EP1570588B1

Apparatus and method for signal constitution for downlink of ofdma-based cellular system

Abstract

Disclosed are an adaptive pilot symbol assignment method that flexibly controls the number of transmit antennas according to each user's moving speed, channel status, or user request, and assigns proper pilot symbols in the downlink of an OFDMA (Orthogonal Frequency Division Multiplexing Access) based cellular system; and a sub-carrier allocation method for high-speed mobile that allocates some sub-carriers to assign proper pilot symbols for ultrahigh-speed mobile users, and the rest of the sub-carriers to the other users to assign proper pilot symbols to the users, on the assumption that the ultrahigh-speed mobile users have a traffic volume almost insignificant to the whole traffic volume.

EP1570588B1, drawing sheet 1
Sheet 1 of 12

Term

Term ended

Expired 2 June 2023, 3.3 years ago.

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

16 claims: 3 independent, 13 dependent

  1. 1
    A downlink signal constitution method, which is for a downlink of a cellular system using an orthogonal frequency division multiplexing access method, the downlink signal constitution method comprising:(a) coding, interleaving, and symbol-mapping data of a common channel and a control channel, and assigning fundamental pilot symbols, necessary for a demodulation of the common channel-and the control channel, to time, frequency, and antenna;(b) receiving data to be transmitted through a traffic channel of each user, and determining a transmission mode of each user according to the user's moving speed, channel information, and traffic requirement;(c) determining additional pilot symbols, additionally necessary for a demodulation of the traffic channel, according to the transmission mode and moving speed by users;and (d) coding, interleaving, and symbol-mapping the data of the traffic channel according to the transmission mode of users, and assigning the mapped symbols and the additional pilot symbols according to time, frequency, and antenna.
  2. 13
    A downlink signal constitution apparatus (100), which is for a cellular system using an orthogonal frequency division multiplexing access method, the downlink signal constitution apparatus comprising:a first memory (130) for storing traffic channel information of each user;a second memory (150) for storing channel information, traffic requirement, and moving speed information of each user;a transmission user and transmission mode determiner (160) for determining a transmission user and a transmission mode according to a defined method using the information stored in the second memory;a traffic channel processor (140) for reading the traffic channel information stored in the first memory according to the transmission mode determined by the transmission user and transmission mode determiner (160), and performing coding, interleaving, and symbol-mapping of the traffic channel ;an additional pilot symbol generator (170) for generating additional pilot symbols necessary for a demodulation of the traffic channel, using the transmission mode determined by the transmission user and transmission mode determiner (160) and the moving speed information stored in the second memory;and a time/sub-carrier/antenna mapper (180) for multiplying the traffic channel symbols output from the traffic channel processor (140) and the additional pilot symbols output from the additional pilot symbol generator (170) by a channel gain of channels or users, and mapping the resulting symbols to time, sub-carrier, and antenna by a defined method.
  3. 15
    A recording medium with a built-in program, which implements a downlink signal constitution method for a cellular system using an orthogonal frequency division multiplexing access method, The program comprising program means for implementing the steps of:coding, interleaving, and symbol-mapping data of a common channel and a control channel, and assigning fundamental pilot symbols, necessary for a demodulation of the common channel and the control channel, to time, frequency, and antenna;receiving data to be transmitted through a traffic channel of each user, and determining a transmission mode of each user according to the user's moving speed, channel information, and traffic requirement;determining additional pilot symbols, additionally necessary for a demodulation of the traffic channel, according to the transmission mode and moving speed of users;and coding, interleaving, and symbol-mapping the data of the traffic channel according to the transmission mode of users, and assigning the mapped symbols and the additional pilot symbols according to time, frequency and antenna.