HK36896A - A method of compensating for non-linearities in an end amplifier incorporated in a radio transmitter - Google Patents

A method of compensating for non-linearities in an end amplifier incorporated in a radio transmitter Download PDF

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Publication number
HK36896A
HK36896A HK36896A HK36896A HK36896A HK 36896 A HK36896 A HK 36896A HK 36896 A HK36896 A HK 36896A HK 36896 A HK36896 A HK 36896A HK 36896 A HK36896 A HK 36896A
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HK
Hong Kong
Prior art keywords
values
quadrature
sine
end amplifier
signal
Prior art date
Application number
HK36896A
Other languages
English (en)
French (fr)
Inventor
Olof Peter Ekelund Bjoern
Anders Jonsson Lars
Original Assignee
Telefonaktiebolaget L M Ericsson
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Telefonaktiebolaget L M Ericsson filed Critical Telefonaktiebolaget L M Ericsson
Publication of HK36896A publication Critical patent/HK36896A/en

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Classifications

    • HELECTRICITY
    • H03ELECTRONIC CIRCUITRY
    • H03FAMPLIFIERS
    • H03F1/00Details of amplifiers with only discharge tubes, only semiconductor devices or only unspecified devices as amplifying elements
    • H03F1/32Modifications of amplifiers to reduce non-linear distortion
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04LTRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
    • H04L25/00Baseband systems
    • H04L25/02Details ; arrangements for supplying electrical power along data transmission lines
    • H04L25/03Shaping networks in transmitter or receiver, e.g. adaptive shaping networks
    • H04L25/03828Arrangements for spectral shaping; Arrangements for providing signals with specified spectral properties
    • H04L25/03834Arrangements for spectral shaping; Arrangements for providing signals with specified spectral properties using pulse shaping
    • HELECTRICITY
    • H03ELECTRONIC CIRCUITRY
    • H03FAMPLIFIERS
    • H03F1/00Details of amplifiers with only discharge tubes, only semiconductor devices or only unspecified devices as amplifying elements
    • H03F1/32Modifications of amplifiers to reduce non-linear distortion
    • H03F1/3241Modifications of amplifiers to reduce non-linear distortion using predistortion circuits
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04LTRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
    • H04L27/00Modulated-carrier systems
    • H04L27/18Phase-modulated carrier systems, i.e. using phase-shift keying
    • H04L27/20Modulator circuits; Transmitter circuits
    • H04L27/2032Modulator circuits; Transmitter circuits for discrete phase modulation, e.g. in which the phase of the carrier is modulated in a nominally instantaneous manner
    • H04L27/2053Modulator circuits; Transmitter circuits for discrete phase modulation, e.g. in which the phase of the carrier is modulated in a nominally instantaneous manner using more than one carrier, e.g. carriers with different phases
    • H04L27/206Modulator circuits; Transmitter circuits for discrete phase modulation, e.g. in which the phase of the carrier is modulated in a nominally instantaneous manner using more than one carrier, e.g. carriers with different phases using a pair of orthogonal carriers, e.g. quadrature carriers
    • H04L27/2067Modulator circuits; Transmitter circuits for discrete phase modulation, e.g. in which the phase of the carrier is modulated in a nominally instantaneous manner using more than one carrier, e.g. carriers with different phases using a pair of orthogonal carriers, e.g. quadrature carriers with more than two phase states
    • H04L27/2071Modulator circuits; Transmitter circuits for discrete phase modulation, e.g. in which the phase of the carrier is modulated in a nominally instantaneous manner using more than one carrier, e.g. carriers with different phases using a pair of orthogonal carriers, e.g. quadrature carriers with more than two phase states in which the data are represented by the carrier phase, e.g. systems with differential coding
    • HELECTRICITY
    • H03ELECTRONIC CIRCUITRY
    • H03CMODULATION
    • H03C1/00Amplitude modulation
    • H03C1/02Details
    • H03C1/06Modifications of modulator to reduce distortion, e.g. by feedback, and clearly applicable to more than one type of modulator

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  • Engineering & Computer Science (AREA)
  • Physics & Mathematics (AREA)
  • Power Engineering (AREA)
  • Computer Networks & Wireless Communication (AREA)
  • Signal Processing (AREA)
  • Nonlinear Science (AREA)
  • Spectroscopy & Molecular Physics (AREA)
  • Digital Transmission Methods That Use Modulated Carrier Waves (AREA)
  • Amplifiers (AREA)

Claims (3)

  1. Verfahren, das sich für einen Endverstärker (F) mit einer Übertragungsfunktion HR, Hφ eignet, wobei der Verstärker Teil eines Radiosenders ist, der vom Quadraturtyp ist und eine lineare Digitalmodulation auf der Grundlage von Tabellen durchführt, auf die in Abhängigkeit von einem empfangenen Signalvektor α vorgegebener Länge mit den Binärwerten eines momentanen und eines akkumulierten Phasenwinkels zugegriffen wird, der von einem in dem Radiosender empfangenen Informationssignals abhängt, wobei das Verfahren folgende Schritte enthält: Speichern (ST, CT) der Digitalwerte I(t, α), Q(t, α) der Sinus- und Cosinus-Signale, die mit den um 90° phasenverschobenen und dem Endverstärker zuzuführenden Komponenten in Zusammenhang stehen, wobei die Digitalwerte mit Hilfe des Signalvektors α adressiert werden, Multiplizieren (M1, M2) und Addieren der um 90° phasenverschobenen Komponenten, damit diese auf zwei Trägersignalkomponenten (sin ωct, cos ωct) abgebildet werden, bevor das hierdurch erhaltene quadraturmodulierte Sendesignal r(t,α) dem Endverstärker (F) zugeführt wird, und Modifizieren der digitalen und um 90° phasenverschobenen Komponentenwerte I(t, α), Q(t, α) in Abhängigkeit von Amplituden- und Phasenwerten, die dem Endverstärker für mehrere Eingangssignale zugeführt werden, dadurch gekennzeichnet, daß vor dem Betrieb des Radiosenders mehrere inverse Amplitudenwerte (HR ⁻¹) und entsprechende Phasenwerte (Hφ) der Übertragungsfunktion des Endverstärkers für mehrere Werte des bei dem Radiosender empfangenen Informationssignals gespeichert werden (MH1, MH2), und die um 90° phasenverschobenen Komponentenwerte in folgender Weise modifiziert werden:
    a) Berechnen eines Absolutwertes des quadraturmodulierten Sendesignals r(t,α) aus den um 90° phasenverschobenen Komponentenwerten in nicht kompensierter Weise und für jeden Zeitpunkt (t₁),
    b) Adressieren der mehreren gespeicherten inversen Verstärkungswerte sowie der entsprechenden Phasenwerte in Abhängigkeit von dem berechneten Absolutwert,
    c) Bilden (MS) der Sinus- und Cosinus-Komponentenwerte (sin Hφ, cos Hφ) des im Schritt b) adressierten Phasenwertes, und
    d) Multiplizieren der in Schritt b) erhaltenen inversen Verstärkungswerte jeweils mit den in Schritt c) erhaltenen Sinus- und Cosinuswerten, die mit den nicht veränderten und um 90° phasenverschobenen Komponentenwerten I(t, α), Q(t, α) kombiniert sind, so daß sich die veränderten und um 90° phasenverschobenen Komponentenwerte i(t, α), q(t, α) mit lediglich in Abhängigkeit von den gespeicherten Werten veränderten Amplituden und Phase zu jedem Zeitpunkt des Signalvektors α so ergeben, daß bei dem Sendesignal die Nichtlinearitäten des Endverstärkers (F) ausgeglichen werden.
  2. Verfahren nach Anspruch 1, dadurch gekennzeichnet, daß der Schritt d) zum Multiplizieren des inversten Amplitudenwertes (HR ⁻¹) des Endverstärkers mit dem unveränderten und um 90° phasenverschobenen Komponenten I(t, α), Q(t, α), die jeweils mit den Sinus- und Cosinus-Komponenten des Phasenwertes Hφ kombiniert sind, mit einbezieht, so daß die hierdurch gewonnenen neuen, veränderten und um 90° phasenverschobenen Werte i(t,α), q(t,α) einen Absolutwert aufweisen, der dem Absolutwert der nicht veränderten und um 90° phasenverschobenen Werte entspricht, die mit dem inversen Wert (HR ⁻¹) multipliziert sind.
  3. Verfahren nach Anspruch 1, dadurch gekennzeichnet, daß der Schritt d) zum Multiplizieren und Addieren, mit dem die veränderten und um 90° phasenverschobenen Werte gebildet werden, entsprechend der folgenden Beziehungen ausgeführt wird: i(t,α) = H R ⁻¹ (R) [I(t,α) cos H φ (R)-Q(t,α) sine H φ (R)] q(t,α) = H R ⁻¹ (R) [I(t,α) sine H φ (R)+Q(t,α) cos H φ (R)] wobei HR ⁻¹ (R) und Hφ(R) den gespeicherten und adressierten Werten des Endverstärkers (F) entsprechen.
HK36896A 1990-01-22 1996-02-29 A method of compensating for non-linearities in an end amplifier incorporated in a radio transmitter HK36896A (en)

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
SE9000219A SE465494B (sv) 1990-01-22 1990-01-22 Foerfarande att kompensera foer olineariteter i en slutfoerstaerkare

Publications (1)

Publication Number Publication Date
HK36896A true HK36896A (en) 1996-03-08

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Family Applications (1)

Application Number Title Priority Date Filing Date
HK36896A HK36896A (en) 1990-01-22 1996-02-29 A method of compensating for non-linearities in an end amplifier incorporated in a radio transmitter

Country Status (14)

Country Link
US (1) US5191597A (de)
EP (1) EP0441110B1 (de)
JP (1) JP3034033B2 (de)
KR (1) KR0133552B1 (de)
CN (1) CN1024383C (de)
AU (1) AU633189B2 (de)
BR (1) BR9007227A (de)
CA (1) CA2050350C (de)
DE (1) DE69023326T2 (de)
HK (1) HK36896A (de)
MY (1) MY104811A (de)
NZ (1) NZ236504A (de)
SE (1) SE465494B (de)
WO (1) WO1991011053A1 (de)

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Also Published As

Publication number Publication date
CA2050350C (en) 2000-07-25
SE9000219L (sv) 1991-07-23
DE69023326D1 (de) 1995-12-07
AU633189B2 (en) 1993-01-21
NZ236504A (en) 1993-05-26
US5191597A (en) 1993-03-02
CN1024383C (zh) 1994-04-27
KR920702079A (ko) 1992-08-12
CA2050350A1 (en) 1991-07-23
JPH04504494A (ja) 1992-08-06
AU7225191A (en) 1991-08-05
JP3034033B2 (ja) 2000-04-17
EP0441110A1 (de) 1991-08-14
EP0441110B1 (de) 1995-11-02
KR0133552B1 (ko) 1998-04-23
SE9000219D0 (sv) 1990-01-22
CN1053719A (zh) 1991-08-07
SE465494B (sv) 1991-09-16
DE69023326T2 (de) 1996-04-11
MY104811A (en) 1994-05-31
BR9007227A (pt) 1992-02-18
WO1991011053A1 (en) 1991-07-25

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