Abstract:
하향신호를 이용하여 채널이득을 추정하는 채널이득 추정부, 및 상기 추정된 채널 이득을 고려하여 레인징 상향신호를 왜곡하는 신호 왜곡부를 포함하는 레인징 상향신호 사전 왜곡 시스템 및 방법이 개시된다. 채널이득, 추정, 레인징 상향신호, 사전 왜곡(pre-distortion)
Abstract:
PURPOSE: A device for transmitting and receiving additional data by using training signals and a method thereof are provided to transmit the additional data by using the training signals while maintaining inverse compatibility with ATSC(Advanced Television System Committee). CONSTITUTION: An additional data transmitting/receiving device includes a training signal assignment unit(310), an additional data insertion unit(320), and a signal transmission unit(330). The training signal assignment unit assigns training signals to broadcast signals. The additional data insertion unit inserts additional data into the training signals. The signal transmission unit transmits the training signals which the additional data is inserted. [Reference numerals] (310) Signal assignment unit; (320) Additional data insertion unit; (330) Signal transmission unit
Abstract:
PURPOSE: A broadcast signal receiving method and a device thereof are provided to supply separate transmission types according to a frequency domain and a time domain. CONSTITUTION: An A/D converting unit(510) receives a transmission frame. The A/D converting unit converts the received transmission frame into a distal signal. The transmission frame includes a plurality of transmission data. The transmission frame includes a frame header including information about the transmission data. A frame header determining unit(520) decodes frame header information from the transmission frame. A transmission data selecting unit outputs one of the transmission data based on the frame header information. [Reference numerals] (510) A/D converting unit; (520) Frame header determining unit; (530) Fourier converting unit; (540) Service selecting unit; (AA) Transmitting signal; (BB) Digital demodulation unit 1; (CC) Digital demodulation unit 2; (DD) Digital demodulation unit 3; (EE) Channel decoding unit 1; (FF) Channel decoding unit 2; (GG) Channel decoding unit 3; (HH) Service 1; (II) Service 2; (JJ) Service 3
Abstract:
PURPOSE: An apparatus of repeating for transmitting a terrestrial DTV broadcasting signal and additional data and a method thereof are provided to relay additional data inserted into a DTV broadcasting signal. CONSTITUTION: An additional data extracting unit(508) extracts additional data from an output signal of an equalization unit, and outputs the extracted data. An adder(511) combines the DTV signal outputted from the equalization unit with the output of the additional data processing unit. A transmission processing unit modulates the added output, and converts the band of the modulated signal into an RF(Radio Frequency) band. The transmission processing unit amplifies the transmission poser, and amplifies the transmission power. The transmission processing unit transmits the amplified signal through a transmission antenna.
Abstract:
PURPOSE: A transmission/reception method of a signal and an apparatus thereof for handover in a broadcasting network for minimizing an effect on broadcasting service quality are provided to supply a seamless mobile broadcasting service by automatically performing handoff of a broadcasting frequency channel. CONSTITUTION: A baseband broadcasting signal generator(310) generates a baseband signal from transmitted broadcast data. A transmitter identifying signal column generator(320) generates the identification signal of the transmitter. A first transmission unit combines the broadcast signal transformed to the baseband signal and identification signal. A second transmission unit modulates the identification signal.
Abstract:
In a digital broadcasting signal transmission system, a transmission frame includes a frame body and a frame header, and the frame body is divided into a plurality of sub-bands in the frequency domain and is divided into a plurality of symbols in the time domain. The frame header is provided in the former part of the transmission frame and is transmitted with a signal in the time domain. The frame body includes a plurality of services, and the services respectively receive at least one sub-band and at least one symbol. The frame header includes information on the plurality of services, and information on the plurality of services includes information on the sub-band and the symbol to which the services are allocated, information on channel encoding levels of the services, and information on digital modulation levels of the services.
Abstract:
A transmitting method, a transmitting apparatus, a receiving method and a receiving apparatus of a digital broadcasting signal are provided to divide a stream into a plurality of layers according to a characteristic of the stream, process each layer independently and dynamically allocate a frequency based on the processed signal. A single stream is divided by a predetermined stream unit. Importance of the divided stream unit is grasped. According to the grasped importance, the divided stream unit is allocated to a plurality of layers(S104). Encoding and mapping about a separate layer are performed(S105,S106). Resources about the separate layer are dynamically allocated based on a symbol number about the separate layer(S107,S108).
Abstract:
An apparatus and a method for hierarchical modulation and an apparatus and a method for hierarchical demodulation are provided to minimize the degradation of the reception performance due to the judgment error of a first hierarchical bit stream in a receiving unit. A first hierarchical symbol stream is generated by mapping a first hierarchical bit stream on a bit position of a first constellation according to the first modulation scheme(S210). A second hierarchical symbol stream is generated by mapping a second hierarchical bit stream on a bit position of a second constellation according to the second modulation scheme(S220). Each symbol of the second hierarchical symbol stream is phase-rotated(S230). The hierarchical modulation symbol stream is generated from the first hierarchical symbol stream and the second hierarchical symbol stream which is phase-rotated(S260).
Abstract:
A transmission method, a transmitting device, a receiving method, a receiving device and a transmission frame structure of the digital broadcasting signal are provided to support various transmission modes in digital satellite broadcasting(DTV or DMB). A stream offering unit(100) converts a plurality of program service configuration elements into stream. A multiplexer(200) modulates the stream into the mode determined according to the transmission mode. A transmission frame generating unit(300) generates a transfer frame based on multiplexed information and stream information allocated to each sub channel according to the transmission mode. A frame header includes the transfer frame. A frame body includes data information about the service.
Abstract:
본 발명은 무선 통신 시스템의 데이터 전송 방법에 관한 것이다. 본 발명의 무선 통신 시스템에서 제1 노드가 제1 경유기 및 제2 경유기를 통해 제2 노드에 데이터를 전송하는 방법은 a) 제1 타임 슬롯 구간에 제1 노드가 제1 심볼을 제2 노드 및 제1 경유기로 전송하는 단계; b) 제2 타임 슬롯 구간에 제1 경유기가 제2 노드로 제1 노드로부터 수신받은 제1 심볼을 전송하는 단계; c) 제2 타임 슬롯 구간에 제1 노드가 제2 심볼을 제2 노드 및 제2 경유기로 전송하는 단계; 및 d) 제3 타임 슬롯 구간에 제2 경유기가 제2 노드로 제1 노드로부터 수신받은 제2 심볼을 전송하는 단계를 포함한다. 이러한, 본 발명에 따르면, 다수의 스테이션을 경유할 경우 또는 열약한 채널 환경에서도 목적지 스테이션에서 연산을 통해 심볼 검출을 용이하게 수행할 수 있어, 풀 레이트(Full Rate)를 만족하면서 비트 에러율(BER)의 성능을 향상 시킬 수 있는 장점이 있다. 또한, 소스 스테이션 및 목적지 스테이션이 2개 이상의 멀티 안테나를 이용하지 않고도 1개의 안테나를 이용하여 용이하게 다수의 심볼을 전송 및 검출할 수 있는 효과가 있다. MIMO, Cooperative MIMO, 비트 에러율, 데이터 전송, 멀티 안테나