H04L27/2035

METHOD AND DEVICE FOR UPLINK TRANSMISSION
20170359837 · 2017-12-14 ·

A method for transmitting data in a wireless local area network and the device using the same are provided. A device transmits a plurality of data units via one or more subchannels. The plurality of data units have same access categories.

APPARATUS FOR TRANSMITTING BROADCAST SIGNALS, APPARATUS FOR RECEIVING BROADCAST SIGNALS, METHOD FOR TRANSMITTING BROADCAST SIGNALS AND METHOD FOR RECEIVING BROADCAST SIGNALS

A method is provided for transmitting broadcast signals. The method includes encoding, by an encoder, service data, encoding, by a signaling encoder, signaling data based on modes of the signaling data, wherein the signaling data is categorized into each mode representing a Low Density Parity Check (LDPC) code rate and a modulation order for the signaling data, building, by a frame builder, at least one signal frame including the encoded service data in at least one data symbol and the encoded signaling data in at least one signaling symbol, modulating, by a modulator, data in the at least one signal frame by an Orthogonal Frequency Division Multiplex (OFDM) scheme, and transmitting, by a transmitter, the broadcast signals carrying the modulated data in the at least one signal frame. One of the modes for the signaling data represents a 6/15 LDPC code rate and a Quadrature Phase Shift Keying (QPSK) modulation.

Asynchronous digital communication

Systems, apparatus, and methods of asynchronous digital communication include at least one transmitter and/or at least one receiver communicatively coupleable to at least one communication interface for encoding and transmitting digital information as and/or receiving and decoding digital information from a transition between a first symbol and a second symbol, based on a predetermined relationship between the first symbol and the second symbol in such a way that the timing of the symbols is no longer relevant.

Method and device for uplink transmission
09730247 · 2017-08-08 ·

A method for transmitting data in a wireless local area network and the device using the same are provided. A device transmits a plurality of data units via one or more subchannels. The plurality of data units have same access categories.

ASYNCHRONOUS DIGITAL COMMUNICATION

Systems, apparatus, and methods of asynchronous digital communication include at least one transmitter and/or at least one receiver communicatively coupleable to at least one communication interface for encoding and transmitting digital information as and/or receiving and decoding digital information from a transition between a first symbol and a second symbol, based on a predetermined relationship between the first symbol and the second symbol in such a way that the timing of the symbols is no longer relevant.

Generation node b (GNB) configured for slot-less operation at frequencies above a 52.6 GHz carrier frequency

A generation node B (gNB) for a fifth-generation (5G) new radio (NR) or a sixth-generation (6G) network is configured for slot-less operation at frequencies above a 52.6 GHz carrier frequency. The gNB may generate signalling to configure a user equipment (UE) with a gap between demodulation reference signal (DMRS) symbols for an associated physical downlink shared channel (PDSCH). The gNB may also encode the DMRS symbols for transmission in accordance with the gap and may encode the associated PDSCH for transmission during the gap between the DMRS symbol transmissions at symbol times following the DMRS symbols.

METHOD AND DEVICE FOR TRANSMITTING DATA
20170118775 · 2017-04-27 ·

A method for transmitting data in a wireless local area network and the device using the same are provided. A device transmits a plurality of data units via one or more subchannels. The plurality of data units have same access categories.

2X LTF sequence for 320 MHZ

The present is related to a wireless local area network (WLAN) system. A transmitting station (STA) may generate a physical protocol data unit (PPDU), and the transmitting STA may transmit the PPDU over a 320 MHz band, wherein the PPDU may include a long training field (LTF) signal which may be generated on the basis of an LTF sequence for the 320 MHz band.

SIGNAL TRANSMISSION METHOD AND SYSTEM BASED ON CONSTELLATION-AIDED LORA
20250254072 · 2025-08-07 ·

A signal transmission method based on constellation-aided LoRa modulation includes: a modulated bit sequence and a phase shift keying (PSK) bit sequence are obtained, and the modulated bit sequence is subjected to Gray mapping and spread spectrum modulation to generate a LoRa signal set; the PSK bit sequence is subjected to PSK constellation mapping based on a preset constellation point coordinate set to output a PSK constellation point set; the LoRa signal set is subjected to PSK modulation based on a preset imaginary unit and the PSK constellation point set to generate a transmission signal; a complex number sequence is generated based on the transmission signal and a preset raw down chirp signal; and real-imaginary part judgment is performed on the complex number sequence to output a LoRa modulation information sequence set and a PSK symbol judgment result. A signal transmission system based on CA-LoRa is further provided.

DATA TRANSMISSION METHOD, AND DEVICE AND STORAGE MEDIUM
20250274325 · 2025-08-28 ·

Provided are a data transmission method and device and a storage medium. The data transmission method includes performing (S110) pointwise multiplication between a first data sequence and a second data sequence to obtain a third data sequence, where the first data sequence and the second data sequence are each a frequency-domain data sequence; performing (S120) an inverse Fourier transform on the third data sequence to obtain a fourth data sequence; and transmitting (S130) the fourth data sequence on a physical time-frequency resource.