WO2007011174A2 - A method for setup and controlling service connection - Google Patents

A method for setup and controlling service connection Download PDF

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Publication number
WO2007011174A2
WO2007011174A2 PCT/KR2006/002851 KR2006002851W WO2007011174A2 WO 2007011174 A2 WO2007011174 A2 WO 2007011174A2 KR 2006002851 W KR2006002851 W KR 2006002851W WO 2007011174 A2 WO2007011174 A2 WO 2007011174A2
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WO
WIPO (PCT)
Prior art keywords
service
service type
message
information
transmitting
Prior art date
Application number
PCT/KR2006/002851
Other languages
French (fr)
Other versions
WO2007011174A3 (en
Inventor
Chan Ho Kyung
Byung Kwan Yi
Sang Gook Kim
Original Assignee
Lg Electronics Inc.
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.)
Filing date
Publication date
Application filed by Lg Electronics Inc. filed Critical Lg Electronics Inc.
Priority to CA2615521A priority Critical patent/CA2615521C/en
Priority to EP06783363.2A priority patent/EP1905266B1/en
Priority to CN2006800263208A priority patent/CN101223813B/en
Publication of WO2007011174A2 publication Critical patent/WO2007011174A2/en
Publication of WO2007011174A3 publication Critical patent/WO2007011174A3/en

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Classifications

    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W28/00Network traffic management; Network resource management
    • H04W28/16Central resource management; Negotiation of resources or communication parameters, e.g. negotiating bandwidth or QoS [Quality of Service]
    • H04W28/18Negotiating wireless communication parameters
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04LTRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
    • H04L65/00Network arrangements, protocols or services for supporting real-time applications in data packet communication
    • H04L65/1066Session management
    • H04L65/1069Session establishment or de-establishment
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04LTRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
    • H04L65/00Network arrangements, protocols or services for supporting real-time applications in data packet communication
    • H04L65/40Support for services or applications
    • H04L65/403Arrangements for multi-party communication, e.g. for conferences
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W76/00Connection management
    • H04W76/10Connection setup
    • H04W76/12Setup of transport tunnels

Definitions

  • the present invention relates to a call setup, and more particularly, to a method of setup and controlling service connection.
  • a mobile communication system provides services for voice and multimedia such as video.
  • the service for voice communication includes transmitting and receiving voice information between users of mobile communication.
  • the service for multimedia communication includes transmitting and receiving, not only voice, but also still images and video. Disclosure of Invention Technical Problem
  • the present invention is directed to a method of setup and controlling service connection that substantially obviates one or more problems due to limitations and disadvantages of the related art.
  • An object of the present invention is to provide a method of establishing connection between a first mobile station (MS) and a second MS in a mobile communication system.
  • Another object of the present invention is to provide a method of communicating with at least one mobile station (MS) for establishing service connection in a mobile communication system
  • a method of establishing connection between a first mobile station (MS) and a second MS in a mobile communication system includes transmitting to at least one base station (BS) a service message which includes information of at least one service type supported by the first MS and the second MS, wherein the at least one service type relates to a multimedia service supported by each of the first MS and the second MS, transmitting a request message which includes information of at least one service type selected by the first MS, receiving a response message which includes information of the selected service type which is supported by both the first MS and a second MS, and transmitting a connection complete message between the first MS and the second MS for communication using the selected service type.
  • BS base station
  • a method of establishing connection between a first mobile station (MS) and a second MS in a mobile communication system includes transmitting a request message which includes information of at least one service type selected by the first MS out of all service types supported by the first MS, wherein the service types relate to multimedia services, receiving a response message which includes information of the selected service type which is supported by both the first MS and a second MS, and transmitting a connection request message between the first MS and the second MS for communication using the selected service type.
  • a of communicating with at least one mobile station (MS) for establishing service connection in a mobile communication system includes receiving from at least one MS a service message which includes information of at least one service type supported by a first MS and a second MS, wherein the at least one service type relates to a multimedia service supported by each of the first MS and the second MS, receiving a request message which includes information of at least one service type selected by the first MS, transmitting a paging request message to the second MS, wherein the paging request message includes the at least one service type selected by the first MS, receiving a paging response message, transmitting a response message which includes information of the selected service type which is supported by both the first MS and a second MS, and receiving a connection complete message between the first MS and the second MS for communication using the selected service type.
  • FlG. 1 is a diagram illustrating a call setup procedure
  • FlG. 2 is a diagram illustrating another call setup procedure
  • FlG. 3 is a diagram illustrating another call setup procedure
  • FlG. 4 illustrates a block diagram of a MS executing a service option feature
  • FlG. 5 illustrates an example of a message for audio codec.
  • FIG. 1 is a diagram illustrating a call setup procedure.
  • a call setup procedure takes place between an origination side and a destination side.
  • the origination side refers to a MS making the request for a specific service
  • the destination side refers to a MS receiving the request and respond whether or not the requested service can be supported.
  • MS#1 If MS#1 requests for a call setup with MS#2, MS#1 transmits an origination message to BS #1 to a cell to which MS#1 belongs (SlOl).
  • the origination message includes an identifier (e.g., phone number) of MS#2 and the service option information representing a service type requested by a user.
  • the origination message further includes an indication which indicates whether or not the service option information is to be included.
  • the indication can be represented by a single bit, and the service option information can be represented by 16 bits. Since the indication is represented by a single bit (i.e., '0' or .T, if the indication is 1 O', the service option information is not included in the origination message. In such a case, a basic variable rate voice service of 8 kbps is set as default. If the indication is T, then the option information is included in the origination message.
  • the service option information can be represented by 16 bits, and each service option number can be assigned to a corresponding communication service.
  • service option #1 can represent a basic variable rate voice service having a transmission rate of 8 kbps
  • service option #3 can represent an enhanced variable rate voice service having a transmission rate of 8 kbps
  • service option #17 can represent a high rate voice service having a transmission rate of 13 kbps.
  • service option #57 can represent a circuit-based video conferencing having a transmission rate of 32 kbps
  • service option #58 can represent a circuit-based video conferencing having a transmission rate of 64 kbps.
  • MS#1 can send the origination message including a request for a specific service option.
  • a user of MS#1 selects a service option (e.g., avatar) from a plurality of service options supported by MS#1 (e.g., animation, avatar, emoticon) and requests for communication with a second MS using the selected service option.
  • MS#2 also referred to as a target MS
  • the origination message can include information on more than two (2) service options. Therefore, during the negotiation process between MS#1 and the network, any one of the two (2) or more service options can be determined upon.
  • CM connection manager
  • MS#1 MS#1
  • the assigned channel can be a traffic channel.
  • BS#2 to which MS#2 belongs receives a paging request from the network (S 105), BS#2 then transmits a paging message to MS#2 (S 106).
  • the paging message includes the service option information requested by MS#1.
  • MS#2 can transmit a paging response message including a grant to the requested service option or a different requested service option information to BS#2 (S107).
  • MS#2 can take into consideration the possibility that the requested service option may not be granted by MS#1, and therefore, MS#2 can send to BS#2 the paging response message including more than two (2) or more service options which are supported by MS#2.
  • two (2) or more service options provided by MS#2 can be used in negotiation between MS#1 and the network.
  • the negotiation takes place via a traffic channel.
  • BS#2 After receiving the paging response message, BS#2 transmits to the network a complete L3 Info message to respond to the paging response message (S 108). The network then uses the complete L3 Info message and transmits assignment request to BS#2 (S 109). Upon receipt, BS#2 sends a channel assignment message to MS#2 (SIlO).
  • the MS#1 and MS#2 each receive a traffic channel, respectively.
  • the channel assignment message includes various information such as data rate and coding rate associated with uplink and downlink traffic channels for communication between the MSs and the BSs. Further, the BS can use the channel assignment message to notify whether to continue using the current service configuration or proceed with further service negotiation. Further service negotiation between MS#1 and the network are possible since the network has the information on the service options or types that can be supported by both MS#1 and MS#2. As such, during the negotiation, the service option that is supported by both MS#1 and MS#2 can be selected. As discussed, the negotiation takes place via the traffic channel.
  • the MS and the BS can perform decoding operation on uplink/downlink signals.
  • the traffic channel for uplink/downlink communication is assigned, if MS#2 receives the requested service option by MS#1, a service connect completion message is transmitted to BS#1 and BS#2 by MS#1 and MS#2, respectively (Sill, Sl 13).
  • BS#1 and BS#2 then send an assignment completion message to the network (Sl 12, Sl 14). Thereafter, a call setup is completed without further service negotiations (Sl 15 ⁇ Sl 18).
  • FIG. 2 is a diagram illustrating another call setup procedure.
  • MS#1 transmits, periodically or as necessary, a registration message to BS#1 of its cell (S201).
  • the registration message includes service option information supported by MS#1.
  • Table 1 shows examples of service options.
  • service option #70 represents a multiplexed voice and streaming video for transmission and service option #71 represents a multiplexed voice and short-time video script (e.g., MPEG) for transmission.
  • service option #72 represents a multiplexed voice and still images for transmission.
  • still images related to various emotions or movement can be transmitted according to the user' selection.
  • service option #73 represents a multiplexed voice and animation for transmission.
  • animation related to various emotions, movement, or expression of the user can be transmitted. The animation can be transmitted to another' MS or can be displayed from pre-stored animated emotions, movements, or expressions in another' MS.
  • service option #74 represents a multiplexed voice and virtual image (e.g., Avatar) for transmission.
  • the virtual image such as avatar
  • the virtual image can be a figure of a person including a body, face, outfit, gender, hair color, skin color, and hairstyle, which can be selected by the user.
  • the user can represent a male friend using the virtual image by selecting a male person with a slim face and blonde hair wearing a surfer' outfit.
  • the service option can be defined by any combination of streaming video, short- time video script, still image, animation, and virtual image such as avatar, and such a service option can be configured in advance between the MS and the BS.
  • such a service option can be transmitted directly or can be transmitted based on expression or movement. If transmission is made based only the expression or the movement, a more efficient communication can be realized.
  • MS#1 For example, if the still images, animation, and avatar corresponding to MS#1 are pre-stored in MS#2, the user of MS#1 can use a short-cut key or a jog dial, among other input means, to transmit information only on the movement or expression of the avatar.
  • a short-cut key or a jog dial among other input means, to transmit information only on the movement or expression of the avatar.
  • the information on the entire avatar need not be transmitted, more efficient communication can be realized.
  • BS#1 After BS#1 receives the registration message, BS#1 transmits the information on the service option to the network (S202) which in turn is stored by the network.
  • Table 2 is an example of a part of the registration message.
  • SERVICE_OP ⁇ ON field between the ⁇ NUM_SO ⁇ and ⁇ NUM_SO ⁇ fields included in the registration message corresponds to a value of NUM_SO.
  • MS#2 transmits, periodically or as necessary, a registration message to
  • BS#2 of its cell S203. After BS#2 receives the registration message, BS#2 transmits the information on the service option to the network (S204) which in turn is stored by the network.
  • MS#1 If MS#1 requests for a call setup with MS#2, MS#1 sends an origination message to
  • the origination message includes an identifier (e.g., phone number) of MS#2 and the service option information representing requested service type.
  • the requested service type is the service option type with which MS#1 desires or seeks to communicate to MS#2.
  • the requested service type is an emoticon.
  • the assignment request information includes the service option information supported by both BS#l and BS#2.
  • Each of MS#1 and MS#2 transmits the service option information (S201, S203), and the service option information is then transmitted to the network via respective BSs (S202, S204) which are then stored by the network. Consequently, the network has information on the service option supported by MS#1 and the service option supported by MS#2. Furthermore, the network can transmit an assignment request message, which includes the service option information supported by MS#1 and MS#2, to BS#1. Upon receipt, BS#1 sends a channel assignment message, which includes the service option information supported by MS#1 and MS#2, to MS#1 (S208).
  • Table 3 is an example of a channel assignment message.
  • the SERVICE_OPTION field included in the channel assignment message includes information on the service option supported by both the transmitting MS and the receiving MS. If BS#2 receives a paging request, in which service option information supported by MS#1 and MS#2 in included, from the network (S209), BS#2 then transmits a paging message to MS#2 (S210). Upon receiving the paging message, MS#2 transmits a paging response message to BS#2 (S211). Here, the paging response message includes a selected service option from the service options supported by MS#1 and MS#2.
  • BS#2 After receiving the paging response message, BS#2 transmits a complete L3 Info message to the network for responding to the paging response message (S212). The network then uses the complete L3 Info message and transmits assignment request to BS#2 (S213). Upon receipt, BS#2 sends a channel assignment message to MS#2 (S214).
  • the MS#1 and MS#2 each receive a traffic channel, respectively.
  • the channel assignment message includes various information such as data rate and coding rate associated with uplink and downlink traffic channels for communication between the MSs and the BSs. Further, the BS can use the channel assignment message to notify whether to continue using the current service configuration or proceed with further service negotiation.
  • the MS and the BS can perform decoding operation on uplink/downlink signals.
  • the traffic channel for uplink/downlink communication is assigned, if MS#2 receives the requested service option by MS#1, a service connect completion message is transmitted to BS#1 and BS#2 by MS#1 and MS#2, respectively (S215, S217). Thereafter, a call is configured without further service negotiations (S218-S220, S216, S221-222).
  • FIG. 3 is a diagram illustrating another call setup procedure.
  • a call is setup using the procedures as explained in Figure 2, and additionally, a service option can be changed or added during communication which is taking place according to a selected or specific service option.
  • MS#1 transmits a service option request order to BS#1 (S301).
  • other service option information can be inputted using input means such as by a short-cut key or a jog dial.
  • the inputted service option information is transmitted to the receiving end in a form of a control signal.
  • the MS#1 user can use a short-cut key or the jog dial to select a service option using an avatar. That is, the user can change from the service option using the still image to the service option using the avatar.
  • BS#1 transmits the requested or newly selected service option request information to the network (S302).
  • the network uses the information of MS#2 registered via the registration message to determine whether MS#2 supports the service option requested by MS#1. Since the network has the information related to the service options supported by MS#2, the service negotiation procedures can be omitted, and the determination as to whether MS#2 supports the service option requested by MS#1 can be made directly.
  • the network determines that MS#2 supports the MS#1 selected service option, the network transmits service option response to notify BS#1 that the service associated with the selected service option can be supported (S303).
  • the network determines that MS#2 does not support the MS#1 selected service option, the network transmits service option response to provide BS#1 with the service options supported by both MS#1 and MS#2 (S303).
  • BS#1 transmits a service option response message, which includes the information from the network, to MS#1 (S304).
  • the network transmits service option request, which includes the requested service option information, to BS#2 (S305). Thereafter, BS#2 transmits a service option request order to MS#2 (S306). Upon receipt, MS#2 sends a service option response order to BS#2 to confirm service capability (S307). Lastly, a new service is executed according to the new service option (S308).
  • each MS provides various service options.
  • these service options such as an avatar, emoticon, and animation
  • the transmission/reception capacity can be used more efficiently and increased compared to the video communication service option.
  • the service option for transmitting special characters associated with the user can also be provided.
  • an avatar representing the caller can be displayed on the called person' screen of the MS.
  • the caller can use this avatar to express the feelings and/or emotions desired to be conveyed by movement and expressions (e.g., smile, laughter, anger, frustration, and boredom) from the caller' end.
  • movement and expressions e.g., smile, laughter, anger, frustration, and boredom
  • the avatar is used instead of video, much smaller wireless resources are consumed via the transmission, and more efficient transmission can be attained while maintaining the realistic feel to the conversation between the users.
  • Figure 4 illustrates a block diagram of a MS executing a service option feature.
  • Animation, avatar, emoticon, or text is used to express feelings of the user during the conversation with another user.
  • the MS receives information, such as an avatar for expressing how the user feels and animation for expressing different movements of the user, from the user via a video input/output unit 401.
  • the MS select the received avatar, emoticon, or animation for expression, can edit by using the pre-stored information, or can create anew an avatar, emoticon, or animation.
  • the user can select facial expressions such as frowning or smiling, movements such as dancing or holding up a fist, or emoticons such as a flower or a heart during a conversation using an avatar.
  • the selected animation, avatar, or emoticon is displayed on the screen of the MS and thereafter is inputted into a video codec unit 402 to transmit the selection to the MS of another user. Since the user is engaged in a conversation or voice communication with another user, the voice inputted to voice input/output unit 403 is converted to digital signal before being inputted to an audio codec unit 404.
  • the video codec unit 402 performs coding for information related to avatar, emoticon, and animation as well as control information associated with the information.
  • the audio codec unit 404 performs coding for audio signals which is subsequently inputted into a multiplexer/demultiplexer 405.
  • the multiplexer/demultiplexer 405 multiplexes the coded audio signal and the coded video signal and transmit the multiplexed signal to the BS.
  • the multiplexed audio and video signals is received by the BS and upon reception, demultiplexed by the multiplexer/demultiplexer 405.
  • the demultiplexed signals are then decoded by the audio codec unit 402 and the video codec unit 404.
  • the decoded video signal and the decoded audio signal are processed by the video input/output unit 401 and the audio input/output unit 403, respectively, before being transmitted to a user.
  • Figure 5 illustrates an example of a message for audio codec.
  • a header field 501 for video codec can be further classified by a message type part 501a and a message length part 501b. More specifically, the message type part 501a indicates whether service option, such as avatar, emoticon, or text, is included in the message, and the message length part 501b includes lengths for each service option such as avatar, emoticon, or text.
  • a message field 502 includes encoded data corresponding to the length of the header. Moreover, parity bits 503 can be added for error detection.
  • the service option information related to avatar, still images, emoticon, and animation, among others can be provided to the network by MS#1 and MS#2.
  • the network retains the service options are known in advance, before any requests are made by a MS, by the network and can facilitate communication during the connected state.
  • the bandwidth or frequency bandwidth used for communication can vary depending on the selected service option. In other words, selecting to communicate based on one of the service options can occupy less bandwidth than communicating using a full video stream. That is, since the network has the information of the service types pre-stored, the traffic flow between MS#1 and MS#2 would be minimal compared to transmitting the full video stream.

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Abstract

A method of establishing connection between a first mobile station (MS) and a second MS in a mobile communication system is disclosed. More specifically, the method includes transmitting to at least one base station (BS) a service message which includes information of at least one service type supported by the first MS and the second MS. Here the at least one service type relates to a multimedia service supported by each of the first MS and the second MS. Furthermore, the method includes transmitting a request message which includes information of at least one service type selected by the first MS, receiving a response message which includes information of the selected service type which is supported by both the first MS and a second MS, and transmitting a connection complete message between the first MS and the second MS for communication using the selected service type.

Description

Description
A METHOD FOR SETUP AND CONTROLLING SERVICE
CONNECTION
Technical Field
[1] The present invention relates to a call setup, and more particularly, to a method of setup and controlling service connection.
Background Art
[2] A mobile communication system provides services for voice and multimedia such as video. The service for voice communication includes transmitting and receiving voice information between users of mobile communication. Moreover, the service for multimedia communication includes transmitting and receiving, not only voice, but also still images and video. Disclosure of Invention Technical Problem
[3] Accordingly, the present invention is directed to a method of setup and controlling service connection that substantially obviates one or more problems due to limitations and disadvantages of the related art. Technical Solution
[4] An object of the present invention is to provide a method of establishing connection between a first mobile station (MS) and a second MS in a mobile communication system.
[5] Another object of the present invention is to provide a method of communicating with at least one mobile station (MS) for establishing service connection in a mobile communication system
[6] Additional advantages, objects, and features of the invention will be set forth in part in the description which follows and in part will become apparent to those having ordinary skill in the art upon examination of the following or may be learned from practice of the invention. The objectives and other advantages of the invention may be realized and attained by the structure particularly pointed out in the written description and claims hereof as well as the appended drawings.
[7] To achieve these objects and other advantages and in accordance with the purpose of the invention, as embodied and broadly described herein, a method of establishing connection between a first mobile station (MS) and a second MS in a mobile communication system includes transmitting to at least one base station (BS) a service message which includes information of at least one service type supported by the first MS and the second MS, wherein the at least one service type relates to a multimedia service supported by each of the first MS and the second MS, transmitting a request message which includes information of at least one service type selected by the first MS, receiving a response message which includes information of the selected service type which is supported by both the first MS and a second MS, and transmitting a connection complete message between the first MS and the second MS for communication using the selected service type.
[8] In another aspect of the present invention, a method of establishing connection between a first mobile station (MS) and a second MS in a mobile communication system includes transmitting a request message which includes information of at least one service type selected by the first MS out of all service types supported by the first MS, wherein the service types relate to multimedia services, receiving a response message which includes information of the selected service type which is supported by both the first MS and a second MS, and transmitting a connection request message between the first MS and the second MS for communication using the selected service type.
[9] In further aspect of the present invention, a of communicating with at least one mobile station (MS) for establishing service connection in a mobile communication system includes receiving from at least one MS a service message which includes information of at least one service type supported by a first MS and a second MS, wherein the at least one service type relates to a multimedia service supported by each of the first MS and the second MS, receiving a request message which includes information of at least one service type selected by the first MS, transmitting a paging request message to the second MS, wherein the paging request message includes the at least one service type selected by the first MS, receiving a paging response message, transmitting a response message which includes information of the selected service type which is supported by both the first MS and a second MS, and receiving a connection complete message between the first MS and the second MS for communication using the selected service type.
[10] It is to be understood that both the foregoing general description and the following detailed description of the present invention are exemplary and explanatory and are intended to provide further explanation of the invention as claimed. Brief Description of the Drawings
[11] The accompanying drawings, which are included to provide a further understanding of the invention and are incorporated in and constitute a part of this application, illustrate embodiment(s) of the invention and together with the description serve to explain the principle of the invention. In the drawings;
[12] FlG. 1 is a diagram illustrating a call setup procedure; [13] FlG. 2 is a diagram illustrating another call setup procedure;
[14] FlG. 3 is a diagram illustrating another call setup procedure;
[15] FlG. 4 illustrates a block diagram of a MS executing a service option feature; and
[16] FlG. 5 illustrates an example of a message for audio codec.
[17] Reference will now be made in detail to the preferred embodiments of the present invention, examples of which are illustrated in the accompanying drawings. Wherever possible, the same reference numbers will be used throughout the drawings to refer to the same or like parts.
[18] Figure 1 is a diagram illustrating a call setup procedure. For providing audio and video multimedia services, a call setup procedure takes place between an origination side and a destination side. Here, the origination side refers to a MS making the request for a specific service, and the destination side refers to a MS receiving the request and respond whether or not the requested service can be supported.
[19] If MS#1 requests for a call setup with MS#2, MS#1 transmits an origination message to BS #1 to a cell to which MS#1 belongs (SlOl). The origination message includes an identifier (e.g., phone number) of MS#2 and the service option information representing a service type requested by a user.
[20] The origination message further includes an indication which indicates whether or not the service option information is to be included. Here, the indication can be represented by a single bit, and the service option information can be represented by 16 bits. Since the indication is represented by a single bit (i.e., '0' or .T, if the indication is 1O', the service option information is not included in the origination message. In such a case, a basic variable rate voice service of 8 kbps is set as default. If the indication is T, then the option information is included in the origination message.
[21] Furthermore, the service option information can be represented by 16 bits, and each service option number can be assigned to a corresponding communication service. For example, in case of voice communication, according to the type of codec being used, service option #1 can represent a basic variable rate voice service having a transmission rate of 8 kbps, service option #3 can represent an enhanced variable rate voice service having a transmission rate of 8 kbps, and service option #17 can represent a high rate voice service having a transmission rate of 13 kbps. If the service relates to video communication, for example, service option #57 can represent a circuit-based video conferencing having a transmission rate of 32 kbps, service option #58 can represent a circuit-based video conferencing having a transmission rate of 64 kbps.
[22] MS#1 can send the origination message including a request for a specific service option. In other words, a user of MS#1 selects a service option (e.g., avatar) from a plurality of service options supported by MS#1 (e.g., animation, avatar, emoticon) and requests for communication with a second MS using the selected service option. However, MS#2 (also referred to as a target MS) may not support the requested service option, or communication using the requested service option may be difficult or impossible at the time of request. To address such a potential problem, the origination message can include information on more than two (2) service options. Therefore, during the negotiation process between MS#1 and the network, any one of the two (2) or more service options can be determined upon.
[23] After the origination message is received by BS#1, BS#1 transmits a complete L3
Info message to a network to request for a connection manager (CM) service (S102). The network then uses the complete L3 Info message and transmits an assignment request to BS#1 (S 103). Upon receipt, BS#1 transmits a channel assignment message to MS#1 (S 104). Here, the assigned channel can be a traffic channel.
[24] Within a same cell, if BS#2 to which MS#2 belongs receives a paging request from the network (S 105), BS#2 then transmits a paging message to MS#2 (S 106). In the paging message includes the service option information requested by MS#1. After receiving the paging message, MS#2 can transmit a paging response message including a grant to the requested service option or a different requested service option information to BS#2 (S107). Here, MS#2 can take into consideration the possibility that the requested service option may not be granted by MS#1, and therefore, MS#2 can send to BS#2 the paging response message including more than two (2) or more service options which are supported by MS#2. Assuming that MS#2 is unable to support the service option requested by MS#1, two (2) or more service options provided by MS#2 can be used in negotiation between MS#1 and the network. Here, the negotiation takes place via a traffic channel.
[25] After receiving the paging response message, BS#2 transmits to the network a complete L3 Info message to respond to the paging response message (S 108). The network then uses the complete L3 Info message and transmits assignment request to BS#2 (S 109). Upon receipt, BS#2 sends a channel assignment message to MS#2 (SIlO).
[26] According to the channel assignment message received from BS#1 and BS#2,
MS#1 and MS#2 each receive a traffic channel, respectively. The channel assignment message includes various information such as data rate and coding rate associated with uplink and downlink traffic channels for communication between the MSs and the BSs. Further, the BS can use the channel assignment message to notify whether to continue using the current service configuration or proceed with further service negotiation. Further service negotiation between MS#1 and the network are possible since the network has the information on the service options or types that can be supported by both MS#1 and MS#2. As such, during the negotiation, the service option that is supported by both MS#1 and MS#2 can be selected. As discussed, the negotiation takes place via the traffic channel.
[27] By configuring the traffic channels based on the information provided in the channel assignment message, the MS and the BS can perform decoding operation on uplink/downlink signals. When the traffic channel for uplink/downlink communication is assigned, if MS#2 receives the requested service option by MS#1, a service connect completion message is transmitted to BS#1 and BS#2 by MS#1 and MS#2, respectively (Sill, Sl 13). BS#1 and BS#2 then send an assignment completion message to the network (Sl 12, Sl 14). Thereafter, a call setup is completed without further service negotiations (Sl 15 ~ Sl 18).
[28] Figure 2 is a diagram illustrating another call setup procedure. As illustrated in Figure 2, MS#1 transmits, periodically or as necessary, a registration message to BS#1 of its cell (S201). Here, the registration message includes service option information supported by MS#1. Table 1 shows examples of service options.
[29] Table 1
Figure imgf000007_0001
[30] In Table 1, service option #70 represents a multiplexed voice and streaming video for transmission and service option #71 represents a multiplexed voice and short-time video script (e.g., MPEG) for transmission. Moreover, service option #72 represents a multiplexed voice and still images for transmission. Here, for example, still images related to various emotions or movement can be transmitted according to the user' selection. Furthermore, service option #73 represents a multiplexed voice and animation for transmission. Here, animation related to various emotions, movement, or expression of the user can be transmitted. The animation can be transmitted to another' MS or can be displayed from pre-stored animated emotions, movements, or expressions in another' MS. Lastly, service option #74 represents a multiplexed voice and virtual image (e.g., Avatar) for transmission. Here, the virtual image, such as avatar, can be a figure of a person including a body, face, outfit, gender, hair color, skin color, and hairstyle, which can be selected by the user. For example, the user can represent a male friend using the virtual image by selecting a male person with a slim face and blonde hair wearing a surfer' outfit. [31] The service option can be defined by any combination of streaming video, short- time video script, still image, animation, and virtual image such as avatar, and such a service option can be configured in advance between the MS and the BS. Alternatively, such a service option can be transmitted directly or can be transmitted based on expression or movement. If transmission is made based only the expression or the movement, a more efficient communication can be realized.
[32] For example, if the still images, animation, and avatar corresponding to MS#1 are pre-stored in MS#2, the user of MS#1 can use a short-cut key or a jog dial, among other input means, to transmit information only on the movement or expression of the avatar. Here, since the information on the entire avatar need not be transmitted, more efficient communication can be realized.
[33] After BS#1 receives the registration message, BS#1 transmits the information on the service option to the network (S202) which in turn is stored by the network. Table 2 is an example of a part of the registration message.
[34] Table 2
Figure imgf000008_0001
[35] In the registration message as shown in Table 2, a number of the
SERVICE_OPΗON field between the {NUM_SO} and {NUM_SO} fields included in the registration message corresponds to a value of NUM_SO.
[36] Further, MS#2 transmits, periodically or as necessary, a registration message to
BS#2 of its cell (S203). After BS#2 receives the registration message, BS#2 transmits the information on the service option to the network (S204) which in turn is stored by the network.
[37] If MS#1 requests for a call setup with MS#2, MS#1 sends an origination message to
BS#1 of the cell to which MS#1 belongs (S205). The origination message includes an identifier (e.g., phone number) of MS#2 and the service option information representing requested service type. In other words, the requested service type is the service option type with which MS#1 desires or seeks to communicate to MS#2. For example, the requested service type is an emoticon.
[38] After the origination message is received by BS#1, BS#1 transmits a complete L3
Info message to a network to request for CM service (S206). The network then uses the complete L3 Info message and transmits an assignment request to BS#1 (S207). Here, the assignment request information includes the service option information supported by both BS#l and BS#2.
[39] Each of MS#1 and MS#2 transmits the service option information (S201, S203), and the service option information is then transmitted to the network via respective BSs (S202, S204) which are then stored by the network. Consequently, the network has information on the service option supported by MS#1 and the service option supported by MS#2. Furthermore, the network can transmit an assignment request message, which includes the service option information supported by MS#1 and MS#2, to BS#1. Upon receipt, BS#1 sends a channel assignment message, which includes the service option information supported by MS#1 and MS#2, to MS#1 (S208).
[40] Table 3 is an example of a channel assignment message.
[41] Table 3
Figure imgf000009_0001
[42] As shown in Table 3, the SERVICE_OPTION field included in the channel assignment message includes information on the service option supported by both the transmitting MS and the receiving MS. If BS#2 receives a paging request, in which service option information supported by MS#1 and MS#2 in included, from the network (S209), BS#2 then transmits a paging message to MS#2 (S210). Upon receiving the paging message, MS#2 transmits a paging response message to BS#2 (S211). Here, the paging response message includes a selected service option from the service options supported by MS#1 and MS#2.
[43] After receiving the paging response message, BS#2 transmits a complete L3 Info message to the network for responding to the paging response message (S212). The network then uses the complete L3 Info message and transmits assignment request to BS#2 (S213). Upon receipt, BS#2 sends a channel assignment message to MS#2 (S214).
[44] According to the channel assignment message received from BS#1 and BS#2,
MS#1 and MS#2 each receive a traffic channel, respectively. The channel assignment message includes various information such as data rate and coding rate associated with uplink and downlink traffic channels for communication between the MSs and the BSs. Further, the BS can use the channel assignment message to notify whether to continue using the current service configuration or proceed with further service negotiation.
[45] By configuring the traffic channels based on the information provided in the channel assignment message, the MS and the BS can perform decoding operation on uplink/downlink signals. When the traffic channel for uplink/downlink communication is assigned, if MS#2 receives the requested service option by MS#1, a service connect completion message is transmitted to BS#1 and BS#2 by MS#1 and MS#2, respectively (S215, S217). Thereafter, a call is configured without further service negotiations (S218-S220, S216, S221-222).
[46] Figure 3 is a diagram illustrating another call setup procedure. In Figure 3, a call is setup using the procedures as explained in Figure 2, and additionally, a service option can be changed or added during communication which is taking place according to a selected or specific service option.
[47] If a MS#1 user communicating according to a specific service option requests for a service option change, MS#1 transmits a service option request order to BS#1 (S301). Here, other service option information can be inputted using input means such as by a short-cut key or a jog dial. Here, the inputted service option information is transmitted to the receiving end in a form of a control signal. For example, if the specific service using a still image to express a user' movement, expression, or emotion is being used during communication, the MS#1 user can use a short-cut key or the jog dial to select a service option using an avatar. That is, the user can change from the service option using the still image to the service option using the avatar.
[48] If the user changes the service option during communication, BS#1 transmits the requested or newly selected service option request information to the network (S302). The network uses the information of MS#2 registered via the registration message to determine whether MS#2 supports the service option requested by MS#1. Since the network has the information related to the service options supported by MS#2, the service negotiation procedures can be omitted, and the determination as to whether MS#2 supports the service option requested by MS#1 can be made directly.
[49] If the network determines that MS#2 supports the MS#1 selected service option, the network transmits service option response to notify BS#1 that the service associated with the selected service option can be supported (S303).
[50] On the contrary, if the network determines that MS#2 does not support the MS#1 selected service option, the network transmits service option response to provide BS#1 with the service options supported by both MS#1 and MS#2 (S303). In response, BS#1 transmits a service option response message, which includes the information from the network, to MS#1 (S304).
[51] If the service option requested by MS#1 is supported by BS#2, the network transmits service option request, which includes the requested service option information, to BS#2 (S305). Thereafter, BS#2 transmits a service option request order to MS#2 (S306). Upon receipt, MS#2 sends a service option response order to BS#2 to confirm service capability (S307). Lastly, a new service is executed according to the new service option (S308).
[52] As discussed, each MS provides various service options. By using these service options, such as an avatar, emoticon, and animation, the transmission/reception capacity can be used more efficiently and increased compared to the video communication service option. Moreover, the service option for transmitting special characters associated with the user can also be provided.
[53] For example, during voice communication, an avatar representing the caller can be displayed on the called person' screen of the MS. The caller can use this avatar to express the feelings and/or emotions desired to be conveyed by movement and expressions (e.g., smile, laughter, anger, frustration, and boredom) from the caller' end. If the avatar is used instead of video, much smaller wireless resources are consumed via the transmission, and more efficient transmission can be attained while maintaining the realistic feel to the conversation between the users.
[54] Figure 4 illustrates a block diagram of a MS executing a service option feature. In
Figure 4, animation, avatar, emoticon, or text is used to express feelings of the user during the conversation with another user. Referring Figure 4, the MS receives information, such as an avatar for expressing how the user feels and animation for expressing different movements of the user, from the user via a video input/output unit 401. The MS then select the received avatar, emoticon, or animation for expression, can edit by using the pre-stored information, or can create anew an avatar, emoticon, or animation. For example, the user can select facial expressions such as frowning or smiling, movements such as dancing or holding up a fist, or emoticons such as a flower or a heart during a conversation using an avatar. Here, the selected animation, avatar, or emoticon is displayed on the screen of the MS and thereafter is inputted into a video codec unit 402 to transmit the selection to the MS of another user. Since the user is engaged in a conversation or voice communication with another user, the voice inputted to voice input/output unit 403 is converted to digital signal before being inputted to an audio codec unit 404.
[55] The video codec unit 402 performs coding for information related to avatar, emoticon, and animation as well as control information associated with the information. The audio codec unit 404 performs coding for audio signals which is subsequently inputted into a multiplexer/demultiplexer 405. The multiplexer/demultiplexer 405 multiplexes the coded audio signal and the coded video signal and transmit the multiplexed signal to the BS. [56] Further, the multiplexed audio and video signals is received by the BS and upon reception, demultiplexed by the multiplexer/demultiplexer 405. The demultiplexed signals are then decoded by the audio codec unit 402 and the video codec unit 404. Lastly, the decoded video signal and the decoded audio signal are processed by the video input/output unit 401 and the audio input/output unit 403, respectively, before being transmitted to a user.
[57] Figure 5 illustrates an example of a message for audio codec. Referring to Figure 5, a header field 501 for video codec can be further classified by a message type part 501a and a message length part 501b. More specifically, the message type part 501a indicates whether service option, such as avatar, emoticon, or text, is included in the message, and the message length part 501b includes lengths for each service option such as avatar, emoticon, or text.
[58] Furthermore, a message field 502 includes encoded data corresponding to the length of the header. Moreover, parity bits 503 can be added for error detection.
[59] As discussed above, the service option information related to avatar, still images, emoticon, and animation, among others, can be provided to the network by MS#1 and MS#2. With that, the network retains the service options are known in advance, before any requests are made by a MS, by the network and can facilitate communication during the connected state. When the communication takes place between MS#1 to MS#2, the bandwidth or frequency bandwidth used for communication can vary depending on the selected service option. In other words, selecting to communicate based on one of the service options can occupy less bandwidth than communicating using a full video stream. That is, since the network has the information of the service types pre-stored, the traffic flow between MS#1 and MS#2 would be minimal compared to transmitting the full video stream.
[60] For example, assume that MS#1 and MS#2 have selected to communicate using an emoticon. If MS#1 wants to convey to MS#2 that he or she is smiling, MS#1 can select a short-cut key to indicate that he or she is smiling. Here, the transmission of an emoticon requires very minimum bandwidth. On the contrary, if MS#1 wants to convey his or her smiling state using video stream, then the bandwidth occupied by sending this full video stream would be much greater than a simple emoticon. In short, by communicating based on an agreed service option, the bandwidth occupancy for transmitting the message decreases compared to transmitting the message using full video stream which demand much bandwidth and a like.
Industrial Applicability
[61] It will be apparent to those skilled in the art that various modifications and variations can be made in the present invention without departing from the spirit or scope of the inventions. Thus, it is intended that the present invention covers the modifications and variations of this invention provided they come within the scope of the appended claims and their equivalents.

Claims

Claims
[I] A method of establishing connection between a first mobile station (MS) and a second MS in a mobile communication system, the method comprising: transmitting to at least one base station (BS) a service message which includes information of at least one service type supported by the first MS and the second MS, wherein the at least one service type relates to a multimedia service supported by each of the first MS and the second MS; transmitting a request message which includes information of at least one service type selected by the first MS; receiving a response message which includes information of the selected service type which is supported by both the first MS and a second MS; and transmitting a connection complete message between the first MS and the second
MS for communication using the selected service type. [2] The method of claim 1, wherein the information of the at least one service type included in the service message transmitted from the first MS and the second MS are stored by a network. [3] The method of claim 1, wherein the information of the at least one service type included service message from the first MS is different from that of the second
MS. [4] The method of claim 1, wherein multimedia services include communication of audio and at least one of still image, animation, avatar, and emoticon. [5] The method of claim 4, wherein the at least one of still image, animation, avatar, and emoticon follow a control signal which is used to convey at least one of emotion, expression, and movement of a user. [6] The method of claim 5, wherein the control signal is inputted by any one of a short-cut key or a jog-dial provided on the first MS. [7] The method of claim 1, wherein the request message includes an identifier of the second MS and information of a desired service type.
[8] The method of claim 7, wherein the identifier is represented by a single bit.
[9] The method of claim 7, wherein the desired service type is represented by 16 bits. [10] The method of claim 7, wherein if the identifier is represented by a specified bit, the desired service type is included in the request message.
[II] The method of claim 1, further comprising receiving an assignment message through which a traffic channel is assigned for communication with a network.
[12] The method of claim 1, wherein the response message is received via a traffic channel. [13] The method of claim 12, wherein the traffic channel is assigned via the response message which includes a field indicating information on at least one service type supported by both the first MS and the second MS.
[14] The method of claim 1, further comprising establishing connection with the second MS using the selected service type upon receipt of a command from the network to establish connection.
[15] The method of claim 1, further comprising transmitting a change service message to the second MS to request for communication using a different service type during the connected state.
[16] The method of claim 15, wherein the change service message includes information of at least one service type.
[17] The method of claim 1, wherein a bandwidth allocated for transmitting the service message which includes the information of the at least one service type occupies less bandwidth than a bandwidth used for transmitting video signals including a full video stream.
[18] The method of claim 17, wherein at least one service type is transmitted via the allocated bandwidth based on the selected service type.
[19] The method of claim 18, wherein at least one of still image, animation, avatar, and emoticon provided by the multimedia service is used to convey at least one of emotion, expression, and movement by using the at least one of still image, animation, avatar, and emoticon pre-stored in the first MS and the second MS.
[20] A method of establishing connection between a first mobile station (MS) and a second MS in a mobile communication system, the method comprising: transmitting a request message which includes information of at least one service type selected by the first MS out of all service types supported by the first MS, wherein the service types relate to multimedia services; receiving a response message which includes information of the selected service type which is supported by both the first MS and a second MS; and transmitting a connection request message between the first MS and the second MS for communication using the selected service type.
[21] The method of claim 20, further comprising transmitting to at least one base station (BS) a message including information of at least one service type supported by the first MS.
[22] The method of claim 20, further comprising receiving an assignment message through which a traffic channel is assigned for communication with a network.
[23] The method of claim 20, wherein the information of the at least one service type included in the service message transmitted from the first MS is stored by a network. [24] The method of claim 20, wherein multimedia services include communication of audio and at least one of still image, animation, avatar, and emoticon.
[25] The method of claim 20, wherein the response message is received via a traffic channel.
[26] The method of claim 20, further comprising establishing connection with the second MS using the selected service type upon receipt of a command from the network to establish connection.
[27] The method of claim 20, further comprising transmitting a change service message to the second MS to request for communication using a different service type during the connected state.
[28] The method of claim 28, wherein the change service message includes information of at least one service type.
[29] A method of communicating with at least one mobile station (MS) for establishing service connection in a mobile communication system, the method comprising: receiving from at least one MS a service message which includes information of at least one service type supported by a first MS and a second MS, wherein the at least one service type relates to a multimedia service supported by each of the first MS and the second MS; receiving a request message which includes information of at least one service type selected by the first MS; transmitting a paging request message to the second MS, wherein the paging request message includes the at least one service type selected by the first MS; receiving a paging response message; transmitting a response message which includes information of the selected service type which is supported by both the first MS and a second MS; and receiving a connection complete message between the first MS and the second MS for communication using the selected service type.
[30] The method of claim 29, wherein the paging response message includes at least one service type supported by the second MS if the second MS is unable to accommodate the service type requested by the first MS.
[31] The method of claim 29, wherein the paging response message includes a grant to the service type requested by first MS.
[32] The method of claim 29, wherein the information of the at least one service type included in the service message transmitted from the first MS and the second MS are stored by the network.
[33] The method of claim 29, wherein the information of the at least one service type included service message from the first MS is different from that of the second MS. [34] The method of claim 29, wherein multimedia services include communication of audio and at least one of still image, animation, avatar, and emoticon. [35] The method of claim 29, further comprising receiving an assignment message through which a traffic channel is assigned for communication with a network. [36] The method of claim 29, wherein the response message is transmitted via a traffic channel. [37] The method of claim 29, further comprising receiving a change service message to the second MS to request for communication using a different service type during the connected state.
[38] The method of claim 37, wherein the change service message includes information of at least one service type. [39] The method of claim 29, wherein a bandwidth allocated for transmitting the service message which includes the information of the at least one service type occupies less bandwidth than a bandwidth used for transmitting video signals including a full video stream. [40] The method of claim 39, wherein at least one service type is transmitted via the allocated bandwidth based on the selected service type.
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EP1905266A2 (en) 2008-04-02
KR101233150B1 (en) 2013-02-15
EP1905266A4 (en) 2013-07-03
CA2615521C (en) 2014-12-09
KR20070010645A (en) 2007-01-24
WO2007011174A3 (en) 2007-09-20
US20070037573A1 (en) 2007-02-15
CN101223813B (en) 2011-12-07
CN101223813A (en) 2008-07-16
CA2615521A1 (en) 2007-01-25
US7710916B2 (en) 2010-05-04

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