Abstract:
본 발명은 자원 할당 요청 방법 및 자원 할당 방법에 관한 것이다. 본 발명에 따르면, 이동국은 자원 할당 요청을 위해 랜덤액세스 채널 프리앰블 전송이 실패할 때마다 채널 상태 정보를 변경하여 기지국에 전송함으로써, 기지국에게 상향링크 채널 정보를 알린다. 기지국은 이동국에게서 수신한 랜덤액세스 채널 프리앰블에 포함된 채널 상태 정보를 기초로 채널 상태가 좋지 않은 이동국에게 검증된 자원 즉, 랜덤액세스 채널 프리앰블 전송에 사용된 자원을 우선적으로 할당한다. RACH, CQI, 자원 할당, 프리앰블
Abstract:
A method for mapping a secondary synchronization channel symbol in an OFDM cellular system provides efficiency of mapping by setting two orthogonal code sequence numbers and performing the mapping of the secondary synchronization channel symbol. A cell group number, the number of cell groups used in the system, a P-BCH antenna information index, the number of secondary synchronization channel symbol per frame, a secondary synchronization channel symbol timing index and the number of the secondary synchronization channel orthogonal code sequence used in system are assembled in two orthogonal code sequences(310,311,320,321) of the secondary synchronization channel symbol. The set up number is assigned and the secondary synchronization channel symbol is mapped.
Abstract:
A signal transmission method is provided to reduce a time diversity gain for an MS(Mobile Station) moving at low speed, while a space diversity gain for reducing interference from neighboring sectors can be given to an MS located around a sector border. Plural BCH symbols are generated and outputted(S201). Plural SCH(Synchronization Channel) symbols are generated and outputted(S203). Other channel symbols are generated and outputted(S205). TDM(Time Division Multiplexing)/FDM(Frequency Division Multiplexing) processes are performed for the BCH, SCH, and other channel symbols. A cyclic delay matrix is applied to generate transmission signals for each antenna. The channel symbols are transmitted to a sector.
Abstract:
A bit transmission method of different control channels is provided to perform modulation by binding bits of different control channels, or to perform an encoding process by binding the bits, and to send the bound bits, thereby allocating the same frequency, time, and code resources to two pieces of information. A base station performs a CRC(Cyclic Redundancy Check) function after receiving packet data(510) from a mobile station to check whether an error exists, and if so, the base station generates an NACK bit, and if not, the base station generates an ACK bit. The base station detects reception strength of the packet data to generate a power control symbol, and transmits a symbol(520) for combining the ACK/NACK bits with the power control symbol to a downlink.
Abstract:
A method for mapping a pilot sequence and a synchronization channel sequence is provided to improve cell search performance of a mobile station in a cellular system. A method for mapping a pilot sequence and a synchronization channel sequence includes the step of combining a pilot channel PN(Pseudo-Noise) code with a pilot channel orthogonal code to divide cell identifiers used in a mobile communication system. The cell identifiers are equally divided into cell groups. Primary synchronization channels(100-A,100-B) include information about the cell identifiers in the cell group. Secondary synchronization channels(101-A,101-B) include information about the cell group. A secondary synchronization code is allocated in correspondence to the pilot channel PN code.
Abstract:
A method for transmitting/receiving a broadcast channel signal is provided to increase a signal to interference ratio in accordance with the time of a receiver through soft-combining by making a transmitter change a symbol mapping pattern applied whenever transmitting the broadcast channel signal. A method for transmitting/receiving a broadcast channel signal includes the steps of: at a symbol mapping unit(120), selecting a second symbol mapping pattern, which is different from a first symbol mapping pattern of a previous transmission period, as the mapping pattern of each broadcast channel symbol of the current transmission period; and at a radio frequency transmission unit(150), transmitting the broadcast channel signal based on the second symbol mapping pattern. The interval between a frequency used in the first symbol mapping pattern and a frequency used in the second symbol mapping pattern is larger than a coherence band of the channel to map the same broadcast channel symbol.
Abstract:
A method for transmitting and receiving L1/L2 control information in an OFDMA(Orthogonal Frequency Division Multiple Access) system is provided to configure and transmit downlink scheduling information and uplink grant control information efficiently in case a base station transmits data to mobile terminals through a downlink. A base station divides downlink control information into a common control block and an individual control block(S210). The common control block contains the number of used control channels and location information(S220), and the individual control block contains downlink schedule information and uplink grant control information for each mobile terminal(S230). The downlink schedule information includes each mobile terminal's ID, downlink resource allocation information, additional control information, and CRC(Cyclic Redundancy Code) bits. The uplink grant control information includes each mobile terminal's ID, uplink resource allocation information, additional control information, and CRC bits. Using predefined transport resources and a predefined transport format, the base station transmits the common control block every TTI(Transmit Time Interval)(S240). The base station transmits the individual control block through a distributed or localized control channel(S250).
Abstract:
Downlink resource allocation for an OFDMA system is provided to transmit allocation information about resources to be used in an MS(Mobile Station) when a BS(Base Station) transmits downlink scheduling information to the MS, thereby maximizing the amount of resources used in data transmission and increasing a data transmission rate. A method for transmitting resource allocation information comprises the following steps of: constructing continuous physical resources as a sub band; constructing the sub band allocation information as a binary bitmap to transmit the constructed binary bitmap to a first control channel; and constructing allocation information within the sub band regarding the sub band as a binary bitmap to transmit the constructed binary bitmap to a second control channel.
Abstract:
A data transmission method of an MS(Mobile Station) using a cell search signal and a device thereof are provided to enable the MS to determine a location by itself by using cell search signals received from base stations within a home cell and neighboring cells, and to estimate uplink delay time information, thereby omitting RACH(Random Access Channel) burst transmission. An MS receives cell search signals from base stations within a synchronized home cell and base stations within at least more than neighboring cell(S710). The MS calculates receiving time differences between the cell search signals received from the base stations within the home cell and the neighboring cells(S720). The MS calculates uplink delay time of the neighboring cells based on the receiving time differences(S730).
Abstract:
A cell search method in an OFDM(Orthogonal Frequency Division Multiplexing) cellular system, a frame transmission method therefor, and a forward link frame structure are provided to smoothly perform handover by effectively searching an adjacent cell, and reduce the amount of battery consumption of a mobile station. The first detecting unit obtains symbol synchronization by applying a matching filter to a reception signal(S800). A hop pattern correlation values are calculated by using reception synchronous channel symbols extracted from the reception signal based on the obtained symbol synchronization information, and a hop pattern of a target cell is detected based on the calculated hop pattern correlation values(S820). A code group and a frame boundary of the target cell are detected based on the detected hop pattern(S840). Pilot correlation values of common pilot channel symbols and scrambling codes belonging to the detected code group are calculated, and the scrambling codes of the target cell are detected based on the calculated pilot correlation value(S860). It is checked whether the detection results are reliable(S880).