NZ601291A

Radio base station and user equipment and methods therein

Abstract

Disclosed is a user equipment (10) for transmitting uplink control information in time slots in a sub-frame over a radio channel to a radio base station (12). The radio channel is arranged to carry uplink control information, and the uplink control information is comprised in a block of bits. The user equipment (10) includes a mapping circuit (213) configured to map the block of bits to a sequence of complex valued modulation symbols. A block spreading circuit (214) is configured to block spread the sequence of complex valued modulation symbols across Discrete Fourier Transform Spread - Orthogonal Frequency Division Multiplexing, DFTS-OFDM, symbols by applying a spreading sequence to the sequence of complex valued modulation symbols. The result of this is to achieve a block spread sequence of complex valued modulation symbols. A transforming circuit (215) is configured to transform, per DFTS-OFDM symbol, the block-spread sequence of complex valued modulation symbols by applying a matrix with matrix elements. The matrix elements are cyclically shifted depending on a DFTS-OFDM symbol index and/or slot index, to the block-spread sequence of complex valued modulation symbols. A transmitter (217) is configured to transmit the block spread sequence of complex valued modulation symbols that has been transformed over the radio channel to the radio base station (12).

NZ601291A, drawing sheet 1
Sheet 1 of 21

Term

4.3 yearsto projected expiry

Projected expiry 18 January 2031, counted from filing; an application has no term until it is granted.

  1. Priority
  2. Filed
  3. Published
  4. Today
  5. Projected expiry

18 claims: 15 independent, 3 dependent

  1. 1
    CLAIMS 1. A method in a radio base station for receiving uplink control information in time slots in a subframe over a radio channel from a user equipment, which radio channel is arranged to carry uplink control information, the uplink control information is comprised in a block of bits, and which user equipment and radio base station are comprised in a radio communications network, the method comprises:receiving a sequence of complex valued modulation symbols, Orthogonal Frequency Division Multiplexing (OFDM) demodulating the sequence of complex valued modulation symbols, transforming, per Discrete Fourier Transform Spread (DFTS)-OFDM symbol, the sequence of complex valued modulation symbols that has been OFDM demodulated by performing an operation that corresponds to applying a matrix comprising matrix elements, which matrix elements are cyclically shifted depending on a DFTS-OFDM symbol index and/or slot index, to the OFDM demodulated sequence of complex valued modulation symbols, block despreading the sequence of complex valued modulation symbols that has been OFDM demodulated and transformed with a despreading sequence, and mapping the despread sequence of complex valued modulation symbols that has been OFDM demodulated and transformed, to a block of bits.
  2. 2
    A user equipment for transmitting uplink control information in time slots in a subframe over a radio channel to a radio base station, which radio channel is arranged to carry uplink control information, and the uplink control information being comprised in a block of bits, and which user equipment comprises:a mapping circuit configured to map the block of bits to a sequence of complex valued modulation symbols, a block spreading circuit configured to block spread the sequence of complex valued modulation symbols across Discrete Fourier Transform Spread - Orthogonal Frequency Division Multiplexing (DFTS-OFDM) symbols by applying a spreading sequence to the sequence of complex valued modulation symbols, to achieve a block spread sequence of complex valued modulation symbols, a transforming circuit configured to transform, per DFTS-OFDM symbol, the block spread sequence of complex valued modulation symbols by performing an operation that corresponds to applying a matrix comprising matrix elements, which matrix elements are 6743561 1 cyclically shifted depending on a DFTS-OFDM symbol index and/or slot index, to the block-spread sequence of complex valued modulation symbols, and a transmitter configured to transmit the block spread sequence of complex valued modulation symbols that has been transformed over the radio channel to the radio base station.
  3. 4
    A user equipment according to any one of claims 2-3, further comprising:an error correction coding circuit configured to error correction encode the block of bits, and a scrambling circuit configured to scramble the block of bits before mapping the block of bits to the sequence of complex valued modulation symbols.
  4. 5
    A user equipment according to any one of claims 2-4, further comprising:an OFDM modulator configured to OFDM modulate, per DFTS-OFDM symbol, the block spread sequence of complex valued modulation symbols that has been transformed.
  5. 6
    A user equipment according to any one of claims 2-5, wherein the transmitter is configured to transmit a first part of the sequence of complex valued modulation symbols in a first time slot and a second part of the sequence of complex valued modulation symbols in a second time slot.
  6. 7
    A user equipment according to any one of claims 2-65, wherein the block of bits corresponds to uplink control information and comprises jointly encoded acknowledgements and non-acknowledgements.
  7. 8
    A radio base station for receiving uplink control information in time slots in a subframe over a radio channel from a user equipment, which radio channel is arranged to carry uplink control information, the uplink control information being comprised in a block of bits, and the radio base station comprises:6743561 1 a receiver configured to receive a sequence of complex valued modulation symbols, an Orthogonal Frequency Division Multiplexing (OFDM) demodulating circuit configured to OFDM demodulate the sequence of complex valued modulation symbols, 5 a transforming circuit configured to transform, per Discrete Fourier Transform Spread (DFTS)-OFDM symbol, the OFDM demodulated sequence of complex valued modulation symbols by performing an operation that corresponds to applying a matrix comprising matrix elements, which matrix elements are cyclically shifted depending on a DFTS-OFDM symbol index and/or slot index, to the OFDM demodulated sequence of 10 complex valued modulation symbols, a block despreading circuit configured to block despread the sequence of complex valued modulation symbols that has been OFDM demodulated and transformed, with a despreading sequence, and a mapping circuit configured to map the despread sequence of complex valued 15 modulation symbols that has been OFDM demodulated and transformed, to a block of bits.
  8. 9
    A method, in a terminal for transm ittipg kplink co ntrol information in a slot in a subframe over a channel to a base station in a wireless communication system, the uplink 20 control information being comprised in a code word, the method comprising:mapping the code word to modulation symbols;block spreading the modulation symbols across Discrete Fourier Transform Spread-Orthogonal Frequency Division Multiplexing (DFTS-OFDM) symbols by repeating the modulation symbols for each DFTS-OFDM symbol and applying a block spreading 25 sequence of weight factors to the repeated modulation symbols to achieve a respective weighted copy of the modulation symbols for each DFTS-OFDM symbol;transforming, for each DFTS-OFDM symbol, the respective weighted copy of the modulation symbols by performing an operation that corresponds to applying a matrix comprising matrix elements, which matrix elements are cyclically shifted depending on a 30 DFTS-OFDM symbol index and/or slot index to the respective weighted copy of the modulation symbols;and transmitting, on each DFTS-OFDM symbol, the respective weighted copy of the modulation symbols that has been transformed to the base station. 6743561 1
  9. 11
    A method according to any one of claims 9-10, wherein the code word is a number 5 of bits.
  10. 12
    A method according to anyone of claims 9-11, wherein the modulation symbols are Quadrature Phase-Shift Keying symbols or Binary Phase-Shift Keying symbols. 10 13. A method according to any one of claims 9-12, wherein the block spreading sequence is an orthogonal sequence. 14. A method according to any one of claims 9-13, wherein transforming comprises to cyclically shift rows or columns of the matrix, which matrix is a Discrete Fourier Transform 15 matrix. 15. A method according to claim 1 or claim 9, the method being substantially as hereinbefore described with reference to the accompanying drawings. · 20 16. A user equipment according to claim 2, the user equipment being substantially as hereinbefore described with reference to the accompanying drawings. 17. A radio base station according to claim 8, the radio base station being substantially as hereinbefore described with reference to the accompanying drawings. 6743561 1 WO 2011/087448 PCT/SE2011/050052 1/21 c ω £ ω ω ω ο „ ι_ □ Ο (Λ £ ω c Ο·— χ Π3 I Μ ν'--\ Ι’ΣΣλ \ ν’-5;ο -Q £ ω σι X (Ό ! X Q. U Ω. Ο Ο) C ο C Χ2 ε (Λ Q LL Ο ... ω ΐ c Ο σ U- WO 2011/087448 PCT/SE2011/050052 2/21 WO 2011/087448 PCT/SE2011/050052 z-axis Fig. 4 WO 2011/087448 PCT/SE2011/050052 4/21 CO io CM lo m Fig. 5 WO 2011/087448 PCT/SE2011/050052 5/21 1 ms subframe WO 2011/087448 PCT/SE2011/0S0052 6/21 lannel status repo o 1 ms subframe LL WO 2011/087448 PCT/SE2011/0S00S2 7/21 WO 2011/087448 PCT/SE2011/050052 8/21 Multiple data flows (to same user) WO 2011/087448 PCT/SE2011/050052 9/21 WO 2011/087448 PCT/SE2011/050052 10/21 co σι WO 2011/087448 PCT/SE2011/050052 11/21 Ο LL Ο I— LL Ο Ο Ll Ο ώ I— Ll Ο Ο Ll Ο I— Ll Ο -Ω (Λ Ο .Ω Ε ω Ο ο -Ω Ε ω Fig. 12 WO 2011/087448 PCT/SE2011/050052 12/21 co o c =3-+cr 0) CM Q co O — -J _q ω t I— · — c Q Q CM 9 5 ω E I— · — Q Q το o 0 £ ω E I— · — Q Q o 9£ ω E I— · u_ « Q CO cp L WO 2011/087448 PCT/SE2011/050052
  11. 13
    13/21 WO 2011/087448 PCT/SE2011/050052
  12. 14
    14/21 155 156 WO 2011/087448 PCT/SE2011/050052
  13. 15
    15/21 161 Fig. 16 WO 2011/087448 PCT/SE2011/050052
  14. 16
    16/21 Jk 172 173 174 175 176 Fig. 18 WO 2011/087448 PCT/SE2011/0S0052
  15. 17
    17/21 WO 2011/087448 PCT/SE2011/050052
  16. 18
    18/21 Error Correct Encode co o CM WO 2011/087448 PCT/SE2011/050052 Q. '=3 cr Φ S— Φ « CM cb WO 2011/087448 PCT/SE2011/050052 20/21 WO 2011/087448 PCT/SE2011/050052 21/21 Fig. 23
Independent claims16