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:
계층 복조 장치는 미리 알고 있는 심볼을 바탕으로 기준 심볼을 채널 추정하여 기준 심볼의 채널 추정 값을 생성하고, 기준 심볼의 채널 추정 값을 바탕으로 복수의 정보 심볼을 채널 추정하여 복수의 정보 심볼의 채널 추정 값을 생성하며, 복수의 정보 심볼의 채널 추정 값을 바탕으로 복수의 서비스 심볼을 채널 추정하여 복수의 서비스 심볼의 채널 추정 값을 생성한다. 그리고 기준 심볼의 채널 추정 값, 복수의 정보 심볼의 채널 추정 값, 및 복수의 서비스 심볼의 채널 추정 값을 바탕으로 신호를 채널 등화한 후 채널 등화된 신호를 계층 분리하여 제1 계층 변조 신호와 제2 계층 변조 신호를 생성한다. 이를 통해 기존의 시스템과 호환성을 유지하면서 기본 계층에는 영향을 주지 않고 추가 계층의 수신 성능을 향상시킬 수 있다. OFDM, 파일럿, 복조, 채널 추정
Abstract:
A method for transmitting and receiving a broadcasting signal is provided to request high efficient transmission while making compatibility with an existing digital broadcasting signal possible, thereby providing a high quality service. A video signal of a broadcasting signal is layered into a basic layer video elementary stream and an enhanced layer video elementary stream. The basic layer video elementary stream and the enhanced layer video elementary stream are packetized into a basic layer video packet and an enhanced layer video packet. A basic layer transmission stream is generated by multiplexing the basic layer video packet with a basic layer audio packet. The basic layer transmission stream and the enhanced layer video packet are transmitted.
Abstract:
On-channel repeaters with feedback cancellation based on partitioning of pilots and a method thereof are provided to be capable of removing feedback signals based on pilot partitioning and a method thereof, which can quickly cope with a rapid change of a feedback channel and thus efficiently remove a feedback signal by reducing an update interval of a filter coefficient, i.e., increasing the number of times of filter-coefficient creation through pilot partitioning. An on-channel repeater capable of removing feedback signals based on pilot partitioning includes an Rx antenna(901), an RF receiver(902), a sub tractor(903), an RF transmitter(907), a Tx antennal(908), and a replica creator(909). The replica creator creates a filter coefficient through pilot partitioning, creates a replica of a feedback signal by using the created filter coefficient, and feeds back the created replica to the subtractor. An RF signal received via the Rx antenna from a main transmitter or another repeater is down-converted into a signal of a predetermined band by the RF receiver. The subtractor subtracts a replica of a feedback signal from the down- converted signal of the predetermined band, thereby removing the feedback signal. The replica creator creates a filter coefficient through pilot partitioning, creates a replica of the feedback signal by using the created filter coefficient, and feeds back the created replica to the subtractor. The RF transmitter converts an output signal from the subtractor into an RF signal, and transmits the RF signal via the Tx antenna by radio. The replica creator includes an adaptive filter(904), a filter coefficient creator(905), and a partitioned-pilot storage(906) for storing a partitioned pilot to be used at the filter coefficient creator.
Abstract:
An identification signal analyzing apparatus for compensating separation and attenuation of a channel profile and a method thereof are provided to more accurately analyze an identification signal. An identification signal generating unit(404) produces the same identification signal as an identification signal inserted by a transmission side apparatus. A partial correlation unit(405) calculates a correlation value between a receiving signal to/in which a promised identification signal is inserted/received by a transmission side apparatus and the identification signal generated by the identification signal generating unit through a partial correlation method. A correlation value compensation unit(406) compensates for separation and attenuation of the correlation value calculated with the partial correlation unit. A channel profile extracting unit(407) extracts a channel profile from the correlation value compensated by the correlation value compensation unit.
Abstract:
A digital broadcast transceiving apparatus and method are provided to transmit a sub program, synchronized with a main program which is transmitted in real time, in non-real time, thereby having compatibility on existing digital broadcasting and providing various and new premium services to a user. A main program stream converting unit(110) converts the contents of a main program into a stream. A sub program stream converting unit(120) converts the contents of a sub program into a stream. The sub program is subordinate to the main program and comprises one digital broadcasting service through synchronization with the main program. A program line-up information generator(130) generates program line-up information including the stream converting information of the main program and the stream converting information of the sub program. A sub transmitter(150) transmits the converted sub program stream in real time. A main transmitter(140) multiplexes the converted main program stream and the generated program line-up information and transmits the multiplexed stream and information in non-real time.
Abstract:
An identical channel relay apparatus and a method thereof for relaying output signal the same as input signal to the identical channel are provided to correct the channel distortion of the received signal by estimating the reverse of the receive channel from the signal removing feedback. A subtracting unit(803) subtracts replica of feedback signal from a converted signal by an RF receiver(802). A replica generating unit(804) produces the replica of feedback based on the signal which is downward transformed into the prescribed band by a down-converter(808) and the signal outputted from the subtracting unit. A reverse channel estimating unit(805) generates filter tap coefficient by estimating the reverse of the received channel. A first adaptive filtering unit(806) performs filtering by using the filter tap coefficient generated by the reverse channel estimating unit.
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:
Co-channel relaying equipment and a method thereof are provided to increase the use efficiency of restricted frequency resources. Co-channel relaying equipment comprises the followings: a receiving means(802) receiving radio frequency signals; a subtraction means(803) subtracting the replica of a feedback signal from the signal received by the receiving means; a replica generation means(804) which produces a replica based on the signal subtracted by the subtraction means and feeds the replica back to the subtraction means; a reverse channel estimation means(805) which generates a filter tap coefficient by estimating the inverse of a reception channel based on the subtracted signal; the first adaptive filtering means(806) which compensates for the channel distortion of the subtracted signal by using the filter tap coefficient generated by the reverse channel estimation means; and a transmitting means(807) which converts the signal in which the channel distortion is compensated into a radio frequency signal, and then wirelessly transmit the converted signal.