EP1909448B1

Apparatus for Transmitting and Receiving Data to Provide High-Speed Data Communication and Method Thereof

Abstract

This record has no abstract on file.

EP1909448B1, drawing sheet 1
Sheet 1 of 17

Term

Term ended

Expired 11 February 2025, 1.6 years ago.

  1. Priority
  2. Filed
  3. Granted
  4. Expired
  5. Today

13 claims: 4 independent, 9 dependent

  1. 1
    A method for a transmitter having multiple antennas to generate a frame for transmitting data, the method comprising:generating a short preamble (S160) including synchronization information;generating two or more long preambles (S160) positioned subsequent to the short preamble;generating a data symbol positioned subsequent to the long preambles;and generating a signal symbol (S161) positioned between a first long preamble and a second long preamble, wherein the signal symbol includes information about coding rate, and modulation, wherein the two or more long preambles include channel estimation information that is necessary for a receiver to demodulate the data symbol, characterized in that the data are divided and inputted into two or more convolution encoders, and encoded by the convolution encoders (2031, ... , 203L), the signal symbol includes information about space time block coding, and the first long preamble is preceded by a guard interval having a length of 1.6 µsec, the second long preamble includes two long preambles T1, T2 wherein each of the two long preambles T1, T2 is respectively preceded by a guard interval having a length of 0.8 µsec, and the data symbol is preceded by a guard interval having a length of 0.8 µsec.
  2. 7
    An apparatus, comprising:a frame generator (2311, ..., 231 M) generating a frame;and a transmitter (2111, ..., 211 M) transmitting the frame via at least multiple antenna, wherein the frame comprises a short preamble including synchronization information, two or more long preambles positioned subsequent to the short preambles, a data symbol positioned subsequent to the long preambles, and a signal symbol positioned between a first long preamble and a second long preamble wherein the signal symbol includes information about coding rate, and modulation, and wherein the two or more long preambles comprise channel estimation information that is necessary for a receiver to demodulate the data symbol, characterized in that the data are divided and inputted into two or more convolution encoders, and encoded by the convolution encoders (2031, ... , 203L), the signal symbol includes information about space time block coding, and the first long preamble is preceded by a guard interval having a length of 1.6 µsec, the second long preamble includes two long preambles T1, T2 wherein each of the two long preambles T1, T2 is respectively preceded by a guard interval having a length of 0.8 µsec, and the data symbol is preceded by a guard interval having a length of 0.8 µsec.
  3. 10
    A frame comprising:a short preamble including synchronization information;two or more long preambles positioned subsequent to the short preamble;a data symbol positioned subsequent to the long preambles;and a signal symbol positioned between a first long preamble and a second long preamble, wherein the signal symbol includes information about coding rate, and modulation, wherein the two or more long preambles include channel estimation information that is necessary for a receiver to demodulate the data symbol, characterized in that the data being divided and encoded by two or more convolution encoders (2031, ..., 203L), the signal symbol includes information about space time block coding, and the first long preamble is preceded by a guard interval having a length of 1.6 µsec, the second long preamble includes two long preambles T1, T2 wherein each of the two long preambles T1, T2 is respectively preceded by a guard interval having a length of 0.8 µsec, and the data symbol is preceded by a guard interval having a length of 0.8 µsec.
  4. 13
    A method for receiving data which has been transmitted by a transmitter having multiple antennas to generate a frame for transmitting data, the method comprising:receiving a short preamble including synchronization information;receiving two or more long preambles positioned subsequent to the short preamble;receiving a data symbol positioned subsequent to the long preambles;receiving a signal symbol positioned between a first long preamble and a second long preamble, wherein the signal symbol includes information about coding rate, and modulation;and estimating a channel between the transmitter and a receiver using the second long preamble to demodulate the data symbol, characterized in that the data symbol is inputted into two or more convolutional decoders, and decoded by the convolutional decoders, the signal symbol includes information about space time block coding, and the first long preamble is preceded by a guard interval having a length of 1.6 µsec, the second long preamble includes two long preambles T1, T2 wherein each of the two long preambles T1, T2 is respectively preceded by a guard interval having a length of 0.8 µsec, and the data symbol is preceded by a guard interval having a length of 0.8 µsec.