Abstract:
프리앰블 생성 장치는 주파수 영역에서 시퀀스를 생성하고, 시퀀스를 푸리에 역변환하여 시간 영역에서 푸리에 역변환 신호를 생성하며, 푸리에 역변환 신호를 인터폴레이션하여 프리앰블을 생성한다. 이를 통해 큰 크기의 DFT/IDFT를 사용하지 않고 프리앰블을 생성할 수 있다. 프리앰블, 채널, 응답
Abstract:
A method for generating a downlink frame and a method for searching a cell are provided to improve cell searching performance by reducing interference between sectors by scrambling two sequences with different scrambling codes. A sequence generator generates a plurality of sequences, and a plurality of scrambling sequences and transmits the sequences to the synchronization signal generator(S410). A synchronization signal generator generates a second synchronization signal by using the plurality of sequences received from the sequence generator, and the plurality of scrambling sequences(S420). A frequency mapping device maps the data to be transmitted by using the synchronization signal generated in the synchronization signal generator and transmission traffic data as the time and frequency domains and generates the frame of the downlink signal(S430). The OFDM transmitter receives the frame of the downlink signal and transmits the frame through a transmission antenna(S440).
Abstract:
A method for transmitting signal in wireless communication system using time and frequency domain at the same time is provided to efficiently reduce interference between cells by using a code hopping method. A method for transmitting signal in wireless communication system using time and frequency domain at the same time comprises the following steps: a step for assigning an identical frequency domain discrimination sequence and a unlike time domain discrimination sequence into a plurality of terminals by a resource index according to the first slot in a first slot; and a step for assigning a unlike frequency domain discrimination sequence and a unlike time domain discrimination sequence into a plurality of terminals by a resource index according to the second slot in a second slot.
Abstract:
A method for transmitting ACK/NACK though frequency division multiplexing for transmitting ACK/NACK bit is provided to improve efficiency of down link wireless resource by suggesting an efficient ACK/NACK channel transmitting method. A method for transmitting ACK/NACK though frequency division multiplexing for transmitting ACK/NACK bit supports HARQ(Hybrid Automatic Repeat request) in a wireless communications system supporting multi-user MIMO(Multi Input Multi Output). Mobile stations using an identical upward link resource performs a frequency division multiplexing. Mobile stations using a different upward link each other transmits ACK(ACKnowledgement)/NACK(Negative ACKnowledgement) multiplexed by a code division multiplexing or a frequency division multiplexing.
Abstract:
A signal transmission method and a downlink frame generation method are provided to be capable of magnifying a time diversity gain within a TTI(Transmission Time Interval) of broadcasting channel information by applying a precoding vector switching diversity method to the broadcasting channel information, as efficiently removing interference. A channel encoder generates and outputs channel-encoded BCH(Broadcasting Channel) data(S201). An SCH(Synchronization Channel) symbol generator generates and outputs plural SCH symbols(S203). Plural other channel symbols are generated and outputted(S205). Precoding vectors are applied to BCH symbols to output the BCH symbols, while the SCH symbols and the other channel symbols are switched, then the switched symbols are outputted to the first and second transmitters(S207).
Abstract:
A random access preamble transmission method is provided to enable an MS(Mobile Station) to send a random access preamble by selecting one of antennas according to a downlink channel state, thereby reducing delay time occurring when the random access preamble is transmitted. An MS receives a BCH(Broadcasting Channel) signal periodically transmitted from a base station(S100). The MS measures received power for each of two antennas(S101). The MS determines an antenna having high received power as a random access preamble transmission antenna(S102). The MS determines received power of the MS(S103). The MS determines random access preamble transmission power by using an open loop power control method(S104). The MS transmits a random access preamble of the determined transmission power by using the determined transmission antenna(S105).
Abstract:
A random access method and a random access response method are provided to enable an MS to select a downlink resource optimized to a downlink channel status and transmit information about the downlink resource to a BS(Base Station) when the MS attempts random access, thereby increasing the transfer rate of the random access response of the BS to improve the reliability of the random access response of the BS. A random access response method comprises the following steps of: transmitting a common pilot signal(S101); receiving the index of at least one downlink resource selected on the basis of the common pilot signal from an MS(Mobile Station)(S103); and transmitting a response to the random access of the MS by using the index of at least one downlink resource(S104).
Abstract:
본 발명은 무선통신시스템 시스템에서 좀더 효율적인 ACK/NAK 신호 송신 방법을 제안한다. 본 발명은 무선통신시스템의 ACK/NAK 신호 송신 방법에 있어서, (a) 주파수 축 상에서 2보다 크고 짝수인 N개의 부주파수(sub-carrier)를 차지하고 시간 축 상에서 한 개의 심볼을 차지하는 자원 블럭 중, 시간 축 상에서 서로 이웃하는 제1 자원블럭과 제2 자원블럭을 기본단위로 하여 단말에 할당하는 단계; (b) 단말에 주파수 축 상으로 상기 N개의 부주파수 상에서 상호직교하는 시퀀스를 할당하는 단계를 포함하되, 동일 셀 내의 서로 다른 단말은 상기 시퀀스의 인덱스(index) 값은 같고, 사이클릭 지연(사이클릭 지연(cyclic delay)) 인덱스 값은 서로 다르게 상기 시퀀스를 할당하고; 및 (c) 상기 단말이 수신하는 부호어의 ACK/NAK 비트 값이 0이면 상기 제1 자원블럭만으로 상기 시퀀스를 전송하고, ACK/NAK 비트 값이 1이면 상기 제2 자원블럭만으로 상기 시퀀스를 전송하는 단계;를 포함하는 것을 특징으로 한다. 시간 축에서 상호직교하는 시퀀스를 단말에 할당하여 좀더 효율적인 ACK/NAK 전송방식을 제안한다. OFDM, ACK/NAK, 시퀀스 전송
Abstract:
본 발명은 상향링크에서 이산 푸리에 변환 확산 OFDMA (이하 “DFT Spread OFDMA”혹은 “DFT-S-OFDMA” 라 함)방식을 사용하는 셀룰라 시스템에서 고속의 이동국을 위한 다른 구조의 랜덤액세스 프리앰블이 존재할 때 이를 저속의 이동국을 위한 랜덤액세스 프리앰블과 주파수상에서 다중화(Multiplexing)함으로써 고속의 이동국 및 저속의 이동국이 모두 delay 없이 랜덤액세스 프리앰블을 전송할 수 있는 방법을 제안하는 데 있다. DFT-S-OFDMA, Random Access, High Speed UE, Frequency Multiplexing, Cell Planning