EP0944971A2

Wideband code-division-multiple access system and method

Abstract

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Projected expiry passed 26 August 2017, 9.1 years ago.

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16 claims: 4 independent, 12 dependent

  1. 1
    Claims of equivalent WO 9809398 A2 I CLAIM :1. An improvement to a wideband code-division- multiple-access (W-CDMA) system, comprising: a W-CDMA transmitter, said W-CDMA transmitter including, an in-phase-data-product device for multiplying an in-phase-data (IDATA) signal with a data-chip-sequence signal, thereby generating an IDATA- spread-spectrum signal;a quadrature-phase-data-product device for multiplying a quadrature-phase-data (QDATA) signal with the data-chip-sequence signal, thereby generating a QDATA-spread-spectrum signal;equalization-chip means for outputting an equalization-chip-sequence signal ;an in-phase combiner, coupled to said in- phase-data-product device and to said equalization-chip means, for linearly combining the IDATA-spread-spectrum signal and the equalization-chip-sequence signal, to generate an in-phase-combined-spread-spectrum signal;a quadrature-phase combiner, coupled to said quadrature-phase-data-product device and to said equalization-chip means, for linearly combining the QDATA-spread-spectrum signal, and the equalization- chip-sequence signal, to generate the quadrature-phase- combined-spread-spectrum signal;a quadrature-phase-shift-keyed (QPSK) modulator, coupled to said in-phase combiner and to said quadrature-phase combiner, for QPSK modulating the in-phase-combined-spread-spectrum signal with the quadrature-phase-combined-spread-spectrum signal , thereby generating a QPSK-spread-spectrum signal;a power amplifier, coupled to said QPSK modulator, for amplifying the QPSK-spread-spectrum signal;a transmitter antenna, coupled to said power amplifier, for radiating the amplified QPSK-sprεad- SUBSHTUTE SHEET (RULE 26) spectrum signal over a communications channel;a W-CDMA receiver, said W-CDMA receiver including, a receiver antenna for coupling the W-CDMA receiver to the communications channel;in-phase-punctual-equalization- (IPE) means, coupled to said receiver antenna, for despreading an in-phase component of the equalization-chip-sequence signal embedded in the QPSK-spread-spectrum signal, as a received-in-phase-punctual-equalization signal (RIEQ p ) ;first in-phase-late-equalization (ILE) means, coupled to said receiver antenna, for despreading, a first portion of a chip late, the in-phase component of the equalization-chip-sequence signal embedded in the QPSK-spread-spectrum signal, as a first received-in- phase-late-equalization signal (RIEQ L1 ) ;quadrature-phase-punctual-equalization (QPE) means, coupled to said receiver antenna, for despreading a quadrature-phase component of the equalization-chip-sequence signal embedded in the QPSK- spread-spectrum signal, as a received-quadrature-phase- punctual-equalization signal (RQEQ p ) ;first quadrature-phase-late-equalization (QLE) means, coupled to said receiver antenna, for despreading, the first portion of the chip late, the quadrature-phase component of the equalization-chip- sequence signal embedded in the QPSK-spread-spectrum signal, as a first received-quadrature-phase-late- equalization signal (RQEQ L1 ) ;in-phase-punctual-data (IPD) means, coupled to said receiver antenna, for despreading the IDATA- spread-spectrum signal embedded in the QPSK-spread- spectrum signal as a received-in-phase-punctual-data signal (RIDATAp) ;first in-phase-late-data (ILD) means, coupled to said receiver antenna, for despreading, the first portion of the chip late, the IDATA-spread-spectrum signal embedded in the QPSK-spread-spectrum signal, as a first received-in-phase-late-data signal (RIDATA L1 ) ;quadrature-phase-punctual-data (QPD) means, coupled to said receiver antenna, for despreading the QDATA-spread-spectrum signal embedded in the QPSK- spread-spectrum signal as a received-quadrature-phase- punctual-data signal (RQDATA p ) ;first quadrature-phase-late-data (QLD) means, coupled to said receiver antenna, for despreading, the first portion of the chip late, the QDATA-spread- spectrum signal embedded in the QPSK-spread-spectrum signal, as a first received-quadrature-phase-late-data signal (RQDATA L1 ) ;and a processor for determining a first punctual- equalization signal (EQl p ) from the received-in-phase- punctual-equalization signal (RIEQ p ) plus the received- quadrature-phase-punctual-equalization signal (RQEQ p ) , for determining a second punctual-equalization signal (EQ2 p ) from the received-quadrature-phase-punctual- equalization signal (RQEQ P ) minus the received-in- phase-punctual-equalization signal (RIEQ p ) , for determining a first late-equalization signal (EQ1 L ) from the first received-in-phase-late-equalization signal (RIEQ L1 ) plus the first received-quadrature- phase-late-equalization signal (RQEQ L1 ) , for determining a second late-equalization signal (EQ2 L ) from the first received-quadrature-phase-late- equalization signal (RQEQ L1 ) minus the first received- in-phase-late-equalization signal (RIEQ L1 ) , for determining an in-phase-punctual-data signal (IDATA p ) from the received-in-phase-punctual-data signal (RIDATA p ) times the first punctual-equalization signal (EQl p ) , plus the received-quadrature-phase-punctual- data signal (RQDATA p ) times the second punctual- equalization signal (EQ2 P ) , for determining a quadrature-phase-punctual-data signal (QDATA p ) from the received-quadrature-phase-punctual-data signal (RQDATAp) times the first punctual-equalization signal (EQlp) , minus the received-in-phase-punctual-data signal (RIDATA p ) times the second punctual-equalization signal (EQ2 p ) , for determining a first in-phase-late- data signal (IDATA L1 ) from the first received-in-phase- late-data signal (RIDATA L1 ) times the first late- equalization signal (EQ1 L ) , plus the first received- quadrature-phase-late-data signal (RQDATA L1 ) times the second late-equalization signal (EQ2 L ) , for determining a first quadrature-phase-late-data signal (QDATA L1 ) from the first received-quadrature-phase-late-data signal (RQDATA L1 ) times the first late-equalization signal (EQ1 L ) , minus the first received-in-phase-late- data signal (RIDATA L1 ) times the second late- equalization signal (EQ2 L ) , for determining an output- in-phase-data signal (IDATA Q ) from IDATA Q = IDATA L1 + IDATA p and for, determining an output-quadrature-phase- data signal (QDATA Q ) from QDATA Q = QDATA L1 + QDATA p .
  2. 5
    A method using wideband code-division-multiple- access (W-CDMA) transmitter and a W-CDMA receiver, comprising the steps of:multiplying, at said W-CDMA transmitter, an in- phase-data (IDATA) signal with a data-chip-sequence signal, thereby generating an IDATA-spread-spectrum signal;multiplying, at said W-CDMA transmitter, a quadrature-phase-data (QDATA) signal with the data-chip- sequence signal, thereby generating a QDATA-spread-spectrum signal;generating, at said W-CDMA transmitter, an equalization-chip-sequence signal ;combining, linearly, at said W-CDMA transmitter, the IDATA-spread-spectrum signal and the equalization-chip- sequence signal, to generate an in-phase-combined-spread- spectrum signal;combining, linearly, at said W-CDMA transmitter, the QDATA-spread-spectrum signal, and the equalization-chip- sequence signal, to generate the quadrature-phase-co bined- spread-spectrum signal;QPSK modulating, at said W-CDMA transmitter, the in-phase-combined-spread-spectrum signal with the quadrature-phase-combined-spread-spectru signal, thereby generating a QPSK-spread-spectrum signal;radiating, at said W-CDMA transmitter, the amplified QPSK-spread-spectrum signal over a communications channel ;despreading, at said W-CDMA receiver, an in-phase component of the equalization-chip-sequence signal embedded in the QPSK-spread-spectrum signal, as a received-in-phase- punctual-equalization signal (RIEQ p ) ;despreading, a first portion of a chip late, at said W-CDMA receiver, the in-phase component of the equalization-chip-sequence signal embedded in the QPSK- spread-spectrum signal, as a first received-in-phase-late- equalization signal (RIEQ L1 ) ;despreading, at said W-CDMA receiver, a quadrature-phase component of the equalization-chip-sequence signal embedded in the QPSK-spread-spectrum signal, as a received-quadrature-phase-punctual-equalization signal (RQEQ P ) ;despreading, the first portion of the chip late, at said W-CDMA receiver, the quadrature-phase component of the equalization-chip-sequence signal embedded in the QPSK- spread-spectrum signal, as a first received-quadrature- phase-late-equalization signal (RQEQ L1 ) ;despreading, at said W-CDMA receiver, the IDATA- spread-spectrum signal embedded in the QPSK-spread-spectrum signal as a received-in-phase-punctual-data signal (RIDATA p ) ;despreading, the first portion of the chip late, at said W-CDMA receiver, the IDATA-spread-spectrum signal embedded in the QPSK-spread-spectrum signal, as a first received-in-phase-late-data signal (RIDATA L1 ) ;despreading, at said W-CDMA receiver, the QDATA- spread-spectrum signal embedded in the QPSK-spread-spectrum signal as a received-quadrature-phase-punctual-data signal (RQDATA p ) ;despreading, the first portion of the chip late, at said W-CDMA receiver, the QDATA-spread-spectrum signal embedded in the QPSK-spread-spectrum signal, as a first received-quadrature-phase-late-data signal (RQDATA L1 ) ;determining, at said W-CDMA receiver, a first punctual-equalization signal (EQ1 P ) from the received-in- phase-punctual-equalization signal (RIEQ P ) plus the received-quadrature-phase-punctual-equalization signal (RQEQ p ) ;determining, at said W-CDMA receiver, a second punctual-equalization signal (EQ2 p ) from the received- quadrature-phase-punctual-equalization signal (RQEQ p ) minus the received-in-phase-punctual-equalization signal (RIEQ p ) ;determining, at said W-CDMA receiver, a first late-equalization signal (EQ1 L ) from the first received-in- phase-late-equalization signal (RIEQ L1 ) plus the first received-quadrature-phase-late-equalization signal (RQEQ L1 ) ;determining, at said W-CDMA receiver, a second late-equalization signal (EQ2 L ) from the first received- quadrature-phase-late-equalization signal (RQEQ L1 ) minus the first received-in-phase-late-equalization signal (RIEQ L1 ) ;determining, at said W-CDMA receiver, an in-phase- punctual-data signal (IDATA P ) from the received-in-phase- punctual-data signal (RIDATA p ) times the first punctual- equalization signal (EQl p ) , plus the received-quadrature- phase-punctual-data signal (RQDATA p ) times the second punctual-equalization signal (EQ2 P ) ;determining, at said W-CDMA receiver, a quadrature-phase-punctual-data signal (QDATA P ) from the received-quadrature-phase-punctual-data signal (RQDATAp) times the first punctual-equalization signal (EQl p ) , minus the received-in-phase-punctual-data signal (RIDATAp) times the second punctual-equalization signal (EQ2 p ) ;determining, at said W-CDMA receiver, a first in- phase-late-data signal (IDATA L1 ) from the first received-in- phase-late-data signal (RIDATA L1 ) times the first late- equalization signal (EQ1 L ) , plus the first received- quadrature-phase-late-data signal (RQDATA L1 ) times the second late-equalization signal (EQ2 L ) ;determining, at said W-CDMA receiver, a first quadrature-phase-late-data signal (QDATA L1 ) from the first received-quadrature-phase-late-data signal (RQDATA L1 ) times the first late-equalization signal (EQ1 L ) , minus the first received-in-phase-late-data signal (RIDATA L1 ) times the second late-equalization signal (EQ2 L ) ;determining, at said W-CDMA receiver, an output- in-phase-data signal (IDATA Q ) from IDATA Q = IDATA L1 + IDATA p ;and determining, at said W-CDMA receiver, an output quadrature-phase-data signal (QDATA Q ) from QDATA Q = QDATA L1 + QDATA p .
  3. 9
    An improvement to a wideband code-division- multiple-access (W-CDMA) receiver for receiving a QPSK- spread-spectrum signal comprising an in-phase-combined- spread-spectrum signal and a quadrature-phase-combined- spread-spectrum signal, with the in-phase-combined-spread- spectrum signal including an equalization-chip-sequence signal combined with an in-phase-data signal spread-spectrum processed with a data-chip-sequence signal, and with the quadrature-phase-combined-spread-spectrum signal including an equalization-chip-sequence signal combined with a quadrature-phase-data signal spread-spectrum processed with the data-chip-sequence signal, the improvement comprising:in-phase-punctual-equalization (IPE) means for despreading an in-phase component of the equalization-chip- sequence signal embedded in the QPSK-spread-spectrum signal, as a received-in-phase-punctual-equalization signal (RIEQ P ) ;first in-phase-late-equalization (ILE) means for despreading, a first portion of a chip late, the in-phase component of the equalization-chip-sequence signal embedded in the QPSK-spread-spectrum signal, as a first received-in- phase-late-equalization signal (RIEQ L1 ) ;quadrature-phase-punctual-equalization (QPE) means for despreading a quadrature-phase component of the equalization-chip-sequence signal embedded in the QPSK- spread-spectrum signal, as a received-quadrature-phase- punctual-equalization signal (RQEQ P ) ;first quadrature-phase-late-equalization (QLE) means for despreading, a first portion of the chip late, the quadrature-phase component of the equalization-chip-sequence signal embedded in the QPSK-spread-spectrum signal, as a first received-quadrature-phase-late-equalization signal (RQEQ L1 ) ;in-phase-punctual-data (IPD) means for despreading the IDATA-spread-spectrum signal embedded in the QPSK- spread-spectrum signal as a received-in-phase-punctual-data signal (RIDATA p ) ;first in-phase-late-data (ILD) means for despreading, the first portion of the chip late, the IDATA- spread-spectrum signal embedded in the QPSK-spread-spectrum signal, as a first received-in-phase-late-data signal (RIDATA L1 ) ;quadrature-phase-punctual-data (QPD) means for despreading the QDATA-spread-spectrum signal embedded in the QPSK-spread-spectrum signal as a received-quadrature-phase- punctual-data signal (RQDATA p ) ;first quadrature-phase-late-data (QLD) means for despreading, a first portion of the chip late, the QDATA- spread-spectrum signal embedded in the QPSK-spread-spectrum signal, as a first received-quadrature-phase-late-data signal (RQDATA L1 ) ;and a processor, coupled to said IPE means, ILE means, QPE means, QLE means, IPD means, ILD means, QPD means, and QLD means, for determining a first punctual-equalization signal (EQl p ) from the received-in-phase-punctual- equalization signal (RIEQ p ) plus the received-quadrature- phase-punctual-equalization signal (RQEQ P ) , for determining a second punctual-equalization signal (EQ2 p ) from the received-quadrature-phase-punctual-equalization signal (RQEQ p ) minus the received-in-phase-punctual-equalization signal (RIEQ P ) , for determining a first late-equalization signal (EQ1 L ) from the first received-in-phase-late- equalization signal (RIEQ L1 ) plus the first received- quadrature-phase-late-equalization signal (RQEQ L1 ) , for determining a second late-equalization signal (EQ2 L ) from the first received-quadrature-phase-late-equalization signal (R Q E QL1 ) minus the first received-in-phase-late-equalization signal (RIEQ L1 ) , or determining an in-phase-punctual-data signal (IDATA p ) from the received-in-phase-punctual-data signal (RIDATAp) times the first punctual-equalization signal (EQ1 P ) , plus the received-quadrature-phase-punctual- data signal (RQDATAp) times the second punctual-equalization signal (EQ2 p ) , for determining a quadrature-phase-punctual- data signal (QDATA p ) from the received-quadrature-phase- punctual-data signal (RQDATA p ) times the first punctual- equalization signal (EQl p ) , minus the received-in-phase- punctual-data signal (RIDATA p ) times the second punctual- equalization signal (EQ2 P ) , for determining a first in- phase-late-data signal (IDATA L1 ) from the first received-in- phase-late-data signal (RIDATA L1 ) times the first late- equalization signal (EQ1 L ) , plus the first received- quadrature-phase-late-data signal (RQDATA L1 ) times the second late-equalization signal (EQ2 L ) , for determining a first quadrature-phase-late-data signal (QDATA L1 ) from the first received-quadrature-phase-late-data signal (RQDATA L1 ) times the first late-equalization signal (EQ1 L ) , minus the first received-in-phase-late-data signal (RIDATA L1 ) times the second late-equalization signal (EQ2 L ) , for determining an output-in-phase-data signal (IDATA Q ) from IDATA Q = IDATA L1 + IDATA p and for, determining an output-quadrature- phase-data signal (QDATA Q ) from QDATA Q = QDATA L1 + QDATA p .
  4. 13
    A method for improving a wideband code-division- multiple-access (W-CDMA) receiver for receiving a QPSK- spread-spectrum signal comprising an in-phase-combined- spread-spectrum signal and a quadrature-phase-combined- spread-spectrum signal, with the in-phase-combined-spread- spectrum signal including an equalization-chip-sequence signal combined with an in-phase-data signal spread-spectrum processed with a data-chip-sequence signal, and with the quadrature-phase-combined-spread-spectrum signal including an equalization-chip-sequence signal combined with a quadrature-phase-data signal spread-spectrum processed with the data-chip-sequence signal, comprising the steps of:despreading, at said W-CDMA receiver, an in-phase component of the equalization-chip-sequence signal embedded in the QPSK-spread-spectrum signal, as a received-in-phase- punctual-equalization signal (RIEQ p ) ;despreading, a first portion of a chip late, at said W-CDMA receiver, the in-phase component of the equalization-chip-sequence signal embedded in the QPSK- spread-spectrum signal, as a first received-in-phase-late- equalization signal (RIEQ L1 ) ;despreading, at said W-CDMA receiver, a quadrature-phase component of the equalization-chip-sequence signal embedded in the QPSK-spread-spectrum signal, as a received-quadrature-phase-punctual-equalization signal (RQEQ P ) ;despreading, the first portion of the chip late, at said W-CDMA receiver, the quadrature-phase component of the equalization-chip-sequence signal embedded in the QPSK- spread-spectrum signal, as a first received-quadrature- phase-late-equalization signal (RQEQ L1 ) ;despreading, at said W-CDMA receiver, the IDATA- spread-spectrum signal embedded in the QPSK-spread-spectrum signal as a received-in-phase-punctual-data signal (RIDATA p ) ;despreading, the first portion of the chip late, at said W-CDMA receiver, the IDATA-spread-spectrum signal embedded in the QPSK-spread-spectrum signal, as a first received-in-phase-late-data signal (RIDATA L1 ) ;despreading, at said W-CDMA receiver, the QDATA- spread-spectrum signal embedded in the QPSK-spread-spectrum signal as a received-quadrature-phase-punctual-data signal (RQDATA p ) ;despreading, the first portion of the chip late, at said W-CDMA receiver, the QDATA-spread-spectrum signal embedded in the QPSK-spread-spectrum signal, as a first received-quadrature-phase-late-data signal (RQDATA L1 ) ;determining, at said W-CDMA receiver, a first punctual-equalization signal (EQl p ) from the received-in- phase-punctual-equalization signal (RIEQ p ) plus the received-quadrature-phase-punctual-equalization signal (RQEQ p ) ;determining, at said W-CDMA receiver, a second punctual-equalization signal (EQ2 P ) from the received- quadrature-phase-punctual-equalization signal (RQEQ P ) minus the received-in-phase-punctual-equalization signal (RIEQ P ) ;determining, at said W-CDMA receiver, a first late-equalization signal (EQ1 L ) from the first received-in- phase-late-eσualization signal (RIEQ L1 ) plus the first received-quadrature-phase-late-equalization signal (RQEQ L1 ) ;determining, at said W-CDMA receiver, a second late-equalization signal (EQ2 L ) from the first received- quadrature-phase-late-equalization signal (RQEQ L1 ) minus the first received-in-phase-late-equaxization signal (RIEQ L1 ) ;determining, at said W-CDMA receiver, an in-phase- punctual-data signal (IDATA P ) from the received-in-phase- punctual-data signal (RIDATA P ) times the first punctual- equalization signal (EQ1 P ) , plus the received-quadrature- phase-punctual-data signal (RQDATA p ) times the second punctual-equalization signal (EQ2 P ) ;determining, at said W-CDMA receiver, a quadrature-phase-punctual-data signal (QDATA p ) from the received-quadrature-phase-punctual-data signal (RQDATA p ) times the first punctual-equalization signal (EQl p ) , minus the received-in-phase-punctual-data signal (RIDATA p ) times the second punctual-equalization signal (EQ2 p ) ;determining, at said W-CDMA receiver, a first in- phase-late-data signal (IDATA L1 ) from the first received-in- phase-late-data signal (RIDATA L1 ) times the first late- equalization signal (EQ1 L ) , plus the first received- quadrature-phase-late-data signal (RQDATA L1 ) times the second late-equalization signal (EQ2 L ) ;determining, at said W-CDMA receiver, a first quadrature-phase-late-data signal (QDATA L1 ) from the first received-quadrature-phase-late-data signal (RQDATA L1 ) times the first late-equalization signal (EQ1 L ) , minus the first received-in-phase-late-data signal (RIDATA L1 ) times the second late-equalization signal (EQ2 L ) ;determining, at said W-CDMA receiver, an output- in-phase-data signal (IDATA Q ) from IDATA Q = IDATA L1 + IDATA p ;and determining, at said W-CDMA receiver, an output quadrature-phase-data signal (QDATA Q ) from QDATA Q = QDATA L1 + QDATA p .