Abstract:
다중 반송파 시스템에서 단말이 반송파를 관리하는 방법이 제공된다. 반송파 관리 방법은, 주 반송파에서 MBS를 위한 MBS 반송파로 전환하는 단계, 상기 MBS 반송파로 기지국으로부터 MBS 관련 데이터를 수신하는 단계, 상기 MBS 관련 데이터를 수신한 후에 상기 MBS 반송파에서 상기 주 반송파로 복귀하는 단계, 그리고 상기 주 반송파로 상기 기지국과 데이터를 주고받는 단계를 포함한다.
Abstract:
PURPOSE: A method for assigning the radio resource to a plurality of terminals forming a group is provided to transmit only the control information for the terminal in which the transport format or the resources is changed. CONSTITUTION: An ABS(Advanced Base Station) adds the AMS(Advanced Mobile Station) in a group(S110). The ABS transmits the group scheduling information determined by the scheduling to a plurality of AMSs belonging to the group(S120). The group scheduling information comprises the terminal indication information and the resource information. The terminal indication information directs whether the information for the radio resource allocated to the AMS is changed or not. The resource information directs the changed radio resource of the AMS.
Abstract:
PURPOSE: A method for transmitting multicast broadcast service data using a super frame header in a mobile wireless communication system is provided to efficiently supply an MBS(Multicast Broadcast Service) by minimizing a system update. CONSTITUTION: MBS map indication information and MBS control information are transmitted(S310). The MBS MAP indication information indicates a first resource unit of an MBS region at a start point of an MSI(MBS Scheduling Interval). The MBS control information includes sub frame offset information. The MBS MAP is transmitted through the first resource unit(S320). An MBS burst indicated by the MBS MAP is transmitted(S330).
Abstract:
PURPOSE: A data transmission method in a multicast/broadcast service is provided to efficiently support an MBS in a mobile wireless access system and to reduce power consumption of a mobile terminal. CONSTITUTION: A first allocating indicator indicates an allocated part for transmitting an MBS(Multicast/Broadcast Service) at a first transmission time. A second allocating indicator indicates an allocated par for transmitting the MBS at a second transmission time. A terminal receives a superframe header and confirms an MBS area(S200). An MAP IE(Information Element) is received from the MBS subframe(S210). It is determined whether there is a service flow in the MAP IE(S220).
Abstract:
PURPOSE: A service state information transmission method of a femto base station in a wireless communication system which transmits service state information of a femto base station to a neighboring base station is provided to efficiently update a neighboring base station list in a wireless communication system. CONSTITUTION: A femto base station(20) is scheduled to interrupt a service. The service interruption data includes prediction service interruption time according to the scheduling of the service interruption. The service interruption data includes a handover control flag of femto bases station execution in a hand-over process. The service interruption data are transmitted through a broadcast message or a paging message.
Abstract:
PURPOSE: A method for operating a femto base station based on a radio access system is provided to efficiently manage a femto base station in a wireless mobile connection system which supports a femto cell. CONSTITUTION: A femto BS(Base Station) receives the information of a mobile station which enters an idle mode(S331), and receives the information on the mobile station which enters a sleep mode(S332). The femto BS determines an LDO(Low Duty Operation) cycle(S340), and transmits to each mobile station the LDO related information including a determined LDO cycle(S351,S352). Based on the change LDO pattern, the femto base station is managed in the changed LDO mode(S360).
Abstract:
PURPOSE: A method for saving power is provided to allocate source in a terminal to operate receiver only in a specific frame which predicts reception of real-time service flow, thereby reducing the power saving of the terminal. CONSTITUTION: A terminal receives an AAI_CM-CMD(Advanced Air Interface_Carrier Management-Command) message from a base station. The terminal activates secondary carrier among a plurality of carrier wave according to the AAI_CM-CMD(Advanced Air Interface_Carrier Management-Command) message. The terminal receives a first service data through activated sub carrier in a first frame. The terminal receives a second service data through activated secondary carrier in a second frame. An interval of a first frame and a second frame is determined according to the receiving standby interval information within service flow information.
Abstract translation:目的:提供一种省电方法,用于在终端中分配源,仅在预测接收实时业务流的特定帧中操作接收机,从而减少终端的功率节省。 规定:终端从基站接收到AAI_CM-CMD(Advanced Air Interface_Carrier Management-Command)消息。 终端根据AAI_CM-CMD(Advanced Air Interface_Carrier Management-Command)消息在多个载波中激活辅载波。 终端在第一帧中通过激活的子载波接收第一服务数据。 终端在第二帧中通过激活的辅助载波接收第二服务数据。 根据服务流信息中的接收待机间隔信息确定第一帧和第二帧的间隔。
Abstract:
PURPOSE: A mobile station, a base station and a method for an uplink service are provided to supply high speed data service between a wireless communication system and a terminal. CONSTITUTION: A base station transmits the information a transmission control protocol packet and a fixed code to a terminal(S305), and receives a code number from the terminal by using the fixed code(S311). The base station searches a request bandwidth for the code number, and allocates the resource to the terminal(S313,S314,S315). The base station receives the ACK packet for the TCP packet through the allocated resource(S317).
Abstract:
A wireless communication method for efficiently managing a bandwidth request of a terminal and an allocation procedure and a system thereof are provided to operate an RS system in two modes in consideration of a case that an MS directly transmits a BR code to an MR-BS, thereby improving system performance while satisfying existing standards. It is monitored whether an uplink map information element corresponding to a BR(Bandwidth Request) code of an MS(Mobile Station) is received from an MR(Mobile Relay)-BS(Base Station)(S402). The RS monitors an uplink burst having a bandwidth that the MS requests is transmitted from the MR-BS based on the uplink map information element. Data that the MS transmits is relayed to a band allocated by the uplink burst from the MR-BS.
Abstract:
A formation method of ZnO nanowire network pattern is provided to form ZnO nanowire network pattern and device of a desired shape and size at a low temperature with a stable yield by using a lithographic process and a sol-gel method. A formation method of ZnO nanowire network pattern comprises steps of: forming a photoresist pattern exposing a part of a substrate on the substrate; molding the ZnO nanowire network on a photoresist pattern and an exposed part of the substrate by a sol-gel method; and removing the photoresist pattern and forming the ZnO nanowire network pattern on the substrate. The step for forming the photoresist pattern comprises steps of: coating a photoresist on the substrate; exposing the photoresist; and developing the exposed photoresist.