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Extract from the Register of European Patents

EP About this file: EP3544193

EP3544193 - ROBUST ADAPTIVE METHOD FOR SUPPRESSING INTERFERENCE IN THE PRESENCE OF A USEFUL SIGNAL [Right-click to bookmark this link]
StatusNo opposition filed within time limit
Status updated on  24.03.2023
Database last updated on 21.01.2025
FormerThe patent has been granted
Status updated on  15.04.2022
FormerGrant of patent is intended
Status updated on  22.12.2021
FormerRequest for examination was made
Status updated on  20.03.2020
FormerThe application has been published
Status updated on  23.08.2019
Most recent event   Tooltip15.11.2024Change - lapse in a contracting state
Updated state(s): BG
published on 18.12.2024  [2024/51]
Applicant(s)For all designated states
Thales
TOUR CARPE DIEM
Place des Corolles
Esplanade Nord
92400 Courbevoie / FR
[2019/39]
Inventor(s)01 / BAUDIN, Roland
Thales Alenia Space
Boîte Postale 33787
26, avenue J.F Champollion
31037 TOULOUSE Cedex 1 / FR
 [2019/39]
Representative(s)Atout PI Laplace
Immeuble Up On
25 Boulevard Romain Rolland
CS 40072
75685 Paris Cedex 14 / FR
[N/P]
Former [2022/19]Marks & Clerk France
Immeuble "Visium"
22, avenue Aristide Briand
94117 Arcueil Cedex / FR
Former [2019/39]Priori, Enrico
Marks & Clerk France
Immeuble "Visium"
22, avenue Aristide Briand
94117 Arcueil Cedex / FR
Application number, filing date19164003.620.03.2019
[2019/39]
Priority number, dateFR2018000023922.03.2018         Original published format: FR 1800239
[2019/39]
Filing languageFR
Procedural languageFR
PublicationType: A1 Application with search report 
No.:EP3544193
Date:25.09.2019
Language:FR
[2019/39]
Type: B1 Patent specification 
No.:EP3544193
Date:18.05.2022
Language:FR
[2022/20]
Search report(s)(Supplementary) European search report - dispatched on:EP09.08.2019
ClassificationIPC:H04B1/12, H04B7/08
[2019/39]
CPC:
H04B1/126 (EP,US); H04L25/0204 (US); H04B1/1027 (US);
H04B7/086 (EP,US); H04L25/0224 (US); H04L25/0248 (US);
H04L27/2647 (US) (-)
Designated contracting statesAL,   AT,   BE,   BG,   CH,   CY,   CZ,   DE,   DK,   EE,   ES,   FI,   FR,   GB,   GR,   HR,   HU,   IE,   IS,   IT,   LI,   LT,   LU,   LV,   MC,   MK,   MT,   NL,   NO,   PL,   PT,   RO,   RS,   SE,   SI,   SK,   SM,   TR [2020/17]
Former [2019/39]AL,  AT,  BE,  BG,  CH,  CY,  CZ,  DE,  DK,  EE,  ES,  FI,  FR,  GB,  GR,  HR,  HU,  IE,  IS,  IT,  LI,  LT,  LU,  LV,  MC,  MK,  MT,  NL,  NO,  PL,  PT,  RO,  RS,  SE,  SI,  SK,  SM,  TR 
TitleGerman:ROBUSTES ADAPTIVES VERFAHREN ZUR UNTERDRÜCKUNG VON INTERFERENZEN IN GEGENWART EINES NUTZSIGNALS[2019/39]
English:ROBUST ADAPTIVE METHOD FOR SUPPRESSING INTERFERENCE IN THE PRESENCE OF A USEFUL SIGNAL[2019/39]
French:PROCÉDÉ ADAPTATIF ROBUSTE DE SUPPRESSION D'INTERFÉRENCES EN PRÉSENCE DE SIGNAL UTILE[2019/39]
Examination procedure16.03.2020Amendment by applicant (claims and/or description)
16.03.2020Examination requested  [2020/17]
16.03.2020Date on which the examining division has become responsible
23.12.2021Communication of intention to grant the patent
11.04.2022Fee for grant paid
11.04.2022Fee for publishing/printing paid
11.04.2022Receipt of the translation of the claim(s)
Opposition(s)21.02.2023No opposition filed within time limit [2023/17]
Fees paidRenewal fee
12.03.2021Renewal fee patent year 03
02.03.2022Renewal fee patent year 04
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Patent Court
See the Register of the Unified Patent Court for opt-out data
Responsibility for the accuracy, completeness or quality of the data displayed under the link provided lies entirely with the Unified Patent Court.
Lapses during opposition  TooltipAL18.05.2022
AT18.05.2022
BG18.05.2022
CZ18.05.2022
DK18.05.2022
EE18.05.2022
ES18.05.2022
FI18.05.2022
HR18.05.2022
LT18.05.2022
LV18.05.2022
MC18.05.2022
NL18.05.2022
PL18.05.2022
RO18.05.2022
RS18.05.2022
SE18.05.2022
SI18.05.2022
SK18.05.2022
SM18.05.2022
NO18.08.2022
GR19.08.2022
IS18.09.2022
PT19.09.2022
[2024/51]
Former [2023/48]AL18.05.2022
AT18.05.2022
CZ18.05.2022
DK18.05.2022
EE18.05.2022
ES18.05.2022
FI18.05.2022
HR18.05.2022
LT18.05.2022
LV18.05.2022
MC18.05.2022
NL18.05.2022
PL18.05.2022
RO18.05.2022
RS18.05.2022
SE18.05.2022
SI18.05.2022
SK18.05.2022
SM18.05.2022
BG18.08.2022
NO18.08.2022
GR19.08.2022
IS18.09.2022
PT19.09.2022
Former [2023/25]AL18.05.2022
AT18.05.2022
CZ18.05.2022
DK18.05.2022
EE18.05.2022
ES18.05.2022
FI18.05.2022
HR18.05.2022
LT18.05.2022
LV18.05.2022
NL18.05.2022
PL18.05.2022
RO18.05.2022
RS18.05.2022
SE18.05.2022
SI18.05.2022
SK18.05.2022
SM18.05.2022
BG18.08.2022
NO18.08.2022
GR19.08.2022
IS18.09.2022
PT19.09.2022
Former [2023/17]AL18.05.2022
AT18.05.2022
CZ18.05.2022
DK18.05.2022
EE18.05.2022
ES18.05.2022
FI18.05.2022
HR18.05.2022
LT18.05.2022
LV18.05.2022
NL18.05.2022
PL18.05.2022
RO18.05.2022
RS18.05.2022
SE18.05.2022
SK18.05.2022
SM18.05.2022
BG18.08.2022
NO18.08.2022
GR19.08.2022
IS18.09.2022
PT19.09.2022
Former [2023/09]AT18.05.2022
CZ18.05.2022
DK18.05.2022
EE18.05.2022
ES18.05.2022
FI18.05.2022
HR18.05.2022
LT18.05.2022
LV18.05.2022
NL18.05.2022
PL18.05.2022
RO18.05.2022
RS18.05.2022
SE18.05.2022
SK18.05.2022
SM18.05.2022
BG18.08.2022
NO18.08.2022
GR19.08.2022
IS18.09.2022
PT19.09.2022
Former [2023/07]AT18.05.2022
DK18.05.2022
ES18.05.2022
FI18.05.2022
HR18.05.2022
LT18.05.2022
LV18.05.2022
NL18.05.2022
PL18.05.2022
RS18.05.2022
SE18.05.2022
BG18.08.2022
NO18.08.2022
GR19.08.2022
IS18.09.2022
PT19.09.2022
Former [2022/51]AT18.05.2022
ES18.05.2022
FI18.05.2022
HR18.05.2022
LT18.05.2022
LV18.05.2022
NL18.05.2022
PL18.05.2022
RS18.05.2022
SE18.05.2022
BG18.08.2022
NO18.08.2022
GR19.08.2022
IS18.09.2022
PT19.09.2022
Former [2022/50]AT18.05.2022
ES18.05.2022
FI18.05.2022
HR18.05.2022
LT18.05.2022
LV18.05.2022
NL18.05.2022
PL18.05.2022
RS18.05.2022
SE18.05.2022
BG18.08.2022
NO18.08.2022
GR19.08.2022
PT19.09.2022
Former [2022/49]AT18.05.2022
ES18.05.2022
FI18.05.2022
HR18.05.2022
LT18.05.2022
LV18.05.2022
NL18.05.2022
SE18.05.2022
BG18.08.2022
NO18.08.2022
GR19.08.2022
PT19.09.2022
Former [2022/48]AT18.05.2022
ES18.05.2022
FI18.05.2022
LT18.05.2022
NL18.05.2022
SE18.05.2022
NO18.08.2022
PT19.09.2022
Former [2022/47]AT18.05.2022
ES18.05.2022
FI18.05.2022
LT18.05.2022
SE18.05.2022
NO18.08.2022
PT19.09.2022
Documents cited:Search[XI]  - YASEN WANG ET AL, "Robust mainlobe interference suppression for coherent interference environment", EURASIP JOURNAL ON ADVANCES IN SIGNAL PROCESSING, BIOMED CENTRAL LTD, LONDON, UK, (20161213), vol. 2016, no. 1, doi:10.1186/S13634-016-0434-Z, pages 1 - 7, XP021239980 [X] 1,4 * the whole document * [I] 2,3,5-7

DOI:   http://dx.doi.org/10.1186/s13634-016-0434-z
 [I]  - LIU JIANGBO ET AL, "Adaptive beamforming algorithms with robustness against steering vector mismatch of signals", IET RADAR SONAR NAVIGATION, THE INSTITUTION OF ENGINEERING AND TECHNOLOGY, UK, (20171201), vol. 11, no. 12, doi:10.1049/IET-RSN.2017.0245, ISSN 1751-8784, pages 1831 - 1838, XP006064321 [I] 1-7 * abstract * * sections 1-3 *

DOI:   http://dx.doi.org/10.1049/iet-rsn.2017.0245
 [I]  - ZHANG YUPING ET AL, "A robust adaptive beamformer based on desired signal covariance matrix estimation", 2016 IEEE INTERNATIONAL CONFERENCE ON SIGNAL PROCESSING, COMMUNICATIONS AND COMPUTING (ICSPCC), IEEE, (20160805), doi:10.1109/ICSPCC.2016.7753672, pages 1 - 4, XP033004355 [I] 1-7 * abstract * * sections I.-III. *

DOI:   http://dx.doi.org/10.1109/ICSPCC.2016.7753672
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