
- 前記ホーム加入者サーバは、前記コール状態制御サーバから前記終話通知を受信した後、予め定められた時間内に、前記緊急機関の通信装置と接続される緊急機関サーバから位置情報要求を受信した時、前記ビジターロケーションレジスタに格納された前記第2の位置情報を該緊急機関サーバに送信する第3の通信制御部を備えたことを特徴とする請求項7記載の通信システム。
- 緊急機関の通信装置を含む公衆通信網に接続される通信システムに設けられたフェムト基地局であって、
自基地局、または該自基地局を含む複数の基地局の集合の位置を特定するための情報である第1の位置情報を記憶する記憶部と、
前記無線端末から発呼があると、前記第1の位置情報を前記緊急機関の通信装置に通知するために、該第1の位置情報をSIPメッセージ内に付加して他の装置に送信する通信制御部と、
を有することを特徴とするフェムト基地局。 - 前記通信制御部は、前記第1の位置情報を、INVITEのSIPメッセージにおける予め定められた領域内に付加して前記他の装置に送信することを特徴とする請求項9記載のフェムト基地局。
- 緊急機関の通信装置を含む公衆通信網に接続される通信システムに設けられたコール状態制御サーバであって、
前記通信システムに設けられ、無線端末と無線通信するフェムト基地局、または該フェムト基地局を含む複数の基地局の集合の位置を特定するための情報である第1の位置情報に応じて、所定の電話番号が予め定められた発呼先電話番号に関連付けられた変換テーブルと、
前記フェムト基地局から前記第1の位置情報を含むINVITEのSIPメッセージを受信し、該INVITEのSIPメッセージに含まれる電話番号が前記変換テーブルに含まれる場合、該変換テーブルに基づいて該電話番号を前記発呼先電話番号に変換し、変換された発呼先電話番号をINVITEのSIPメッセージにより前記通信システムに設けられたメディアゲートウェイ制御サーバに送信する通信制御部と、
を有することを特徴とするコール状態制御サーバ。 - 前記通信制御部は、前記フェムト基地局から前記第1の位置情報を含むINVITEのSIPメッセージを受信し、該INVITEのSIPメッセージに含まれる電話番号が前記変換テーブルに予め定められた番号群に含まれる場合、前記通信システムに設けられたホーム加入者サーバに前記無線端末の経度緯度情報を含む情報である第2の位置情報を送出させるための位置情報送出要求を、DIAMETERメッセージにより該ホーム加入者サーバに送信することを特徴とする請求項11記載のコール状態制御サーバ。
- 前記通信制御部は、前記フェムト基地局からBYEのSIPメッセージを受信すると、DIAMETERメッセージにより終話通知を前記通信システムに設けられたホーム加入者サーバに送出することを特徴とする請求項11または12記載のコール状態制御サーバ。
- 緊急機関の通信装置を含む公衆通信網に接続される通信システムに設けられたホーム加入者サーバであって、
無線端末の経度緯度情報を含む情報である第2の位置情報が、該無線端末と接続しているフェムト基地局を特定するための情報である基地局特定情報に関連付けて格納するためのビジターロケーションレジスタと、
前記無線端末の認証の際に該無線端末と接続しているフェムト基地局から受信する前記第2の位置情報を前記基地局特定情報に関連付けて前記ビジターロケーションレジスタに格納する通信制御部と、
を有することを特徴とするホーム加入者サーバ。 - 前記通信制御部は、前記通信システムに設けられたコール状態制御サーバから前記終話通知を受信した後、予め定められた時間内に、前記緊急機関の通信装置と接続される緊急機関サーバから位置情報要求を受信した時、前記ビジターロケーションレジスタに格納された前記第2の位置情報を該緊急機関サーバに送信することを特徴とする請求項14記載のホーム加入者サーバ。
- 緊急機関の通信装置を含む公衆通信網に接続され、フェムト基地局を有する通信システムにおける通信方法であって、
前記フェムト基地局は、無線端末から発呼があると、当該フェムト基地局、または該フェムト基地局を含む複数の基地局の集合の位置を特定するための情報である第1の位置情報を前記緊急機関の通信装置に通知するために、該第1の位置情報をSIPメッセージ内に付加し、
前記フェムト基地局は、前記SIPメッセージを他の装置に送信することを特徴とする通信方法。 - 前記フェムト基地局は、前記第1の位置情報をINVITEのSIPメッセージにおける予め定められた領域内に付加して前記他の装置に送信することを特徴とする請求項16記載の通信方法。
- 前記通信システムに設けられたホーム加入者サーバが、前記無線端末の認証の際に該無線端末と接続している前記フェムト基地局から受信した、該無線端末の経度緯度情報を含む情報である第2の位置情報を、該フェムト基地局を特定するための情報である基地局特定情報に関連付けてビジターロケーションレジスタに格納することを特徴とする請求項16または17記載の通信方法。
- 前記通信システムに設けられたコール状態制御サーバが、前記フェムト基地局から前記第1の位置情報を含むINVITEのSIPメッセージを受信すると、前記第1の位置情報に応じて所定の電話番号が予め定められた発呼先電話番号に関連付けて格納された変換テーブルを参照し、該INVITEのSIPメッセージに含まれる電話番号が前記変換テーブルに含まれる場合、該変換テーブルに基づいて該電話番号を前記発呼先電話番号に変換し、変換された発呼先電話番号をINVITEのSIPメッセージにより前記通信システムに設けられたメディアゲートウェイ制御サーバに送信することを特徴とする請求項18記載の通信方法。
- 前記コール状態制御サーバが、前記フェムト基地局から前記第1の位置情報を含むINVITEのSIPメッセージを受信し、該INVITEのSIPメッセージに含まれる電話番号が前記変換テーブルに予め定められた番号群に含まれる場合、前記ホーム加入者サーバに前記第2の位置情報を送出させるための位置情報送出要求を、DIAMETERメッセージにより該ホーム加入者サーバに送信することを特徴とする請求項19記載の通信方法。
- 前記通信システムに設けられたコール状態制御サーバが、前記フェムト基地局からBYEのSIPメッセージを受信すると、DIAMETERメッセージにより終話通知を前記通信システムに設けられたホーム加入者サーバに送出することを特徴とする請求項16から20のいずれか1項記載の通信方法。
- 前記ホーム加入者サーバは、前記通信システムに設けられたコール状態制御サーバから終話通知を受信した後、予め定められた時間内に、前記緊急機関の通信装置と接続される緊急機関サーバから位置情報要求を受信した時、前記ビジターロケーションレジスタに格納された前記第2の位置情報を該緊急機関サーバに送信することを特徴とする請求項18または20記載の通信方法。
- 緊急機関の通信装置を含む公衆通信網に接続される通信システムに設けられたフェムト基地局に実行させるプログラムが格納された、コンピュータに読み取り可能な記録媒体であって、
無線端末から発呼があると、自基地局、または該自基地局を含む複数の基地局の集合の位置を特定するための情報である第1の位置情報を前記緊急機関の通信装置に通知するために、該第1の位置情報をSIPメッセージ内に付加して他の装置に送信する第1の通信制御処理をコンピュータに実行させるためのプログラムが格納された記録媒体。 - 前記第1の通信制御処理では、前記第1の位置情報を、INVITEのSIPメッセージにおける予め定められた領域内に付加して前記他の装置に送信する処理を有するプログラムが格納された請求項23記載の記録媒体。
- 緊急機関の通信装置を含む公衆通信網に接続される通信システムに設けられたコール状態制御サーバに実行させるプログラムが格納された、コンピュータに読み取り可能な記録媒体であって、
前記通信システムに設けられ、無線端末と無線通信するフェムト基地局、または該フェムト基地局を含む複数の基地局の集合の位置を特定するための情報である第1の位置情報に応じて、所定の電話番号が予め定められた発呼先電話番号に関連付けられた変換テーブルを予め格納し、
前記フェムト基地局から前記第1の位置情報を含むINVITEのSIPメッセージを受信し、該INVITEのSIPメッセージに含まれる電話番号が前記変換テーブルに含まれる場合、該変換テーブルに基づいて該電話番号を前記発呼先電話番号に変換し、
変換された発呼先電話番号をINVITEのSIPメッセージにより前記通信システムに設けられたメディアゲートウェイ制御サーバに送信する処理をコンピュータに実行させるためのプログラムが格納された記録媒体。 - 前記フェムト基地局から前記第1の位置情報を含むINVITEのSIPメッセージを受信し、該INVITEのSIPメッセージに含まれる電話番号が前記変換テーブルに予め定められた番号群に含まれる場合、前記通信システムに設けられたホーム加入者サーバに前記無線端末の経度緯度情報を含む情報である第2の位置情報を送出させるための位置情報送出要求を、DIAMETERメッセージにより該ホーム加入者サーバに送信する処理をコンピュータに実行させるためのプログラムが格納された請求項25記載の記録媒体。
- 前記フェムト基地局からBYEのSIPメッセージを受信すると、DIAMETERメッセージにより終話通知を前記通信システムに設けられたホーム加入者サーバに送出する処理をコンピュータに実行させるためのプログラムが格納された請求項25または26記載の記録媒体。
- 緊急機関の通信装置を含む公衆通信網に接続される通信システムに設けられたホーム加入者サーバに実行させるプログラムが格納された、コンピュータに読み取り可能な記録媒体であって、
前記通信システムに設けられたフェムト基地局が通信接続する無線端末の認証の際に該フェムト基地局から受信した、該無線端末の経度緯度情報を含む情報である第2の位置情報を、該フェムト基地局を特定するための情報である基地局特定情報に関連付けてビジターロケーションレジスタに格納する処理をコンピュータに実行させるためのプログラムが格納された記録媒体。 - 前記通信システムに設けられたコール状態制御サーバから終話通知を受信した後、予め定められた時間内に、前記緊急機関の通信装置と接続される緊急機関サーバから位置情報要求を受信した時、前記ビジターロケーションレジスタに格納された前記第2の位置情報を該緊急機関サーバに送信する処理をコンピュータに実行させるためのプログラムが格納された請求項28記載の記録媒体。
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WO2012041156A1 (zh) * | 2010-09-30 | 2012-04-05 | 电信科学技术研究院 | 一种mtc设备接入网络的方法和设备 |
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WO2014115378A1 (ja) * | 2013-01-22 | 2014-07-31 | 日本電気株式会社 | 通信システム、フェムトセル用基地局、ゲートウェイ装置、および、制御方法 |
JP2014239305A (ja) * | 2013-06-06 | 2014-12-18 | ソフトバンクモバイル株式会社 | 小型基地局、管理サーバ、判定方法、及び判定プログラム |
JP2015050510A (ja) * | 2013-08-30 | 2015-03-16 | 日本電気株式会社 | 移動交換局および移動通信ネットワーク |
JP5993500B1 (ja) * | 2015-07-10 | 2016-09-14 | ソフトバンク株式会社 | サーバ、その制御方法及びその制御プログラム |
Also Published As
Publication number | Publication date |
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JPWO2010074034A1 (ja) | 2012-06-14 |
JP5545757B2 (ja) | 2014-07-09 |
EP2384032A1 (en) | 2011-11-02 |
CN102265655A (zh) | 2011-11-30 |
EP2384032A4 (en) | 2016-01-20 |
US9215576B2 (en) | 2015-12-15 |
US20110269420A1 (en) | 2011-11-03 |
CN102265655B (zh) | 2014-07-02 |
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