WO2004017581A1 - Multimedia broadcast and multicast service paging - Google Patents

Multimedia broadcast and multicast service paging Download PDF

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Publication number
WO2004017581A1
WO2004017581A1 PCT/KR2003/001650 KR0301650W WO2004017581A1 WO 2004017581 A1 WO2004017581 A1 WO 2004017581A1 KR 0301650 W KR0301650 W KR 0301650W WO 2004017581 A1 WO2004017581 A1 WO 2004017581A1
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WO
WIPO (PCT)
Prior art keywords
mbms
paging
frame
tmgi
indicator
Prior art date
Application number
PCT/KR2003/001650
Other languages
French (fr)
Inventor
Soeng-Hun Kim
Sung-Ho Choi
Kook-Heui Lee
Shanpeng Xiao
Detao Li
Chunying Sun
Original Assignee
Samsung Electronics Co., Ltd.
Beijing Samsung Telecom R & D Center
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
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Publication date
Application filed by Samsung Electronics Co., Ltd., Beijing Samsung Telecom R & D Center filed Critical Samsung Electronics Co., Ltd.
Priority to US10/525,146 priority Critical patent/US7242919B2/en
Publication of WO2004017581A1 publication Critical patent/WO2004017581A1/en

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Classifications

    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04LTRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
    • H04L12/00Data switching networks
    • H04L12/02Details
    • H04L12/16Arrangements for providing special services to substations
    • H04L12/18Arrangements for providing special services to substations for broadcast or conference, e.g. multicast
    • H04L12/189Arrangements for providing special services to substations for broadcast or conference, e.g. multicast in combination with wireless systems
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04LTRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
    • H04L51/00User-to-user messaging in packet-switching networks, transmitted according to store-and-forward or real-time protocols, e.g. e-mail
    • H04L51/58Message adaptation for wireless communication
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W4/00Services specially adapted for wireless communication networks; Facilities therefor
    • H04W4/06Selective distribution of broadcast services, e.g. multimedia broadcast multicast service [MBMS]; Services to user groups; One-way selective calling services
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W68/00User notification, e.g. alerting and paging, for incoming communication, change of service or the like
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W76/00Connection management
    • H04W76/40Connection management for selective distribution or broadcast

Definitions

  • This invention relates to a method for paging users in mobile communication system, and more particularly to a method of paging users using point-to- multipoint group for multimedia broadcast/multicast service in mobile communication system.
  • Basic operation process of existing paging Paging in existing communication system is a point-to-point user-based paging, whose basic operation process is shown in Figure 3: After a mobile terminal is registered in the network, it will be distributed to a paging group. There is a Paging Indicator (hereinafter referred to as PI) 204 for each paging group. When a terminal belonging to a paging group is paged, PI corresponding to this paging group will appear on the Paging indicator Channel (hereinafter referred to as PICH) 202 cyclically. When the terminal detects its PI on PICH, it will start to receive specific paging message from Secondary Common Control Physical Channel (hereinafter referred to as SCCPCH) 201. In other words, PICH only carries PI information, and paging message is carried by SCCPCH.
  • the explanation for paging message is the upper layer function of User Equipment (UE) protocol.
  • UE User Equipment
  • DRX Receiving
  • Terminal i.e. terminal stays in sleep mode when it is in idle mode. In this mode, Terminal will consume less power. Only when terminal detects its PI, terminal will be woken up to receive specific paging message.
  • PI monitoring by terminal is also cyclical, and the length of the cycle is determined by the network. The larger the cycle is, the less possibly terminal wakes up from sleep, and thus the longer terminal battery standby time will be, but the cost is to reduce the response speed of terminal to network paging.
  • PICH is the pure-physical channel used to carry PI, and has been described in detail in3GPP specification TS 25.211 v4.2.0.
  • Figure 4 shows its frame structure.
  • the length of a PICH wireless frame is 10ms, and the frame is composed of 300 bits, in which 288 bits are used to carry PI and the remaining 12 bits are reserved for future use and won't be transmitted.
  • a Paging Indicator (PI) is composed of several bits. According to the different length of PI, a PICH frame can carry 18, 36, 72 or 144 Pis. Np indicates the number of Pis in a PICH frame.
  • the position of PI in a frame is calculated according to International Mobile
  • IMSI Subscriber Identity number
  • PI DRX Index mod Np. Wherein DRX Index equals to IMSI div 8192. "mod” indicates the modulus operation, and “div” indicates round-off operation for division.
  • Table 1 Mapping relation between paging indicator.P q and PICH bits
  • FIG. 5 shows the frame structure of existing PCH's Node B and Radio Network Controller interface frame protocol (hereinafter referred to as PCH lubFP).
  • PCH lubFP is used to transfer paging information between base station (hereinafter referred to as Node B) and Radio Network Controller (hereinafter referred to as RNC).
  • RNC Radio Network Controller
  • 3GPP specification TS25.435 v4.2.0 has given detailed description for existing PCH lubFP frame structure.
  • PCH lubFP frame includes PI information and paging message.
  • the first frame includes PI information and the second includes paging message. Descriptions for the components shown in Figure 5 are as follows:
  • 3GPP specification TS 23.846 vl .1.0 describes the MBMS service paging and radio bearer setup process.
  • Figure 6 shows the signalling flow of paging and radio bearer setup. Detailed descriptions for each step of the flow are given in the following.
  • 601 BM-SC sends data to SGSN via GGSN.
  • 602 SGSN sends "MBMS notification" to UTRAN to indicate that a certain MBMS service will be started.
  • 603 UTRAN sends "MBMS notification" to UE in MBMS service area.
  • 604 UTRAN sends a "MBMS service request” message to SGSN to request service.
  • RAB radio access bearer
  • 607 UE that has activated MBMS service sends a "MBMS radio request " message to the network after receiving "MBMS notification”.
  • UTRAN establishes radio bearer (hereinafter referred to as RB) over the air-interface and sends a "MBMS radio allocation" message to UE.
  • RB radio bearer
  • paging process 603 and radio bearer setup process 608 are performed independently.
  • Radio Network Controller (hereinafter referred to as RNC) sends "Paging Type 1" message to UE via base station (hereinafter referred to as Node B).
  • This message includes information on following several aspects: - Paging record list listing the identity of UE that is paged by the message.
  • BCCH modification info representing Modification indication for system broadcast information
  • Paging Record includes following several parameters:
  • UE Identity representing the identity of UE
  • IMSI International Mobile Subscriber Identity
  • TMSI Traffic-Temporary Mobile Subscriber Identity
  • P-TMSI Packet-Temporary Mobile Subscriber Identity
  • U-RNTI UE- Radio Network Temporary Identity
  • the paging technology in existing mobile communication system is point-to- point paging based on UE and must page for every user of the service one-by-one, which will not only waste radio resources but also result in extremely low efficiency of paging.
  • this invention provides a method of paging users using point-to-multipoint group for MBMS in mobile communication system on the basis of existing paging mechanism. All users utilizing the service can be paged at the same time through point-to-multipoint paging and radio resources sharing, which can effectively make use of radio resources and improve paging efficiency.
  • existing paging process and radio resource setup process are performed separately.
  • this invention provides a paging method for combining the paging process and the radio resource setup process to try to reduce uplink response.
  • this invention also designs a paging message that can carry MBMS service parameters; Adds MBMS Service Identity number to the reserved 12 bits of PICH frame structure; and extends existing PCH lubFP frame structure to send paging information (including PI information and paging message) from RNC to Node B so that it can be transferred over the air-interface.
  • a method of paging UEs to provide MBMS service in mobile communication system comprises steps of:
  • BM— SC Broadcast and multicast service center
  • SGSN Service GPRS Supporting Node
  • GGSN Gateway GPRS Supporting Node
  • SGSN Service GPRS Supporting Node
  • Gateway GPRS Supporting Node GGSN
  • RNC Radio network controller
  • RNC After RNC receives the notification from SGSN, it organizing the frame according to a paging channel (PCH) Iub frame protocol (FP) according to the notification, wherein the frame includes a MBMS Indicator bit (MI) to the frame of the frame protocol (PCH lubFP), which includes MBMS PI and paging message;
  • PCH paging channel
  • FP frame protocol
  • MI MBMS Indicator bit
  • Radio Network Controller sending the frame of frame protocol (PCH lubFP) to Base Station (Node B); and
  • Base Station Node B) transmitting a Temporary MBMS Group Identity
  • MBMS TMGI MBMS TMGI
  • PI MBMS Paging Indicator
  • SCCPCH Control Channel
  • the method of providing MBMS paging for UE in mobile communication system includes following steps:
  • Broadcast and Multicast Service Center (a) Broadcast and Multicast Service Center (BM— SC) sends data to Service General Packet Radio Service Supporting Node (SGSN) via Gateway General Packet Radio Service Supporting Node (GGSN);
  • SGSN Service General Packet Radio Service Supporting Node
  • GGSN Gateway General Packet Radio Service Supporting Node
  • SGSN After receiving data sent from GGSN, SGSN sends a MBMS notification to Radio Network Controller (RNC);
  • RNC Radio Network Controller
  • RNC After receiving the notification from SGSN, RNC organizes the frame of Paging Channel RNC and node interface frame protocol (PCHIubFP) according to the content of the notification, and adds MBMS indication bit (MI) to the PCHIubFP frame, which includes PI and paging message of MBMS service.
  • the paging message carries the service information of MBMS service;
  • RNC sends the PCHIubFP frame to Node B;
  • Node B After receiving the frame of the frame protocol (PCHIubFP), Node B firstly examines the MBMS indication bit (MI) of the frame of the frame protocol (PCHIubFP) received. If MI equals 0, it indicates that the frame of the frame protocol (PCHIubFP) belongs to conventional paging; if MI equals 1, it indicates that the frame of the frame protocol (PCH lubFP) includes MBMS service information;
  • MI MBMS indication bit
  • Node B reads PI to construct PICH and makes use of the last 12 bits reserved in PICH to carry Temporary MBMS Group Identifier (MBMS TMGI) or MBMS PI;
  • Node B reads MBMS paging message to construct Secondary Common Control Physical Channel (SCCPCH) that carries MBMS paging message.
  • SCCPCH Secondary Common Control Physical Channel
  • Base Station (Node B) sends Paging Indicator Channel (PICH) frame that carries PI and Secondary Common Control Physical Channel (SCCPCH) frame that carries paging message for User Equipment (UE) to read;
  • PICH Paging Indicator Channel
  • SCCPCH Secondary Common Control Physical Channel
  • UE firstly examines PICH. If UE has activated MBMS service, it reads the last 12 bits of PICH to determine if the current paging service is what it needs; if the service matches, UE then reads SCCPCH to acquire MBMS paging message; (j) If the paging message received by UE includes radio bearer parameters, UE establishes radio bearer during paging process; otherwise, UE doesn't establish radio bearer during paging process.
  • UE decides to whether it should send a paging response message to the network according to the requirements of the system or not.
  • MBMS Pi-bitmap is included in the PI in the above step (c), and MBMS Indicator (MI) and the MBMS Pi-bitmap are placed in the reserved part and the extensible part of the frame structure of the frame protocol (PCHIubFP) respectively.
  • MBMS Group Identity mask TMGI mask
  • MI MBMS Indicator
  • MI MBMS TMGI mask
  • MBMS Indicator (MI) described in the above step (c) is placed in the reserved part of the frame structure of the frame protocol (PCHIubFP).
  • the last 12 bits reserved for future use by prior art can be used to carry MBMS Service Identity TMGI.
  • the first mode is to divide the reserved 12 bits in the Paging Indicator Channel (PICH) into Nm groups and the number of groups Nm can be either fixed or variable.
  • the value of Nm can be 1, 2, 3, 4, 6, or 12; each group stores a MBMS Paging Indicator (MPI).
  • MPI MBMS Paging Indicator
  • MPI Temporary MBMS Group Identity
  • MPI (TMGI div 8192) mod Nm.
  • TMGI Temporary MBMS Group Identity
  • TMGI Temporary MBMS Group Identity
  • D Mod
  • Mod indicates modulus operation.
  • the second mode is to divide the reserved 12 bits of Paging Indicator Channel (PICH) into m MBMS Paging Groups (MPG) and the number of groups m can be either fixed or variable.
  • the value of m can be 1 , 2, 3, 4, 6, or 12; each group stores a MBMS Group Identity mask (TMGI mask).
  • TMGI Paging Indicator Channel
  • mod indicates modulus operation
  • i indicates group position.
  • the third mode is to select several bits from the reserved 12 bits of Paging Indicator Channel (PICH) to be used as MBMS Paging Indicator (MPI).
  • PICH Paging Indicator Channel
  • this invention For paging message of MBMS service information, this invention provides two schemes for MBMS paging message.
  • the first scheme is to modify existing "Paging Type 1" message, i.e. add a new element "Terminating MBMS Call” to the definition of "Paging Cause” of existing paging message "Paging Type 1"; add a new element “Temporary MBMS Group Identity (MBMS TMGI)" to the definition of "UE Identity” of existing paging message "Paging Type 1"; Paging message "Paging Type 1" can include
  • MBMS Service Identity (MBMS Service ID); Paging message "Paging Type 1" can also include Response Indicator and Activation time.
  • MBMS Paging Another scheme is to design a new paging message called "MBMS Paging", which can include information on following several aspects: - MBMS Service Identity (MBMS TMGI) ;
  • MBMS Service ID (MBMS Service ID) ;
  • radio bearer parameters which can include: Radio Bearer information (RB info), Transfer
  • TrCH info Physical Channel information (PhyCH info),
  • Code information (Code info) , Transfer Format Set (TFS), Transfer Format
  • UE adopts discrete receiving mode to receive MBMS paging, which can reduce power consumption of terminal.
  • MBMS paging proposed by this invention makes use of existing discrete receiving cycle (in each cycle, UE is woken up to read PICH channel) and no new discrete receiving cycle for MBMS is designed. So woken-up times of UE hasn't been increased. Therefore, the power consumption of UE is reduced, and the standby time of UE is extended.
  • MBMS paging in this invention is service-based group paging of point-to- multipoint, which improves paging efficiency and radio resources utilization rate and avoids paging channel congestion.
  • This invention makes full use of paging resources in existing system and redesigns PICH frame structure, PCH lubFP frame structure as well as paging message, which has no effect on existing paging and enables the system to have the backward compatibility.
  • Figure 1 is a schematical view illustrating of MBMS system structure
  • Figure 2 is a flow chart illustrating MBMS multicast service
  • Figure 3 is a schematical view illustraing paging process according to prior art
  • Figure 4 is a structure diagram illustrating PICH frame structure according to prior art
  • Figure 5 is a diagram illustrating PCH lubFP frame structure according to prior art
  • Figure 6 is a diagram illustrating paging process and radio bearer setup process according to prior art
  • Figure 9 is a schematic view of illustrating an example for MBMS PICH bitmap
  • Figure 10 is a diagrame illustrating the PCH lubFP frame structure of according to the first scheme
  • Figure 11 a diagram of illustrating the PCH lubFP frame structure according to the second scheme
  • Figure 12 is a flow chart illustrating MBMS service process
  • Figure 13 is a flow chart illustrating MBMS paging signalling process
  • Figure 14 is a flowchart of UTRAN paging processing
  • Figure 15 is a schematic view illustrating the processing of PCH lubFP performed by Node B.
  • MBMS Multimedia Broadcast/Multicast Service
  • 3 GPP 3 rd Generation Partnership Project
  • MBMS service is a unidirectional point-to-multipoint (p-t-m) service. Its most remarkable characteristic is that it can make use of radio resources and network resources efficiently.
  • MBMS service has two modes, i.e. multicast and broadcast.
  • the difference between multicast and broadcast exists in that before receiving multicast service, it is necessary to subscribe in advance from service provider, join relevant multicast group, and the reception of multicast service needs to be paid.
  • paging is needed to notify user of the service that will be provided right away.
  • This invention is used to page User Equipment (hereinafter referred to as UE) in Multimedia Broadcast/Multicast Service's MBMS.
  • UE User Equipment
  • MBMS network structure is based on the core network of General Packet
  • SC is the service control center of MBMS system.
  • Gateway GPRS Supporting Node (hereinafter referred to as GGSN) 102 and Service GPRS Supporting Node (hereinafter referred to as SGSN ) 103 compose the transmission network of MBMS service and provide route for data transfer.
  • Home Location Register (hereinafter referred to as HLR ) 106 saves the data related to the user and can provide services like user's authentication.
  • UMTS Terrestrial Radio Access Network (hereinafter referred to as UTRAN) 104 provides radio resources for MBMS service over the air-interface. Uul07 indicates the radio interface between terminal and access network.
  • User Equipment (hereinafter referred to as UE) 105 is the terminal device used to receive data. Radio resources used by MBMS service are not dedicated for one user, but are shared by all users using this service.
  • MBMS multicast service flow is described below with reference to Figure 2.
  • step of S000"Subscription establish the relationship between user and service provider.
  • Authorized user can receive related MBMS service.
  • service provider notifies user of the service that will be provided. For example, the system will rebroadcast a football match in the urban district of Beijing at 7:00 p.m.
  • step of S002 "joining” user desire to joins a group, i.e. the user informs the network that he or she is willing to receive this multicast service.
  • step of S003 "MBMS multicast mode bearer setup" establish network resources for MBMS data transfer.
  • step S004 "MBMS notification”, notify user of MBMS data transfer that will be performed right away.
  • step S005 “data transfer”, indicate the process of transferring MBMS service data to user.
  • step of 006 "MBMS multicast bearer release”, indicate to release network resources after MBMS service data transfer have been performed.
  • the "leaving" step of S007 corresponds to the "joining" step of S002, It is indicated that a user is leaving a group, i.e. the user doesn't want to receive the data of a certain service any more.
  • This invention emphasizes on the research of 004 "MBMS notification” process, which is called as “Multimedia Broadcast/Multicast Service Paging (MBMS paging)" in this invention.
  • MBMS notification Multimedia Broadcast/Multicast Service Paging (MBMS paging)
  • UE paging flow used for MBMS service of this invention is described below with reference to Figure 12.
  • BM-SC901 sends data to SGSN903 via GGSN902.
  • SGSN903 receives data from GGSN902, it sends MBMS Notification to Radio Network Controller 904 (hereinafter referred to as RNC) to inform the relevant MBMS service information.
  • RNC Radio Network Controller 904
  • RNC904 receives MBMS Notification from SGSN, it organizes the frame of Paging Channel & Radio Network Controller and Node B Interface Frame Protocol (hereinafter referred to as PCHIubFP) according to the content of the notification, i.e. add MBMS Indicator .bit (MI) in PCHIubFP frame.
  • PCHIubFP frame includes MBMS PI and Paging Message.
  • Paging Message carries MBMS Service Information.
  • RNC904 sends PCHIubFP frame to Base Station 905 (Node B).
  • Node B After Node B receives the frame of PCHIubFP, it firstly examines the MBMS indication bit (hereinafter referred to as MI) of the PCHIubFP frame received. If MI equals 0, it indicates that the PCHIubFP frame belongs to conventional paging; if MI equals 1, it indicates that the PCHIubFP frame includes MBMS service information;
  • MI MBMS indication bit
  • Base Station 905 reads PI to construct Paging Indicator Channel (hereinafter referred to as PICH) and makes use of the last 12 bits reserved in PICH to carry Temporary MBMS Group Identifier (hereinafter referred to as TMGI) or MBMS PI; Base Station 905 (Node B) reads MBMS paging message to construct Secondary Common Control Physical Channel (SCCPCH) to carry MBMS paging message. Then, Base Station 905 (Node B) sends Paging Indicator Channel frame that carries PI and Secondary Common Control Physical Channel (SCCPCH) frame that carries paging message for User Equipment (UE) 907 to read.
  • PICH Paging Indicator Channel
  • TMGI Temporary MBMS Group Identifier
  • SCCPCH Secondary Common Control Physical Channel
  • UE 907 firstly examines PICH. If UE has activated MBMS service, it reads the last 12 bits of PICH to determine if the current paging service is what it needs; if the service matches, UE907 then reads SCCPCH to acquire MBMS paging message.
  • radio bearer parameters have two kinds, i.e. point- to-multipoint radio bearer and point-to-point radio bearer. If the number of users is large, point-to-multipoint radio bearer is deployed; otherwise, point-to- point radio bearer is deployed. There are multiple kinds of modes for RNC to determine radio bearer parameters, e.g. default point-to-multipoint radio bearer or RNC acquiring information on user's number from other channels.
  • radio bearer parameters can include: Radio Bearer Information
  • RB info Transfer Channel Information
  • TrCH info Transfer Channel Information
  • Physical Channel Information Physical Channel Information
  • Code Information Code info
  • TMS Transfer Format Set
  • TFCS Transfer Format Combination Set
  • UE determines whether to send response message to Radio
  • RNC Network Controller
  • BM— SC demands RNC to send back paging response, RNC sends it to Broadcast and Multicast service Center (BM-SC) via SGSN and GGSN; Otherwise, RNC won't do so.
  • BM-SC Broadcast and Multicast service Center
  • this invention proposes three schemes for PCH lubFP frame structure, which respectively correspond to three schemes of Paging Indicator Channel (PICH) frame structure that will be described in the following.
  • PICH Paging Indicator Channel
  • MI indicates whether there is MBMS Pi-bitmap in payload or not.
  • MBMS Pi-bitmap is placed in the extension part of payload in the frame structure. MI and MBMS Pi-bitmap will be described below in detail.
  • MI MBMS Indicator
  • MBMS Pi-bitmap (MBMS Pi-bitmap) Description MBMS Pi-bitmaps of PI 0 ... PI Nm-1 .
  • the 7 th bit of the first byte represents MBMS PI 0
  • the 6 th one represents MBMS PI
  • the 0 th bit represents MBMS PI 7 o
  • the 7 th bit of the second byte represents MBMS PI 8; ...; the 3 ,d bit represents MBMS PI, ,.
  • MBMS PI corresponds to MPI in the first scheme of PICH frame structure described later. Value range: ⁇ 1, 2, 3, 4, 6 or 12 MBMS Pis ⁇
  • TMGI mask to the PCH lubFP frame structure of this scheme.
  • MI indicates whether there is MBMS TMGI mask in the payload or not.
  • MBMS TMGI mask is placed in the extension part of the payload in the frame structure.
  • MI and MBMS TMGI mask will be described below in detail.
  • MI MBMS Indicator
  • This scheme corresponds to PICH scheme 3 that will be described in the following. It only adds MBMS Indicator (MI) to the reserved part of PCH lubFP frame structure and does not need to add PI information to the payload. For this situation, after Base Station (Node B) receives PCH lubFP frame from Radio Network Controller (hereinafter referred to as RNC), it only needs to read MI and sets the MBMS PI bit in Scheme 3 of PICH frame structure according to Mi's value. According to MBMS PI in PICH frame, User Equipment (hereinafter referred to as UE) determines whether to read MBMS paging message to confirm detailed MBMS service information e.g. TMGI, etc, or not,.
  • UE User Equipment
  • Paging Indicator Channel PICH for Scheme 1 The frame structure of Paging Indicator Channel PICH for Scheme 1 is described below with reference to Figure 7.
  • the reserved 12 bits described in Paging Indicator Channel (PICH) can be divided into several groups and each group can be used to represent a MBMS Paging Indicator (hereinafter referred to as MPI).
  • MPI MBMS Paging Indicator
  • the purpose of dividing these 12 bits into several groups is to page for multiple MBMS services simultaneously to improve paging efficiency.
  • Nm MBMS Paging Indicator
  • the value of Nm can be either fixed or variable. If the value of Nm is variable, UE must obtain current Nm value before RNC performs paging. UE can obtain the Nm value through system information broadcast or other signalling.
  • Calculation of MBMS Paging Indicator MPI can conform to following methods:
  • Table 2 The bit mapping relation of MBMS paging indicator over PICH is shown in following table (Table 2):
  • mapping relation between MBMS paging indicator P q and PICH bit Number of MBMS Pis in 12 bits (Nm)
  • Nm l ( D 288+12q> •• ⁇ 5 b 288+ ⁇ 2q+ ⁇
  • Figure 8 describes the frame structure of PICH in Scheme 2.
  • 12 bits are divided into several groups called as MBMS Paging Indicator Group
  • Each MPG can carry a TMGI mask.
  • the value of "m” can be fixed or variable. If the value of "m” is variable, UE must obtain current "m” value before RNC performs paging. UE can obtain the "m” value through system information broadcast or other signallings.
  • TMGI mask TMGI mod (n+1) ;
  • TMGI TMGI mod m 0 mod is modulus operation.
  • this TMGI will be in MPG2.
  • PICH bitmap is as shown in Figure 9. Sche e 3 several bits are selected from the reserved 12 bits in PICH frame structure to be used as MBMS PI. After UE that has activated MBMS service reads these several bits of PICH, UE continues to read paging message to acquire and confirm MBMS Service Identity (TMGI) and service information if it finds that MBMS paging are indicated by these several bits .
  • TMGI MBMS Service Identity
  • MBMS Multimedia Broadcast/Multicast Service
  • RNC firstly sends paging message to Base Station via PCH lubFP, and Base Station then sends the paging message to UE via SCCPCH.
  • This invention provides two MBMS paging message schemes. One is the modification to the existing "Paging Type 1" message and the other is to design a new paging message called as "MBMS Paging", which are as follows.
  • TMGT TMGI
  • MBMS service instead of the actual identity of UE.
  • radio bearer parameters such as RB Info, TrCH info, PhyCH Info, Code Information, TFCS, TFCS, Activation time, etc. need to be included in paging message, they can be added into the message.
  • UE establishes corresponding radio resources according to these parameters.
  • Message can also include other MBMS service related information.
  • UE that has activated MBMS service After UE that has activated MBMS service receives paging message, it can check TMGI in the message to confirm whether it is necessary to get ready for the reception of MBMS service or not.
  • This scheme gives a new MBMS paging message, which can include information on following several aspects: - Temporary Multimedia Broadcast/Multicast Service Group Identity (TMGI);
  • TMGI Temporary Multimedia Broadcast/Multicast Service Group Identity
  • MBMS Service ID Multimedia Broadcast/Multicast Service Identity
  • This message includes basic information on paged MBMS service, e.g. TMGI, Service ID, etc. It can also include other information related to the MBMS service. "Response Indicator" is used to indicate whether it is necessary for UE to prepare for the response to this paging message. If RNC does not need to respond to this paging, it can relieve the overload of uplink signalling. If it is necessary, the message can also include radio bearer parameters, which include the parameters required for bearing MBMS service, e.g. Radio Bearer Information (RB Info), Transfer Channel Information (TrCH info), Physical Channel Information (PhyCH Info), Code Information, Transfer Format Set (TFS), Transfer Format Combination Set (TFCS) and Activation time, etc.
  • RB Info Radio Bearer Information
  • TrCH info Transfer Channel Information
  • Physical Channel Information Physical Channel Information
  • Code Information Transfer Format Set (TFS)
  • TFCS Transfer Format Combination Set
  • Figure 13 shows the signalling flow of MBMS paging. Each operation step is described below in detail.
  • BM-SC sends data to SGSN via GGSN.
  • Radio bearer parameters may be included. If radio bearer parameters are included, UE can establish relevant radio resources and does not need additional radio bearer setup process; otherwise, dedicated radio bearer setup process is needed to establish relevant radio resources. 705 If UE stays in idle mode when receiving paging message, Radio Resource
  • RRC Radio Resource Control
  • UE sends paging response to UTRAN. If UTRAN does not deal with MBMS paging response, this process can be omitted to reduce uplink signaling according to the requirements of UTRAN.
  • PICH and SCCPCH Base Station analyses FP frame, and constructs PICH and SCCPCH.
  • PICH and SCCPCH One scheme is that each time when UE wakes up to read PICH, it checks the last 12 bits of PICH. In this case, PICH and SCCPCH shall repeat for a period of time to be received by all users at 805 and 807.
  • Another scheme is that UE obtains a timing clock from the network and only when the clock arrives the fixed time, UE will start receiving MBMS paging.
  • UE checks the last 12 bits of PICH. If the paging service is exactly what it wants, it will start SCCPCH to receive corresponding paging message. After UE analyses the paging message, it will establish radio bearer and sends paging response to RNC if the message is valid.

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Abstract

This invention provides a paging method for Multimedia Broadcast/Multicast Service in mobile communication system. The paging process and radio resource setup process are merged in this method to try to reduce uplink responses. This invention extends existing PCH IubFP frame structure by adding MBMS Indication bit(MI) to PCH IubFP frame. The PCH IubFP frame includes Paging Indication (PI) and Paging Message. Paging message carries MBMS service information. MBMS Service Identity or MBMS Paging Indicator is added to the reserved 12 bits in Paging Indicator Channel (PICH) frame structure. Radio Network Controller (RNC) transfers Paging Indicator Message and paging message to Base Station (Node B) so as to send over the air-interface.

Description

Multimedia Broadcast and Multicast Service Paging
BACKGROUND OF THE INVENTION
Field of the Invention
This invention relates to a method for paging users in mobile communication system, and more particularly to a method of paging users using point-to- multipoint group for multimedia broadcast/multicast service in mobile communication system.
Description of the Related Art
(1) Basic operation process of existing paging Paging in existing communication system is a point-to-point user-based paging, whose basic operation process is shown in Figure 3: After a mobile terminal is registered in the network, it will be distributed to a paging group. There is a Paging Indicator (hereinafter referred to as PI) 204 for each paging group. When a terminal belonging to a paging group is paged, PI corresponding to this paging group will appear on the Paging indicator Channel (hereinafter referred to as PICH) 202 cyclically. When the terminal detects its PI on PICH, it will start to receive specific paging message from Secondary Common Control Physical Channel (hereinafter referred to as SCCPCH) 201. In other words, PICH only carries PI information, and paging message is carried by SCCPCH. The explanation for paging message is the upper layer function of User Equipment (UE) protocol. In order to decrease power consumption, terminal is designed as Discrete
Receiving (hereinafter referred to as DRX) mode, i.e. terminal stays in sleep mode when it is in idle mode. In this mode, Terminal will consume less power. Only when terminal detects its PI, terminal will be woken up to receive specific paging message. PI monitoring by terminal is also cyclical, and the length of the cycle is determined by the network. The larger the cycle is, the less possibly terminal wakes up from sleep, and thus the longer terminal battery standby time will be, but the cost is to reduce the response speed of terminal to network paging.
(2) Frame structure of existing PICH
PICH is the pure-physical channel used to carry PI, and has been described in detail in3GPP specification TS 25.211 v4.2.0. Figure 4 shows its frame structure. The length of a PICH wireless frame is 10ms, and the frame is composed of 300 bits, in which 288 bits are used to carry PI and the remaining 12 bits are reserved for future use and won't be transmitted. A Paging Indicator (PI) is composed of several bits. According to the different length of PI, a PICH frame can carry 18, 36, 72 or 144 Pis. Np indicates the number of Pis in a PICH frame. The position of PI in a frame is calculated according to International Mobile
Subscriber Identity number (hereinafter referred to as IMSI) of the subscriber, and the calculation method is as follows:
PI = DRX Index mod Np. Wherein DRX Index equals to IMSI div 8192. "mod" indicates the modulus operation, and "div" indicates round-off operation for division.
To guarantee reliable transmission, existing technology deploys the following SFN based sliding mechanism:
q = \ PI+ ((l 8x {SFN+[SFN/S}+[SFN/64\+[SFN/512J))modl44)x-^ modTvjσ
In above equation, "q" indicates the actual position of PI in a frame, and SFN is the system frame number, which changes with time. With the change of SFN, the position of PI, i.e. q, will slide. |_ J indicates round-off operation and "mod" indicates modulus operation. "Pq" is used to indicate the value of PI on the position of q. If Pq equals 1, it is indicated that PI is valid and UE shall be woken up to read paging message; if Pq equals 0, it is indicated that PI is invalid and it is unnecessary for UE to be woken up to read paging message. The mapping relation between paging indicator Pq, and PICH is shown in following table (Table 1):
Table 1 : Mapping relation between paging indicator.Pq and PICH bits
Number of Pis in each frame (Np)
Pq = l
Pq = 0
Np=18
{bl6q, ..., 6q+15} = {-l,-l,...,-l }
{b!6q, ..., bl6q+15} = {+!,+!,...,+1 } {b8q, ..., b8q+7} = {-l,-l,...,-l }
{b8q, ..., b8q+7} = {+l,+l,...,+l}
Np=72
{b4q, ..., b4q+3} = {-l, -l,...,-l} {b4q, ..., b4q+3} = {+l, +l,...,+l}
Np=144 {b2q, b2q+l} = {-l,-l }
{b2q, b2q+l} = {+l,+l}
It is seen from Table 1 that when Pq=l, all bits composing the PI shall be set as '-1 ' and when Pq=0, those shall be all set as '+1 ' . (3) Frame structure of existing PCH lubFP
Since paging is initiated by the network, paging information must be transferred to the air interface via proper mode for the convenience of receiving by terminal. Figure 5 shows the frame structure of existing PCH's Node B and Radio Network Controller interface frame protocol (hereinafter referred to as PCH lubFP). PCH lubFP is used to transfer paging information between base station (hereinafter referred to as Node B) and Radio Network Controller (hereinafter referred to as RNC). 3GPP specification TS25.435 v4.2.0 has given detailed description for existing PCH lubFP frame structure.
PCH lubFP frame includes PI information and paging message. To page a UE, two continuous PCH lubFP frames will be used. The first frame includes PI information and the second includes paging message. Descriptions for the components shown in Figure 5 are as follows:
• Paging Indicator (PI)
Description: Indicate whether this frame has Pi-bitmap or not. Value range: {0=the absence of Pi-bitmap; l=the presence of Pi-bitmap } .
Field length: 1 bit
• PI bitmap (Pi-bitmap)
Description: Indicate the bitmaps of PI0... PIN-l. The 7th bit of the first byte includes PI0, and the 6th bit includes PI,; The 7th bit of the second byte includes PI8, and so on.
Value range: {18, 36, 72, 144 Pis. } . Field length: 3, 5, 9, or 18 bytes (4 ) Flow of existing paging and radio bearer setup
3GPP specification TS 23.846 vl .1.0 describes the MBMS service paging and radio bearer setup process. Figure 6 shows the signalling flow of paging and radio bearer setup. Detailed descriptions for each step of the flow are given in the following.
601 BM-SC sends data to SGSN via GGSN.
602 SGSN sends "MBMS notification" to UTRAN to indicate that a certain MBMS service will be started.
603 UTRAN sends "MBMS notification" to UE in MBMS service area. 604 UTRAN sends a "MBMS service request" message to SGSN to request service.
605 and 606 establish radio access bearer (hereinafter referred to as RAB) between UTRAN and SGSN.
607 UE that has activated MBMS service sends a "MBMS radio request " message to the network after receiving "MBMS notification".
608 UTRAN establishes radio bearer (hereinafter referred to as RB) over the air-interface and sends a "MBMS radio allocation" message to UE.
609 After all radio resources are established successfully, data transfer can be performed. 610 Release all network resources after finishing data transmission.
According to Figure 6, paging process 603 and radio bearer setup process 608 are performed independently.
(5) Existing paging message In 3GPP specification TS25.331 v4.2.0, existing paging message is called
"Paging Type 1". When UE needs to be paged, Radio Network Controller (hereinafter referred to as RNC) sends "Paging Type 1" message to UE via base station (hereinafter referred to as Node B).
This message includes information on following several aspects: - Paging record list listing the identity of UE that is paged by the message.
- Broadcast Control Channel modification info (BCCH modification info) representing Modification indication for system broadcast information
One paging message can include paging records for multiple UEs, which are known as "Paging record". Paging Record (Paging Record) includes following several parameters:
- Paging cause representing the cause of initiating the paging. At present, causes listed in the specification are as follows:
* Conversational Call (Terminating Conversational Call) * Streaming Call (Terminating Streaming Call)
* Interactive Call (Terminating Interactive Call)
* Background Call (Terminating Background Call)
* High Priority Signalling (Terminating High Priority Signalling) * Low Priority Signalling (Terminating Low Priority Signalling)
* Cause Unknown (Terminating - cause unknown)
- UE Identity (UE Identity) representing the identity of UE, which can be
International Mobile Subscriber Identity (IMSI), Temporary Mobile Subscriber
Identity (TMSI), Packet-Temporary Mobile Subscriber Identity (P-TMSI), UE- Radio Network Temporary Identity (U-RNTI), etc. UE confirms self-paging through checking the UE identity.
SUMMARY OF THE INVENTION
The paging technology in existing mobile communication system is point-to- point paging based on UE and must page for every user of the service one-by-one, which will not only waste radio resources but also result in extremely low efficiency of paging. Thus, considering the above problem of paging technology in existing mobile communication system, this invention provides a method of paging users using point-to-multipoint group for MBMS in mobile communication system on the basis of existing paging mechanism. All users utilizing the service can be paged at the same time through point-to-multipoint paging and radio resources sharing, which can effectively make use of radio resources and improve paging efficiency. In addition, existing paging process and radio resource setup process are performed separately. While in MBMS service, since users receiving the same kind of service are very centralized, a large number of users will request network accessing in one paging and service setup process, which will result in uplink congestion from the terminal to the network. In order to reduce this kind of congestion, this invention provides a paging method for combining the paging process and the radio resource setup process to try to reduce uplink response.
In addition, in order to provide paging mode for MBMS based on existing paging mechanism, this invention also designs a paging message that can carry MBMS service parameters; Adds MBMS Service Identity number to the reserved 12 bits of PICH frame structure; and extends existing PCH lubFP frame structure to send paging information (including PI information and paging message) from RNC to Node B so that it can be transferred over the air-interface. According to the invention, a method of paging UEs to provide MBMS service in mobile communication system, the method comprises steps of:
(a) Broadcast and multicast service center (BM— SC) sending data to Service GPRS Supporting Node (SGSN) via Gateway GPRS Supporting Node (GGSN); (b) After Service GPRS Supporting Node (SGSN) receives data from
Gateway GPRS Supporting Node (GGSN), it sending MBMS notification to Radio network controller (RNC);
(c) After RNC receives the notification from SGSN, it organizing the frame according to a paging channel (PCH) Iub frame protocol (FP) according to the notification, wherein the frame includes a MBMS Indicator bit (MI) to the frame of the frame protocol (PCH lubFP), which includes MBMS PI and paging message;
(d) Radio Network Controller (RNC) sending the frame of frame protocol (PCH lubFP) to Base Station (Node B); and (f) Base Station (Node B) transmitting a Temporary MBMS Group Identity
(MBMS TMGI) or MBMS Paging Indicator (PI) to by using the last 12 bits of a paging indicator channel (PICH) and Secondary Common Control Physical
Channel (SCCPCH) frame that carries paging message for User Equipment (UE).
And according to another aspect of the invention, the method of providing MBMS paging for UE in mobile communication system includes following steps:
(a) Broadcast and Multicast Service Center (BM— SC) sends data to Service General Packet Radio Service Supporting Node (SGSN) via Gateway General Packet Radio Service Supporting Node (GGSN);
(b) After receiving data sent from GGSN, SGSN sends a MBMS notification to Radio Network Controller (RNC);
(c) After receiving the notification from SGSN, RNC organizes the frame of Paging Channel RNC and node interface frame protocol (PCHIubFP) according to the content of the notification, and adds MBMS indication bit (MI) to the PCHIubFP frame, which includes PI and paging message of MBMS service. The paging message carries the service information of MBMS service;
(d) RNC sends the PCHIubFP frame to Node B;
(e) After receiving the frame of the frame protocol (PCHIubFP), Node B firstly examines the MBMS indication bit (MI) of the frame of the frame protocol (PCHIubFP) received. If MI equals 0, it indicates that the frame of the frame protocol (PCHIubFP) belongs to conventional paging; if MI equals 1, it indicates that the frame of the frame protocol (PCH lubFP) includes MBMS service information;
(f) Node B reads PI to construct PICH and makes use of the last 12 bits reserved in PICH to carry Temporary MBMS Group Identifier (MBMS TMGI) or MBMS PI;
(g) Node B reads MBMS paging message to construct Secondary Common Control Physical Channel (SCCPCH) that carries MBMS paging message. (h) Base Station (Node B) sends Paging Indicator Channel (PICH) frame that carries PI and Secondary Common Control Physical Channel (SCCPCH) frame that carries paging message for User Equipment (UE) to read;
(i) UE firstly examines PICH. If UE has activated MBMS service, it reads the last 12 bits of PICH to determine if the current paging service is what it needs; if the service matches, UE then reads SCCPCH to acquire MBMS paging message; (j) If the paging message received by UE includes radio bearer parameters, UE establishes radio bearer during paging process; otherwise, UE doesn't establish radio bearer during paging process.
In addition, after the above step (j), UE decides to whether it should send a paging response message to the network according to the requirements of the system or not.
In addition, MBMS Pi-bitmap is included in the PI in the above step (c), and MBMS Indicator (MI) and the MBMS Pi-bitmap are placed in the reserved part and the extensible part of the frame structure of the frame protocol (PCHIubFP) respectively. Alternatively, MBMS Group Identity mask (TMGI mask) is included in the PI described in the above step (c), and MBMS Indicator (MI) and the MBMS TMGI mask are placed in the reserved part and the extensible part of the frame structure of the frame protocol (PCHIubFP) respectively. Further alternatively, MBMS Indicator (MI) described in the above step (c) is placed in the reserved part of the frame structure of the frame protocol (PCHIubFP).
For PICH frame structure, the last 12 bits reserved for future use by prior art can be used to carry MBMS Service Identity TMGI. There are three kinds of usage modes for these 12 bits. The first mode is to divide the reserved 12 bits in the Paging Indicator Channel (PICH) into Nm groups and the number of groups Nm can be either fixed or variable. The value of Nm can be 1, 2, 3, 4, 6, or 12; each group stores a MBMS Paging Indicator (MPI). Each Temporary MBMS Group Identity (TMGI) described will obtain a MBMS Paging Indicator (MPI), whose calculation method is: MPI = (TMGI div 8192) mod Nm. wherein "MPI" is the MBMS Paging Indicator represented by each group described, and TMGI indicates Temporary MBMS Group Identity (TMGI), "Div" indicates round-off operation for division, and "mod" indicates modulus operation. The second mode is to divide the reserved 12 bits of Paging Indicator Channel (PICH) into m MBMS Paging Groups (MPG) and the number of groups m can be either fixed or variable. The value of m can be 1 , 2, 3, 4, 6, or 12; each group stores a MBMS Group Identity mask (TMGI mask). The calculation method for group identity mask is: TMGI mask = TMGI mod (212 m). The calculation method for the group position of TMGI mask in 12 bits is: i = TMGI mod m, wherein TMGI indicates Temporary MBMS Paging Indicator, and TMGI mask indicates Temporary MBMS Group Identity
(TMGI) mask, "mod" indicates modulus operation and "i" indicates group position. The third mode is to select several bits from the reserved 12 bits of Paging Indicator Channel (PICH) to be used as MBMS Paging Indicator (MPI).
For paging message of MBMS service information, this invention provides two schemes for MBMS paging message.
The first scheme is to modify existing "Paging Type 1" message, i.e. add a new element "Terminating MBMS Call" to the definition of "Paging Cause" of existing paging message "Paging Type 1"; add a new element "Temporary MBMS Group Identity (MBMS TMGI)" to the definition of "UE Identity" of existing paging message "Paging Type 1"; Paging message "Paging Type 1" can include
MBMS Service Identity (MBMS Service ID); Paging message "Paging Type 1" can also include Response Indicator and Activation time.
Another scheme is to design a new paging message called "MBMS Paging", which can include information on following several aspects: - MBMS Service Identity (MBMS TMGI) ;
- MBMS Service Identity . (MBMS Service ID) ;
- Response Indicator (Response Indicator ) ;
- Activation time (Activation time).
In addition, the above two kinds of paging also include radio bearer parameters, which can include: Radio Bearer information (RB info), Transfer
Channel information (TrCH info), Physical Channel information (PhyCH info),
Code information (Code info) , Transfer Format Set (TFS), Transfer Format
Combination Set (TFCS ) and Activation time.
In this invention, UE adopts discrete receiving mode to receive MBMS paging, which can reduce power consumption of terminal. In addition, MBMS paging proposed by this invention makes use of existing discrete receiving cycle (in each cycle, UE is woken up to read PICH channel) and no new discrete receiving cycle for MBMS is designed. So woken-up times of UE hasn't been increased. Therefore, the power consumption of UE is reduced, and the standby time of UE is extended.
MBMS paging in this invention is service-based group paging of point-to- multipoint, which improves paging efficiency and radio resources utilization rate and avoids paging channel congestion. This invention makes full use of paging resources in existing system and redesigns PICH frame structure, PCH lubFP frame structure as well as paging message, which has no effect on existing paging and enables the system to have the backward compatibility.
BRIEF DESCRIPTION OF THE DRAWINGS
The present invention will be more apparent from the following detailed description taken in conjunction with the accompanying drawings, in which: Figure 1 is a schematical view illustrating of MBMS system structure; Figure 2 is a flow chart illustrating MBMS multicast service; Figure 3 is a schematical view illustraing paging process according to prior art; Figure 4 is a structure diagram illustrating PICH frame structure according to prior art; Figure 5 is a diagram illustrating PCH lubFP frame structure according to prior art;
Figure 6 is a diagram illustrating paging process and radio bearer setup process according to prior art;
Figure 7 is a diagram illustrating the MBMS PICH frame structure (Nm = 3) according to the first scheme; Figure 8 is a diagram illustrating the MBMS PICH frame structure (m = 3) according to the second scheme;
Figure 9 is a schematic view of illustrating an example for MBMS PICH bitmap; Figure 10 is a diagrame illustrating the PCH lubFP frame structure of according to the first scheme; Figure 11 a diagram of illustrating the PCH lubFP frame structure according to the second scheme; Figure 12 is a flow chart illustrating MBMS service process; Figure 13 is a flow chart illustrating MBMS paging signalling process; Figure 14 is a flowchart of UTRAN paging processing; Figure 15 is a schematic view illustrating the processing of PCH lubFP performed by Node B.
DETAILED DESCRIPTION OF THE PREFERED EMBODIMENT
Hereinafter, preferred embodiments of the present invention will be described in detail with reference to the attached drawing.
Multimedia Broadcast/Multicast Service (hereinafter referred to as MBMS) is a new service proposed and being standardized by 3rd Generation Partnership Project (hereinafter referred to as 3 GPP). MBMS service is a unidirectional point-to-multipoint (p-t-m) service. Its most remarkable characteristic is that it can make use of radio resources and network resources efficiently.
MBMS service has two modes, i.e. multicast and broadcast. The difference between multicast and broadcast exists in that before receiving multicast service, it is necessary to subscribe in advance from service provider, join relevant multicast group, and the reception of multicast service needs to be paid. Before the system sends multicast or broadcast service, paging is needed to notify user of the service that will be provided right away.
This invention is used to page User Equipment (hereinafter referred to as UE) in Multimedia Broadcast/Multicast Service's MBMS.
The system structure of MBMS is described below with reference to Figure 1.
MBMS network structure is based on the core network of General Packet
Radio Service (hereinafter referred to as GPRS) and is added some new network elements. Broadcast and multicast service center (hereinafter referred to as BM-
SC ) 101 is the service control center of MBMS system. Gateway GPRS Supporting Node (hereinafter referred to as GGSN) 102 and Service GPRS Supporting Node (hereinafter referred to as SGSN ) 103 compose the transmission network of MBMS service and provide route for data transfer. Home Location Register (hereinafter referred to as HLR ) 106 saves the data related to the user and can provide services like user's authentication. UMTS Terrestrial Radio Access Network (hereinafter referred to as UTRAN) 104 provides radio resources for MBMS service over the air-interface. Uul07 indicates the radio interface between terminal and access network. User Equipment (hereinafter referred to as UE) 105 is the terminal device used to receive data. Radio resources used by MBMS service are not dedicated for one user, but are shared by all users using this service.
MBMS multicast service flow is described below with reference to Figure 2. Firstly, in the step of S000"Subscription", establish the relationship between user and service provider. Authorized user can receive related MBMS service. Then, in the step of SOOl "Service advertisement", service provider notifies user of the service that will be provided. For example, the system will rebroadcast a football match in the urban district of Beijing at 7:00 p.m. If the user is willing to receive the service that will be provided by the service provider, then in the step of S002 "joining", user desire to joins a group, i.e. the user informs the network that he or she is willing to receive this multicast service. In the step of S003 "MBMS multicast mode bearer setup", establish network resources for MBMS data transfer. Then in the step S004 "MBMS notification", notify user of MBMS data transfer that will be performed right away. In the step of S005 "data transfer", indicate the process of transferring MBMS service data to user. In the step of 006 "MBMS multicast bearer release", indicate to release network resources after MBMS service data transfer have been performed. The "leaving" step of S007 corresponds to the "joining" step of S002, It is indicated that a user is leaving a group, i.e. the user doesn't want to receive the data of a certain service any more.
This invention emphasizes on the research of 004 "MBMS notification" process, which is called as "Multimedia Broadcast/Multicast Service Paging (MBMS paging)" in this invention. UE paging flow used for MBMS service of this invention is described below with reference to Figure 12.
First, BM-SC901 sends data to SGSN903 via GGSN902.
Then, after SGSN903 receives data from GGSN902, it sends MBMS Notification to Radio Network Controller 904 (hereinafter referred to as RNC) to inform the relevant MBMS service information.
Subsequently, after RNC904 receives MBMS Notification from SGSN, it organizes the frame of Paging Channel & Radio Network Controller and Node B Interface Frame Protocol (hereinafter referred to as PCHIubFP) according to the content of the notification, i.e. add MBMS Indicator .bit (MI) in PCHIubFP frame. PCHIubFP frame includes MBMS PI and Paging Message. Paging Message carries MBMS Service Information. After organizing PCHIubFP frame, RNC904 sends PCHIubFP frame to Base Station 905 (Node B).
After Node B receives the frame of PCHIubFP, it firstly examines the MBMS indication bit (hereinafter referred to as MI) of the PCHIubFP frame received. If MI equals 0, it indicates that the PCHIubFP frame belongs to conventional paging; if MI equals 1, it indicates that the PCHIubFP frame includes MBMS service information;
Base Station 905 reads PI to construct Paging Indicator Channel (hereinafter referred to as PICH) and makes use of the last 12 bits reserved in PICH to carry Temporary MBMS Group Identifier (hereinafter referred to as TMGI) or MBMS PI; Base Station 905 (Node B) reads MBMS paging message to construct Secondary Common Control Physical Channel (SCCPCH) to carry MBMS paging message. Then, Base Station 905 (Node B) sends Paging Indicator Channel frame that carries PI and Secondary Common Control Physical Channel (SCCPCH) frame that carries paging message for User Equipment (UE) 907 to read.
UE 907 firstly examines PICH. If UE has activated MBMS service, it reads the last 12 bits of PICH to determine if the current paging service is what it needs; if the service matches, UE907 then reads SCCPCH to acquire MBMS paging message.
If RNC can determine radio bearer parameters before service paging, it can add them into MBMS paging message to realize the combination of paging process and radio bearer setup process. According to the number of users, radio bearer parameters have two kinds, i.e. point- to-multipoint radio bearer and point-to-point radio bearer. If the number of users is large, point-to-multipoint radio bearer is deployed; otherwise, point-to- point radio bearer is deployed. There are multiple kinds of modes for RNC to determine radio bearer parameters, e.g. default point-to-multipoint radio bearer or RNC acquiring information on user's number from other channels.
After UE receives paging message, it can set up corresponding radio resources according to radio bearer parameters in the message and does not need to perform the radio bearer setup process again in subsequent processes, which simplifies the signalling flow. In addition, radio bearer parameters can include: Radio Bearer Information
(RB info), Transfer Channel Information (TrCH info), Physical Channel Information (PhyCH info), Code Information (Code info), Transfer Format Set (TFS), Transfer Format Combination Set (TFCS) and Activation Time.
Moreover, UE determines whether to send response message to Radio
Network Controller (RNC) or not according to the requirements of paging message. If paging message requires sending response message to RNC, User Equipment UE sends paging response to RNC; otherwise, UE won't, do so.
If BM— SC demands RNC to send back paging response, RNC sends it to Broadcast and Multicast service Center (BM-SC) via SGSN and GGSN; Otherwise, RNC won't do so.
PCH lubFP frame structure
To support MBMS paging, this invention proposes three schemes for PCH lubFP frame structure, which respectively correspond to three schemes of Paging Indicator Channel (PICH) frame structure that will be described in the following. Scheme 1
Refer to PCH lubFP frame structure of Scheme 1 illustrated in Figure 10, which corresponds to Scheme 1 of PICH frame structure that will be described later. Add MBMS service related information into the reserved part of frame structure.
In the frame structure of this scheme, MBMS Indicator MI bit and MBMS PI- bitmap are added. MI indicates whether there is MBMS Pi-bitmap in payload or not. On account of backward compatibility of the system, MBMS Pi-bitmap is placed in the extension part of payload in the frame structure. MI and MBMS Pi-bitmap will be described below in detail.
• MBMS Indicator (MI)
Description It indicates that whether there exists MBMS PI bitmap in the payload or not.
Value range: {0=the absence of MBMS PI bitmap in the payload; l=the presence of MBMS PI bitmap in the payload} Field Length 1 bit
• MBMS Pi-bitmap (MBMS Pi-bitmap) Description MBMS Pi-bitmaps of PI0... PINm-1. The 7th bit of the first byte represents MBMS PI0, and the 6th one represents MBMS PI,, ..., the 0th bit represents MBMS PI7o The 7th bit of the second byte represents MBMS PI8;...; the 3,d bit represents MBMS PI, ,. Here MBMS PI corresponds to MPI in the first scheme of PICH frame structure described later. Value range: {1, 2, 3, 4, 6 or 12 MBMS Pis }
Field Length 2 bytes
Scheme 2
Refer to Figure 11, PCH lubFP frame structure of Scheme 2 will be described below, and corresponds to Scheme 2 of PICH frame structure. The scheme is similar to Scheme 1, but the definitions and explanations for each element in the frame structure are different.
Add MBMS Indicator MI bit and MBMS TMGI mask (or called as MBMS
TMGI mask) to the PCH lubFP frame structure of this scheme. MI indicates whether there is MBMS TMGI mask in the payload or not. ON account of backward compatibility of the system, MBMS TMGI mask is placed in the extension part of the payload in the frame structure.
MI and MBMS TMGI mask will be described below in detail.
• MBMS Indicator (MI) Description It indicates whether there is MBMS TMGI mask in the payload of frame structure or not.
Value range: {0=the absence of MBMS TMGI mask; l=the presence of
MBMS TMGI mask}.
Field Length 1 bit Calculation of TMGI mask is described in PICH frame structure that will be described in the following. The mask corresponds to the reserved 12 bits in PICH and occupies the length of 12 bits. Scheme 3
This scheme corresponds to PICH scheme 3 that will be described in the following. It only adds MBMS Indicator (MI) to the reserved part of PCH lubFP frame structure and does not need to add PI information to the payload. For this situation, after Base Station (Node B) receives PCH lubFP frame from Radio Network Controller (hereinafter referred to as RNC), it only needs to read MI and sets the MBMS PI bit in Scheme 3 of PICH frame structure according to Mi's value. According to MBMS PI in PICH frame, User Equipment (hereinafter referred to as UE) determines whether to read MBMS paging message to confirm detailed MBMS service information e.g. TMGI, etc, or not,.
Frame structure of Paging Indicator Channel PICH
For PICH frame structure, the last 12 bits reserved for future use according to prior art is used by this invention to carry MBMS Service Identity TMGI. There are three kinds of usage modes for these 12 bits.
Following is the detailed descriptions.
Scheme 1
The frame structure of Paging Indicator Channel PICH for Scheme 1 is described below with reference to Figure 7. The reserved 12 bits described in Paging Indicator Channel (PICH) can be divided into several groups and each group can be used to represent a MBMS Paging Indicator (hereinafter referred to as MPI). The purpose of dividing these 12 bits into several groups is to page for multiple MBMS services simultaneously to improve paging efficiency. If the 12 bits are divided into "Nm" groups, each group has 12/Nm bits, in which Nm={ l > 2 > 3 » 4 > 6 > 12}. The value of Nm can be either fixed or variable. If the value of Nm is variable, UE must obtain current Nm value before RNC performs paging. UE can obtain the Nm value through system information broadcast or other signalling. Calculation of MBMS Paging Indicator MPI can conform to following methods:
MPI = DRX Index mod Nm, in which DRX Index = TMGI div 8192;
To guarantee reliable transmission, sliding mechanism in existing technology can be deployed:
Figure imgf000016_0001
In the above equation, "q" indicates the actual position of PI in a frame, and SFΝ is the system frame number, which will change with time. With the change of SFN, the position of MBMS PI, i.e. q, will vary.|_ J indicates round-off operation and mod indicates modulus operation.
If Nm=l, it is indicated that all 12 bits are in the same group. Then the 12-bit is only used to indication representing the existence of MBMS PI. After UE receives this indication, it needs to continue checking paging message contents to confirm MBMS service that is current paged for.
Pq is used to indicate the value of PI on the position q. If Pq =1, it is indicated that PI is valid and UE shall be woken up to read paging message; if Pq =0, it is indicated that PI is invalid and it is unnecessary for UE to be woken up to read paging message. The bit mapping relation of MBMS paging indicator over PICH is shown in following table (Table 2):
Table 1 :
The mapping relation between MBMS paging indicator Pq and PICH bit: Number of MBMS Pis in 12 bits (Nm)
Pq=l Pq = 0
Nm=l (D288+12q> ••■5 b288+ι2q+π}
= {-1,-1,...,-!}
{b288+12q> •••> D288+12q+ll}
= {+l,+l,...,+ l} Nm=2 {b288+6q, •••, b288+6q+5}
= {-1,-1,...,-!}
{b288+6q, ■••■> D288+6q+5}
= {+l,+l,...,+l}
Nm=3
{D288+4q> ■••■> °288+4q+3/
= {-1,-1,...,-!} l"288+4qj • • •> 0288+ q+3}
= {+1, +!,...,+!}
Nm=4
Figure imgf000018_0001
= {-1,-1,-1} lD288+3q> ••■» ":,288+3q+2}
= {+l,+l,+l}
Nm=6
{ D288+2q> "288+2q+l } = {-1J"1| 10288+2q5 L>288+2q+l } = {+1>+1}
Nm=12
{b288+lq} = {"I}
Figure imgf000018_0002
It can be seen from Table 2 that when Pq=l , bits composing the PI shall be all set to '- 1' and when Pq=0, those shall be all set to '+1 ' .
Scheme 2
Figure 8 describes the frame structure of PICH in Scheme 2. In this scheme, 12 bits are divided into several groups called as MBMS Paging Indicator Group
(hereinafter referred to as MPG). Each MPG can carry a TMGI mask.
If 12 bits are divided into "m" groups, each group has 12/m bits, in which m={l » 2» 3 > 4. 6> 12}. The value of "m" can be fixed or variable. If the value of "m" is variable, UE must obtain current "m" value before RNC performs paging. UE can obtain the "m" value through system information broadcast or other signallings.
If "I" is used to indicate the bit number of each group, then I=12/m. The maximum value of each group n=2' -1. E.g. if m=3 , then 1=4, n=24-l=15. Calculation of TMGI mask is as follows:
TMGI mask = TMGI mod (n+1) ;
The group that TMGI locates in is MPGj > wherein, i = TMGI mod m0 mod is modulus operation.
For example: if TMGI = 59, and m=3, TMGImask=59modl6 = ll;
As 59 mod 3-2, this TMGI will be in MPG2.
According to this example, PICH bitmap is as shown in Figure 9. Sche e 3 several bits are selected from the reserved 12 bits in PICH frame structure to be used as MBMS PI. After UE that has activated MBMS service reads these several bits of PICH, UE continues to read paging message to acquire and confirm MBMS Service Identity (TMGI) and service information if it finds that MBMS paging are indicated by these several bits .
Multimedia Broadcast/Multicast Service (MBMS) paging message In order to support service-based MBMS group paging, it is necessary to extract paging messages that can carry MBMS service information. RNC firstly sends paging message to Base Station via PCH lubFP, and Base Station then sends the paging message to UE via SCCPCH. This invention provides two MBMS paging message schemes. One is the modification to the existing "Paging Type 1" message and the other is to design a new paging message called as "MBMS Paging", which are as follows.
Scheme 1
This scheme extends existing "Paging Type 1" by adding MBMS service related information to contents of existing message, whose detailed implementation is: Add a new entry to Paging Cause of the message, which is called as
Terminating MBMS Call.
Add a new entry "TMGT" to UE Identity of the message. Here TMGI is the identity of MBMS service instead of the actual identity of UE.
If radio bearer parameters, such as RB Info, TrCH info, PhyCH Info, Code Information, TFCS, TFCS, Activation time, etc. need to be included in paging message, they can be added into the message. UE establishes corresponding radio resources according to these parameters.
Message can also include other MBMS service related information. After UE that has activated MBMS service receives paging message, it can check TMGI in the message to confirm whether it is necessary to get ready for the reception of MBMS service or not. Scheme 2
This scheme gives a new MBMS paging message, which can include information on following several aspects: - Temporary Multimedia Broadcast/Multicast Service Group Identity (TMGI);
- Multimedia Broadcast/Multicast Service Identity (MBMS Service ID);
- Response Indicator (Response Indicator).
This message includes basic information on paged MBMS service, e.g. TMGI, Service ID, etc. It can also include other information related to the MBMS service. "Response Indicator" is used to indicate whether it is necessary for UE to prepare for the response to this paging message. If RNC does not need to respond to this paging, it can relieve the overload of uplink signalling. If it is necessary, the message can also include radio bearer parameters, which include the parameters required for bearing MBMS service, e.g. Radio Bearer Information (RB Info), Transfer Channel Information (TrCH info), Physical Channel Information (PhyCH Info), Code Information, Transfer Format Set (TFS), Transfer Format Combination Set (TFCS) and Activation time, etc. After receiving the paging message, UE can establish corresponding radio resources for MBMS according to RB parameters in the message.
MBMS paging signalling flow
Figure 13 shows the signalling flow of MBMS paging. Each operation step is described below in detail.
701 BM-SC sends data to SGSN via GGSN.
702 SGSN sends "MBMS Notification" to notify UTRAN of TMGI and the service area of current service.
703 Establish RAB between UTRAN and SGSN. 704 UTRAN sends "MBMS Paging" to UE for notifying it that MBMS data will be transferred right away. It is also possible for Radio bearer parameters to be included. If radio bearer parameters are included, UE can establish relevant radio resources and does not need additional radio bearer setup process; otherwise, dedicated radio bearer setup process is needed to establish relevant radio resources. 705 If UE stays in idle mode when receiving paging message, Radio Resource
Control (hereinafter referred to as RRC) connection setup process is needed. If UE has been in RRC connection mode, this process is unnecessary.
706 UE sends paging response to UTRAN. If UTRAN does not deal with MBMS paging response, this process can be omitted to reduce uplink signaling according to the requirements of UTRAN.
707 UTRAN sends paging response to BM-SC via SGSN and GGSN. According to the requirements of BM-SC, this message needs not to be sent under some situations.
The flow of MBMS paging processing in UTRAN is described below with reference to Figure 14.
When RNC receives "MBMS notification" from SGSN at 801, the incoming service is analyzed and PCH lubFP frame is constructed at 802, and then the frame is sent to Base Station at 803.
804 Base Station analyses FP frame, and constructs PICH and SCCPCH. One scheme is that each time when UE wakes up to read PICH, it checks the last 12 bits of PICH. In this case, PICH and SCCPCH shall repeat for a period of time to be received by all users at 805 and 807. Another scheme is that UE obtains a timing clock from the network and only when the clock arrives the fixed time, UE will start receiving MBMS paging.
806 UE checks the last 12 bits of PICH. If the paging service is exactly what it wants, it will start SCCPCH to receive corresponding paging message. After UE analyses the paging message, it will establish radio bearer and sends paging response to RNC if the message is valid.
The processing flow of PCH lubFP frame is described below with reference to Figure 15. Node B firstly examines the MI in PCHIubFP frame structure received. If MI equals 0, it indicates that the PCHIubFP frame belongs to conventional paging and is unrelated to MBMS. Corresponding processing can be performed. If MI=1, it is indicated that the payload of this frame includes MBMS PI bitmap or MBMS TMGI mask. Then after finishing the processing of ordinary paging message, Node B continues to read MBMS PI to construct the last 12 bits of PICH and to read MBMS paging message to construct SCCPCH. At last, Base Station sends PICH and SCCPCH frames which carry PI and paging message for user to read.
Although a preferred embodiment of the present invention has been described for illustrative purpose, those skilled in the art will appreciate that various modifications, additions and substitutions are possible, without departing from the scope and spirit of the invention as disclosed in the accompanying claims.

Claims

What Is Claimed Is:
1. A method of paging UEs to provide MBMS service in mobile communication system, the method comprises steps of: (a) Broadcast and multicast service center (BM— SC) sending data to Service
GPRS Supporting Node (SGSN) via Gateway GPRS Supporting Node (GGSN);
(b) After Service GPRS Supporting Node (SGSN) receives data from Gateway GPRS Supporting Node (GGSN), it sending MBMS notification to Radio network controller (RNC); (c) After RNC receives the notification from SGSN, it organizing the frame according to a paging channel (PCH) lub frame protocol (FP) according to the notification, wherein the frame includes a MBMS Indicator bit (MI) to the frame of the frame protocol (PCH lubFP), which includes MBMS PI and paging message; (d) Radio Network Controller (RNC) sending the frame of frame protocol
(PCH lubFP) to Base Station (Node B); and
(f) Base Station (Node B) transmitting a Temporary MBMS Group Identity (MBMS TMGI) or MBMS Paging Indicator (PI) to by using the last 12 bits of a paging indicator channel (PICH) and Secondary Common Control Physical Channel (SCCPCH) frame that carries paging message for User Equipment (UE).
2. The method as claimed in claiml, wherein after the step (j), User Equipment (UE) determines whether to send paging response message to the network according to the requirements of the system.
3. The method as claimed in claiml, wherein in the step (c), the Paging Indicator includes MBMS Pi-bitmap, and MBMS Indicator (MI) and the MBMS Pi-bitmap are placed in the reserved part and the extensible part of the frame structure of the frame protocol (PCHIubFP) respectively.
4. The method as claimed in claiml, wherein in the step (c), the Paging
Indicator includes MBMS Group Identity mask (TMGI mask) and MBMS
Indicator (MI) and the TMGI mask are placed in the reserved part and the extensible part of the frame structure of the frame protocol (PCHIubFP) respectively.
5. The method as claimed in claiml, wherein in the step (c), the MBMS Indicator (MI) is placed in the reserved part of the frame structure of the frame protocol (PCHIubFP).
6. The method as claimed in claim 3, wherein the reserved 12 bits of the Paging Indicator Channel (PICH) are divided into Nm groups and the number of groups Nm can be either fixed or variable, the value of Nm can be 1, 2, 3, 4, 6, or 12, each group stores a MBMS Paging Indicator (MPI), each Temporary MBMS Group Identity (TMGI) will obtain a MBMB Paging Indicator (MPI), whose calculation method is: MPI = (TMGI div 8192) mod Nm, wherein MPI is the MBMS Paging Indicator represented by each group described, and TMGI indicates Temporary MBMS Group Identity (TMGI), "Div" indicates round-off operation for division and "mod" indicates modulus operation.
7. The method as claimed in claim 4, wherein the reserved 12 bits of Paging Indicator Channel (PICH) are divided into m MBMS Paging Groups (MPG) and the number of groups m can be either fixed or variable, the value of m can be 1, 2, 3, 4, 6, or 12; each group stores a MBMS Group Identity mask (TMGI mask), whose calculation method is: TMGI mask = TMGI mod (212 m), the calculation method for the group position of TMGI mask (MPG ,) in 12 bits is: i = TMGI mod m, wherein TMGI indicates Temporary MBMS Group Indicator, and TMGI mask indicates Group Identity mask, "mod" indicates modulus operation and "i" indicates group position.
8. The method as claimed in claim 5, wherein several bits are selected from the reserved 12 bits of Paging Indicator Channel (PICH) to be used as MBMS Paging Indicator.
9. The method as claimed in claiml, wherein a new element of "Terminating
MBMS Call" is added to the definition of "Paging Cause" of existing paging message "Paging Type 1" and a new element "Temporary MBMS Group Identity (MBMS TMGI)" is added to the definition of "UE Identity" of existing paging message "Paging Type 1".
10. The method as claimed in claim 9, wherein the paging message of "Paging Type 1" includes MBMS Service ID.
11. The method as claimed in claim 9, wherein the paging message of "Paging Type 1 " includes Response Indicator.
12. The method as claimed in claim 9, wherein the paging message of "Paging Type 1 " includes Activation time.
13. The method as claimed in claim 1, wherein the paging message adopts
"MBMS Paging ".
14. The method as claimed in claim 13, wherein the "MBMS Paging" message includes MBMS Group Indicator (TMGI) and MBMS Service ID.
15. The method as claimed in claiml 3, wherein the "MBMS Paging" message includes Response Indicator.
16. The method as claimed in claim 13, wherein the "MBMS Paging" message includes Activation time.
17. The method as claimed in claiml, wherein that the radio bearer
« parameters includes: Radio Bearer information (RB info), Transfer Channel information (TrCH info), Physical Channel information (PhyCH info), Code information (Code info) , Transfer Format Set (TFS), Transfer Format
Combination Set (TFCS) and Activation time.
18. The method as claimed in claiml, wherein the Base Station (Node B) deteπnines the frame of the frame protocol (PCH lubFP) as if MI equals to 0, it indicates that the frame of the frame protocol (PCH lubFP) belongs to conventional paging; if MI equals 1 , it indicates that the frame of the frame protocol (PCH lubFP) includes MBMS service information.
19. The method as claimed in claiml, wherein a User Equipment (UE) examines the last 12 bits of PICH and reads the SCCPCH frame to acquire MBMS paging message if the PICH indicate to read the SCCPCH;
20. The method as claimed in claiml, wherein the paging message received by UE including radio bearer parameters, UE sets up radio bearer.
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Cited By (33)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
GB2398973A (en) * 2003-01-10 2004-09-01 Nec Corp Paging in provision of MBMS
WO2004088997A2 (en) * 2003-04-03 2004-10-14 Nokia Corporation Broadcast/ multicast service signalling
EP1513368A2 (en) * 2003-09-04 2005-03-09 Lucent Technologies Inc. Methods for signaling broadcast and multicast information in communcation networks
EP1608196A1 (en) * 2004-06-18 2005-12-21 Matsushita Electric Industrial Co., Ltd. Detection of notifications in a communication system
WO2006011164A1 (en) * 2004-07-27 2006-02-02 Telecom Italia S.P.A. Transmission of multimedia contents to a plurality of mobile users
EP1702440A2 (en) * 2003-12-30 2006-09-20 Motorola, Inc. Broadcast/multicast services in communications networks
WO2006110446A1 (en) * 2005-04-07 2006-10-19 Qualcomm Incorporated Conveying a content delivery schedule to mobile terminals
EP1749353A1 (en) * 2004-04-19 2007-02-07 LG Electronics Inc. Transmission of control information in wireless communication system
KR100706908B1 (en) 2005-08-05 2007-04-12 에스케이 텔레콤주식회사 Mobile Communication System for Optimizing of Radio Access Bearer and Call Set-up Method Thereof
EP1781057A1 (en) * 2005-10-26 2007-05-02 Matsushita Electric Industrial Co., Ltd. Fast radio bearer establishment in a mobile communication system
WO2007051910A1 (en) * 2005-11-03 2007-05-10 Nokia Corporation Radio resource control
CN100455110C (en) * 2005-06-06 2009-01-21 华为技术有限公司 Random access channel distribution and access method
US7675891B2 (en) 2004-09-23 2010-03-09 Telefonakiebolaget L M Ericsson (Publ) Multimedia reception in communication networks
EP2168263A2 (en) * 2007-06-18 2010-03-31 Lg Electronics Inc. Paging information transmission method for effective call setup
CN1610445B (en) * 2004-11-25 2010-04-28 开曼群岛威睿电通股份有限公司 Expansion method for broadcasting / multibroadcasting service index signal compatible to traditional mode
CN101990164A (en) * 2009-07-31 2011-03-23 中兴通讯股份有限公司 Sending method and system of multimedia broadcast multicast service (MBMS) notification message
US8064885B2 (en) 2005-01-25 2011-11-22 Samsung Electronics Co., Tld Method and apparatus for sending notification about broadcast service in a mobile broadcast system
US8155660B2 (en) 2006-02-06 2012-04-10 Lg Electronics Inc. MBMS dual receiver
EP2326111A3 (en) * 2004-02-11 2012-04-11 Qualcomm Incorporated Transmission of notifications for broadcast and multicast services
US8160025B2 (en) 2006-05-02 2012-04-17 Lg Electronics Inc. Method for data transmission during a handover in mobile communications system
RU2451426C2 (en) * 2006-02-06 2012-05-20 Эл Джи Электроникс Инк. Multimedia broadcast/multicast services dual receiver
CN102625255A (en) * 2011-02-01 2012-08-01 鼎桥通信技术有限公司 Cluster communication system
US8311563B2 (en) 2004-04-19 2012-11-13 Lg Electronics Inc. Communication of point to multipoint service information in wireless communication system
US8682331B2 (en) 2009-02-10 2014-03-25 Qualcomm Incorporated System and method for interference beacon transmission
US8798070B2 (en) 2007-05-02 2014-08-05 Lg Electronics Inc. Method of transmitting data in a wireless communication system
US8811336B2 (en) 2006-08-22 2014-08-19 Lg Electronics Inc. Method of performing handover and controlling thereof in a mobile communication system
US8832449B2 (en) 2006-03-22 2014-09-09 Lg Electronics Inc. Security considerations for the LTE of UMTS
USRE45347E1 (en) 2007-04-30 2015-01-20 Lg Electronics Inc. Methods of transmitting data blocks in wireless communication system
US8964652B2 (en) 2007-06-18 2015-02-24 Lg Electronics Inc. Method for enhancing of controlling radio resources, method for transmitting status report, and receiver in mobile communication system
US9049655B2 (en) 2007-06-18 2015-06-02 Lg Electronics Inc. Method of performing uplink synchronization in wireless communication system
US9161306B2 (en) 2006-10-30 2015-10-13 Lg Electronics Inc. Method for transitioning between multiple reception levels
US10609676B1 (en) * 2016-06-21 2020-03-31 Samsung Electronics Co., Ltd. System and method of paging in next generation wireless communication system
EP4027718A1 (en) * 2021-01-07 2022-07-13 FG Innovation Company Limited Method of performing a paging reception and user equipment using the same

Families Citing this family (100)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US8126127B2 (en) * 2002-01-16 2012-02-28 Qualcomm Incorporated Method and apparatus for provision of broadcast service information
US7400593B2 (en) * 2003-08-15 2008-07-15 Samsung Electronics Co., Ltd Method for distinguishing MBMS service request from other service requests
KR100964679B1 (en) * 2003-08-19 2010-06-22 엘지전자 주식회사 Method of counting RRC Connected Mode in MBMS Service
CN101384006B (en) * 2003-08-25 2011-05-11 北京三星通信技术研究有限公司 Method for supporting MBMS backward compatibility
DE50308420D1 (en) * 2003-09-29 2007-11-29 Nokia Siemens Networks Gmbh Transmitting information (NACK) from a user terminal regarding receipt of a frame in a point-to-multipoint radio communication system
KR101042803B1 (en) * 2003-11-06 2011-06-20 삼성전자주식회사 Paging method for a mbms service in a mobile communication system
EP1530395A2 (en) * 2003-11-07 2005-05-11 Lg Electronics Inc. Paging technique to support point-to-multipoint (P-T-M) data transmissions
EP1683373B1 (en) * 2003-11-14 2008-09-03 Nokia Siemens Networks Gmbh & Co. Kg Method for transmitting messages relating to a multimedia broadcast/multicast service (mbms), base station, subscriber station and radiocommunication system
KR100608843B1 (en) * 2004-01-09 2006-08-08 엘지전자 주식회사 Method for mbms paging reception in mobile communication system
KR100595644B1 (en) * 2004-01-09 2006-07-03 엘지전자 주식회사 Method for receiving notification indicator for point-to-multipoint service in mobile communication system
GB2409952B (en) * 2004-01-12 2008-10-15 Nec Corp Mobile telecommunications
US7398091B2 (en) * 2004-02-02 2008-07-08 Motorola, Inc. Method and apparatus for providing a multimedia broadcast/multicast service in a visited network
KR20050081836A (en) * 2004-02-12 2005-08-19 삼성전자주식회사 Method which makes system effectively transmit paging information to an ue that receives an signaling related to multimedia broadcast/multicast service in a mobile communication system
US7450933B2 (en) * 2004-02-12 2008-11-11 Samsung Electronics Co., Ltd Method of efficiently transmitting control information for multimedia broadcast/multicast service
GB0410481D0 (en) * 2004-05-11 2004-06-16 Nokia Corp Frame transmission interval
CN100387071C (en) * 2004-06-30 2008-05-07 华为技术有限公司 Method for realizing multimedia broadcast and multi cast service by air interface
CN100388718C (en) * 2004-08-10 2008-05-14 华为技术有限公司 Method for building bearing in multimedia broadcast/multicast service
CN1303799C (en) * 2004-10-28 2007-03-07 华为技术有限公司 Method for controlling multimedia broadcast/multicast service conversation
CN100450202C (en) * 2004-11-13 2009-01-07 华为技术有限公司 Method for receiving group broadcasting business data by mobile station in radio network
ATE499810T1 (en) * 2004-12-07 2011-03-15 Huawei Tech Co Ltd METHOD AND SYSTEM FOR OBTAINING NETWORK-SIDE INFORMATION FROM A LISTENING MOBILE STATION DURING A VGCS/VBS PROCEDURE
CN100370848C (en) * 2004-12-07 2008-02-20 华为技术有限公司 Method for obtaining hearing person movable station information from network in group calling/group playing procedure
CN100413370C (en) * 2004-12-13 2008-08-20 上海贝尔阿尔卡特股份有限公司 Method and apparatus for transmitting multimedia broadcast/multicast service apprized indication
CN100566322C (en) * 2004-12-13 2009-12-02 上海贝尔阿尔卡特股份有限公司 The method and the corresponding modulation and demodulation device of indication indicated and informed in the transmission paging
CN100442913C (en) * 2005-02-04 2008-12-10 华为技术有限公司 Method for paging user's device
KR101041814B1 (en) * 2005-02-15 2011-06-17 엘지전자 주식회사 Method of providing point-to-multipoint service in mobile communications system
CN100403846C (en) * 2005-05-26 2008-07-16 华为技术有限公司 Method for providing message interaction in user message service
CN1933439B (en) * 2005-09-16 2010-08-11 华为技术有限公司 Realizing method and apparatus for user joining multi casting/broadcasting business
CN100411377C (en) * 2005-10-31 2008-08-13 华为技术有限公司 Method for activating multicast service
CN101300883B (en) * 2005-11-01 2012-03-21 皇家飞利浦电子股份有限公司 Associated paging indicator
CN100442863C (en) * 2006-01-11 2008-12-10 华为技术有限公司 Multiple media broadcasting method in mobile communication system
DE102006002892A1 (en) * 2006-01-20 2007-08-02 Siemens Ag Method, system, computer program, data carrier and computer program product for transmitting media data of a multicast service
US7801510B2 (en) * 2006-02-27 2010-09-21 Samsung Electronics Co., Ltd Authentication method in a mobile broadcast system and system thereof
US8737984B2 (en) * 2006-03-13 2014-05-27 Apple Inc. WiMAX intra-ASN service flow ID mobility
CN101039503B (en) * 2006-03-18 2011-06-01 华为技术有限公司 Method for realizing paging in multimedia broadcasting/multicast service
CN101043710B (en) * 2006-03-20 2011-05-11 华为技术有限公司 Terminal process instructing system method and device, and terminal processing system method and device
CN100525501C (en) * 2006-03-24 2009-08-05 华为技术有限公司 Multimedia broadcast/multicast service first choice frequency layer information notifying method and system
WO2007124685A1 (en) * 2006-04-24 2007-11-08 Huawei Technologies Co., Ltd. Paging medthod and apparatus in communication network
CN101064909B (en) * 2006-04-30 2010-06-23 中兴通讯股份有限公司 Method for transferring paging channel resource state
US20100165927A1 (en) * 2006-06-21 2010-07-01 Jung-Im Kim Method for paging terminal of rrc connected state in lte system
CN103369468A (en) * 2006-08-09 2013-10-23 三菱电机株式会社 Data communication method and mobile communication system
WO2008028296A1 (en) * 2006-09-08 2008-03-13 Research In Motion Limited Method, and associated apparatus, of integrating extraction of extra partial identity bits with quick paging techniques where multiple pages share a message field
KR100933160B1 (en) 2006-10-02 2009-12-21 삼성전자주식회사 Method and apparatus for transmitting and receiving paging information in wireless communication system
CN1946016B (en) * 2006-11-08 2012-10-03 北京邮电大学 Merging and repeating method based on cooperation diversity
CN102209303B (en) * 2007-01-12 2014-06-11 华为技术有限公司 Method and system for determining presence of broadcast/multicast cache frame at access point
CN101222388B (en) 2007-01-12 2013-01-16 华为技术有限公司 Method and system for confirming existence of broadcast/multicast caching frame at access point
CN101237684B (en) * 2007-01-31 2011-03-23 展讯通信(上海)有限公司 TV service carrying and channel parameter configuration method in TD-SCDMA TV broadcasting system
US8077677B2 (en) 2007-01-31 2011-12-13 Interdigital Technology Corporation Method and apparatus for paging group handling
TW201538014A (en) 2007-02-05 2015-10-01 Interdigital Tech Corp Paging over a high-speed downlink shared channel
CN101242553B (en) * 2007-02-05 2011-01-05 华为技术有限公司 User data transmission method and device
CN101247551B (en) 2007-02-12 2011-09-21 华为技术有限公司 Service time division multiplex method and device
CN102291685B (en) * 2007-02-12 2014-03-12 华为技术有限公司 Method and device for transmitting service
US20080227449A1 (en) 2007-03-15 2008-09-18 Qualcomm Incorporated Pich-hs timing and operation
CN101267593B (en) * 2007-03-15 2011-04-20 华为技术有限公司 Method and base station for activating multicast and broadcast multimedia service in target cells
CN101047438B (en) * 2007-03-27 2010-05-26 中兴通讯股份有限公司 Method for transceiving MBMS data using reframe in TD-SCDMA
US8300566B2 (en) * 2007-04-17 2012-10-30 Innovative Sonic Limited Method and apparatus for enhancing receiving efficiency of an multimedia broadcast multicast service in a wireless communications system
CN101296413B (en) * 2007-04-25 2012-07-18 中兴通讯股份有限公司 Method for double-receiver terminal implementing multimedia broadcast multicast service
WO2008134473A2 (en) * 2007-04-26 2008-11-06 Interdigital Technology Corporation Method and apparatus of measurement mechanism and efficient paging and broadcasting scheme implementation in mbms dedicated cell of lte systems
CN101299828B (en) * 2007-04-30 2011-05-04 华为技术有限公司 System and method for providing multimedia broadcast multicast service
CN101312553B (en) * 2007-05-25 2011-11-30 中兴通讯股份有限公司 Monitoring method for multimedia broadcast / multicast services
CN101330312B (en) * 2007-06-19 2012-10-03 华为技术有限公司 Method for transmitting beep-page information, transmission apparatus, receiving apparatus
CN101369908B (en) * 2007-08-19 2012-02-29 中兴通讯股份有限公司 Frame and signal transmitting method of multimedia broadcast and multicast system
US8768383B2 (en) * 2007-09-13 2014-07-01 Lg Electronics Inc. Method for providing control information using the paging procedure
KR101455982B1 (en) 2007-09-13 2014-11-03 엘지전자 주식회사 Methods for data communication in mobile communication
US20090080356A1 (en) 2007-09-24 2009-03-26 Qualcomm Incorporated Managing acknowledgment transmissions from multicast group members of a multicast group within a wireless communications network
KR101441138B1 (en) * 2007-09-28 2014-09-18 엘지전자 주식회사 Method of performing uplink time alignment in wireless communication system
KR101428816B1 (en) * 2007-09-28 2014-08-12 엘지전자 주식회사 Method for reselecting a cell and detecting whether a terminal is stationay in mobile telecommunications system
KR101473010B1 (en) * 2007-10-17 2014-12-15 엘지전자 주식회사 Method of providing circuit switched(cs) service using high-speed downlink packet access(hsdpa) or high-speed uplink packet access(hsupa)
CN101836475B (en) * 2007-10-24 2013-03-06 日本电气株式会社 Mobile communication system, common channel transmission control device, and common channel transmission control method used for them
KR20090045039A (en) * 2007-10-30 2009-05-07 엘지전자 주식회사 Method of reselecting a cell based on priorities
KR101532789B1 (en) * 2008-01-04 2015-07-09 엘지전자 주식회사 Harq operation method for retransmitted data
EP2077690B1 (en) * 2008-01-07 2015-03-18 LG Electronics Inc. Method of reselecting a cell based on priorities
KR101565403B1 (en) * 2008-01-07 2015-11-03 엘지전자 주식회사 METHOD OF HANDLING AN ERROR ON CS voice over HSPA
KR101514079B1 (en) * 2008-01-07 2015-04-21 엘지전자 주식회사 Method for reconfiguring time alignment timer
CN101483812B (en) * 2008-01-08 2010-10-27 大唐移动通信设备有限公司 Paging method and system for multimedia broadcast multicast service
US8190177B2 (en) * 2008-01-10 2012-05-29 Research In Motion Limited Paging a mobile station individually and using broadcast pages
CN101483822B (en) * 2008-01-11 2012-05-09 中兴通讯股份有限公司 Radio network controller and method for inter-base station interface paging type 1 message transmission
US8644860B2 (en) * 2008-01-11 2014-02-04 Blackberry Limited Apparatus, and associated method, for paging a mobile station with page addresses upon a paging channel
CN101515858B (en) * 2008-02-21 2012-12-12 华为技术有限公司 Method, system and terminal for adding multicast-broadcast services into terminal in wireless network
US8605704B2 (en) * 2008-12-23 2013-12-10 Motorola Mobility Llc Method and device for paging and media services on a single carrier frequency
US20120140693A1 (en) * 2009-08-11 2012-06-07 Yu Chen Method of trimming traffic in an e-mbms system and bm-sc for implementing the method
KR101754447B1 (en) * 2009-12-22 2017-07-05 인터디지탈 패튼 홀딩스, 인크 Group-based machine to machine communication
CN102714859B (en) 2010-01-21 2016-05-25 Lg电子株式会社 The binding of 1X message
US9167517B2 (en) 2010-01-29 2015-10-20 Interdigital Patent Holdings, Inc. Group-based machine to machine communication
CN102158911A (en) * 2010-02-11 2011-08-17 华为技术有限公司 Machine-to-machine service bearer establishment method and network transmission equipment
CN107948952A (en) 2010-10-01 2018-04-20 三菱电机株式会社 Communication system
CN102647665B (en) 2011-02-21 2015-02-04 华为技术有限公司 Group message processing method, device and system
WO2012103714A1 (en) * 2011-06-27 2012-08-09 华为技术有限公司 Method and apparatus for transmitting broadcast multicast service data
KR101288038B1 (en) * 2012-02-02 2013-07-19 주성엔지니어링(주) Substrate placing means, and Appratus and Module for treating substrate including the same
CN103379581B (en) * 2012-04-24 2016-08-17 华为技术有限公司 Data transmission method, subscriber equipment, base station and system
CN103796175B (en) * 2012-10-31 2019-09-24 中兴通讯股份有限公司 The method and related device of clustered paging are sent, received in a kind of LTE system
EP2987345B1 (en) * 2013-04-18 2019-04-10 Qualcomm Incorporated Mbms bearer enhancements for push to talk or push to everything via embms
WO2015046941A1 (en) 2013-09-26 2015-04-02 Lg Electronics Inc. Method and apparatus for indicating stopping mbms transmission in wireless communication system
BR112016025480A2 (en) * 2014-04-30 2017-10-17 Huawei Tech Co Ltd method for transmitting downlink data, mobility management network element, access network device, and server communication port
WO2016011621A1 (en) * 2014-07-23 2016-01-28 华为技术有限公司 Method and apparatus for identifying cluster user
US9955453B2 (en) * 2015-08-25 2018-04-24 Intel Corporation Evolved Node-B, user equipment, and methods for paging using a bitmap of paging indicators
WO2018058692A1 (en) * 2016-10-01 2018-04-05 华为技术有限公司 Broadcast bearer management method and device thereof
US10772072B2 (en) * 2017-05-06 2020-09-08 Qualcomm Incorporated Reserved range of TMGI for receive-only mode
CN111225344B (en) * 2018-11-27 2021-09-14 华为技术有限公司 Communication method, device and system
CN114760596B (en) * 2021-01-11 2023-08-25 维沃移动通信有限公司 Data transmission method and device and network side equipment
WO2022250375A1 (en) * 2021-05-28 2022-12-01 Lg Electronics Inc. Method and apparatus for group paging in a wireless communication system

Citations (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
WO2001086980A1 (en) * 2000-05-08 2001-11-15 Nokia Corporation Shared application access for data services in wireless telecommunication systems

Family Cites Families (22)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US20040081192A1 (en) * 2001-10-19 2004-04-29 Dimitiris Koulakiotis Transmission of multicast and broadcast multimedia services via a radio interface
US7177658B2 (en) * 2002-05-06 2007-02-13 Qualcomm, Incorporated Multi-media broadcast and multicast service (MBMS) in a wireless communications system
KR20030097373A (en) * 2002-06-20 2003-12-31 삼성전자주식회사 Apparatus for paging of multimedia broadcast/multicast service in mobile communication system and method therof
KR100917042B1 (en) * 2002-08-14 2009-09-10 엘지전자 주식회사 Transmission method for broadcasting and multicast data in mobile radio communication system
AU2003264965B2 (en) * 2002-09-23 2006-06-15 Lg Electronics Inc. Radio communication scheme for providing multimedia broadcast and multicast services (MBMS)
US20040180675A1 (en) * 2002-11-06 2004-09-16 Samsung Electronics Co., Ltd. Method for transmitting and receiving control messages in a mobile communication system providing MBMS service
SE0300047D0 (en) * 2003-01-08 2003-01-08 Ericsson Telefon Ab L M MBMS in UTRAN
JP2004221759A (en) * 2003-01-10 2004-08-05 Nec Corp Mobile communication system, radio terminal and radio controller used therefor, and its operation control method
GB0307764D0 (en) * 2003-04-03 2003-05-07 Nokia Corp Push service location using virtual indentification of predictable temporal announcements
ES2319883T3 (en) * 2003-05-09 2009-05-14 Nokia Siemens Networks S.P.A. PROCEDURE FOR TRANSMITTING MULTIMEDIA SERVICES CONTENTS IN UMTS NETWORKS THROUGH IMMEDIATE MULTIDIFUSION OF A CONTINUOUS FLOW SUBCONJUNCT.
KR20040098394A (en) * 2003-05-14 2004-11-20 삼성전자주식회사 Method for transmitting paging information to a mbms service in mobile communication system
KR20050020458A (en) * 2003-08-22 2005-03-04 삼성전자주식회사 Methods for paging user equipment with dedicated channel in a mobile communication system which support mbms
US20050118992A1 (en) * 2003-10-02 2005-06-02 Samsung Electronics Co., Ltd. Method of transmitting and receiving service availability information about a multimedia broadcast/multicast service
KR101042803B1 (en) * 2003-11-06 2011-06-20 삼성전자주식회사 Paging method for a mbms service in a mobile communication system
GB2409952B (en) * 2004-01-12 2008-10-15 Nec Corp Mobile telecommunications
US7546132B2 (en) * 2004-04-19 2009-06-09 Lg Electronics, Inc. Communication of point to multipoint service information in wireless communication system
US7535882B2 (en) * 2004-08-12 2009-05-19 Lg Electronics, Inc. Reception in dedicated service of wireless communication system
KR100770876B1 (en) * 2004-09-30 2007-10-26 삼성전자주식회사 Method and apparatus for frequency-selection when session start in mbms system
CN100413370C (en) * 2004-12-13 2008-08-20 上海贝尔阿尔卡特股份有限公司 Method and apparatus for transmitting multimedia broadcast/multicast service apprized indication
AU2006298052B2 (en) * 2005-01-05 2009-12-24 Lg Electronics Inc. Managing channel configuration information in a wireless communication system
US7961700B2 (en) * 2005-04-28 2011-06-14 Qualcomm Incorporated Multi-carrier operation in data transmission systems
RU2414098C2 (en) * 2005-08-22 2011-03-10 Эл Джи Электроникс Инк. Method of processing messages with control information during multipoint servicing

Patent Citations (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
WO2001086980A1 (en) * 2000-05-08 2001-11-15 Nokia Corporation Shared application access for data services in wireless telecommunication systems

Non-Patent Citations (1)

* Cited by examiner, † Cited by third party
Title
RAVINDRAN K., LOGUINOV D.: "Incorporation of flow and QoS control in multicast routing architectures", 7TH INTERNATIONAL CONFERENCE ON COMPUTER COMMUNICATIONS AND NETWORKS, 1998. PROCEEDINGS, 12 October 1998 (1998-10-12) - 15 October 1998 (1998-10-15), pages 312 - 320 *

Cited By (54)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
GB2398973A (en) * 2003-01-10 2004-09-01 Nec Corp Paging in provision of MBMS
WO2004088997A2 (en) * 2003-04-03 2004-10-14 Nokia Corporation Broadcast/ multicast service signalling
WO2004088997A3 (en) * 2003-04-03 2004-12-16 Nokia Corp Broadcast/ multicast service signalling
US7403790B2 (en) 2003-09-04 2008-07-22 Lucent Technologies Inc. Methods for signaling broadcast and multicast information in communication networks
EP1513368A2 (en) * 2003-09-04 2005-03-09 Lucent Technologies Inc. Methods for signaling broadcast and multicast information in communcation networks
EP1513368A3 (en) * 2003-09-04 2005-06-15 Lucent Technologies Inc. Methods for signaling broadcast and multicast information in communcation networks
US7454165B2 (en) 2003-09-04 2008-11-18 Lucent Technologies Inc. Methods of receiving signaling information in a communication network supporting a broadcast-multicast service
EP1702440A2 (en) * 2003-12-30 2006-09-20 Motorola, Inc. Broadcast/multicast services in communications networks
EP1702440A4 (en) * 2003-12-30 2009-04-08 Motorola Inc Broadcast/multicast services in communications networks
EP2326111A3 (en) * 2004-02-11 2012-04-11 Qualcomm Incorporated Transmission of notifications for broadcast and multicast services
US8521139B2 (en) 2004-02-11 2013-08-27 Qualcomm Incorporated Transmission of notifications for broadcast and multicast services
EP1749353A1 (en) * 2004-04-19 2007-02-07 LG Electronics Inc. Transmission of control information in wireless communication system
US8311563B2 (en) 2004-04-19 2012-11-13 Lg Electronics Inc. Communication of point to multipoint service information in wireless communication system
EP1749353A4 (en) * 2004-04-19 2012-02-22 Lg Electronics Inc Transmission of control information in wireless communication system
EP1608196A1 (en) * 2004-06-18 2005-12-21 Matsushita Electric Industrial Co., Ltd. Detection of notifications in a communication system
US8644205B2 (en) 2004-07-27 2014-02-04 Telecom Italia S.P.A. Transmission of multimedia contents to a plurality of mobile users
WO2006011164A1 (en) * 2004-07-27 2006-02-02 Telecom Italia S.P.A. Transmission of multimedia contents to a plurality of mobile users
US7675891B2 (en) 2004-09-23 2010-03-09 Telefonakiebolaget L M Ericsson (Publ) Multimedia reception in communication networks
CN1610445B (en) * 2004-11-25 2010-04-28 开曼群岛威睿电通股份有限公司 Expansion method for broadcasting / multibroadcasting service index signal compatible to traditional mode
US8064885B2 (en) 2005-01-25 2011-11-22 Samsung Electronics Co., Tld Method and apparatus for sending notification about broadcast service in a mobile broadcast system
US10090951B2 (en) 2005-01-25 2018-10-02 Samsung Electronics Co., Ltd Method and apparatus for sending notification about broadcast service in a mobile broadcast system
US9692536B2 (en) 2005-01-25 2017-06-27 Samsung Electronics Co., Ltd Method and apparatus for sending notification about broadcast service in a mobile broadcast system
WO2006110446A1 (en) * 2005-04-07 2006-10-19 Qualcomm Incorporated Conveying a content delivery schedule to mobile terminals
US9288538B2 (en) 2005-04-07 2016-03-15 Qualcomm Incorporated Methods and apparatus for conveying a delivery schedule to mobile terminals
CN101189904B (en) * 2005-04-07 2014-03-26 高通股份有限公司 Conveying a content delivery schedule to mobile terminals
CN100455110C (en) * 2005-06-06 2009-01-21 华为技术有限公司 Random access channel distribution and access method
KR100706908B1 (en) 2005-08-05 2007-04-12 에스케이 텔레콤주식회사 Mobile Communication System for Optimizing of Radio Access Bearer and Call Set-up Method Thereof
JP2009514279A (en) * 2005-10-26 2009-04-02 パナソニック株式会社 Fast establishment of radio bearers in mobile communication systems
WO2007048470A1 (en) * 2005-10-26 2007-05-03 Matsushita Electric Industrial Co., Ltd. Fast radio bearer establishment in a mobile communication system
EP1781057A1 (en) * 2005-10-26 2007-05-02 Matsushita Electric Industrial Co., Ltd. Fast radio bearer establishment in a mobile communication system
WO2007051910A1 (en) * 2005-11-03 2007-05-10 Nokia Corporation Radio resource control
US8155660B2 (en) 2006-02-06 2012-04-10 Lg Electronics Inc. MBMS dual receiver
RU2451426C2 (en) * 2006-02-06 2012-05-20 Эл Джи Электроникс Инк. Multimedia broadcast/multicast services dual receiver
US8832449B2 (en) 2006-03-22 2014-09-09 Lg Electronics Inc. Security considerations for the LTE of UMTS
US8160025B2 (en) 2006-05-02 2012-04-17 Lg Electronics Inc. Method for data transmission during a handover in mobile communications system
US8811336B2 (en) 2006-08-22 2014-08-19 Lg Electronics Inc. Method of performing handover and controlling thereof in a mobile communication system
US9516695B2 (en) 2006-10-30 2016-12-06 Lg Electronics Inc. Method for transitioning between multiple reception levels
US9161306B2 (en) 2006-10-30 2015-10-13 Lg Electronics Inc. Method for transitioning between multiple reception levels
USRE45347E1 (en) 2007-04-30 2015-01-20 Lg Electronics Inc. Methods of transmitting data blocks in wireless communication system
US9131003B2 (en) 2007-05-02 2015-09-08 Lg Electronics Inc. Method of transmitting data in a wireless communication system
US8798070B2 (en) 2007-05-02 2014-08-05 Lg Electronics Inc. Method of transmitting data in a wireless communication system
EP2168263A2 (en) * 2007-06-18 2010-03-31 Lg Electronics Inc. Paging information transmission method for effective call setup
EP2168263A4 (en) * 2007-06-18 2013-12-25 Lg Electronics Inc Paging information transmission method for effective call setup
US9049655B2 (en) 2007-06-18 2015-06-02 Lg Electronics Inc. Method of performing uplink synchronization in wireless communication system
US9538490B2 (en) 2007-06-18 2017-01-03 Lg Electronics Inc. Method of performing uplink synchronization in wireless communication system
US8964652B2 (en) 2007-06-18 2015-02-24 Lg Electronics Inc. Method for enhancing of controlling radio resources, method for transmitting status report, and receiver in mobile communication system
US8682331B2 (en) 2009-02-10 2014-03-25 Qualcomm Incorporated System and method for interference beacon transmission
CN101990164B (en) * 2009-07-31 2016-07-06 中兴通讯股份有限公司 The sending method of MBMS notification message and system
CN101990164A (en) * 2009-07-31 2011-03-23 中兴通讯股份有限公司 Sending method and system of multimedia broadcast multicast service (MBMS) notification message
CN102625255A (en) * 2011-02-01 2012-08-01 鼎桥通信技术有限公司 Cluster communication system
US10609676B1 (en) * 2016-06-21 2020-03-31 Samsung Electronics Co., Ltd. System and method of paging in next generation wireless communication system
US10764862B2 (en) 2016-06-21 2020-09-01 Samsung Electronics Co., Ltd. System and method of paging in next generation wireless communication system
US10904859B2 (en) 2016-06-21 2021-01-26 Samsung Electronics Co., Ltd. System and method of paging in next generation wireless communication system
EP4027718A1 (en) * 2021-01-07 2022-07-13 FG Innovation Company Limited Method of performing a paging reception and user equipment using the same

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