Patents by Inventor Rabeb Aloui

Rabeb Aloui has filed for patents to protect the following inventions. This listing includes patent applications that are pending as well as patents that have already been granted by the United States Patent and Trademark Office (USPTO).

  • Patent number: 11016602
    Abstract: A method for locating at least one movable magnetic object relative to a network of at least N tri-axial magnetometers linked together mechanically with no degree of freedom to retain a known relative position of these magnetometers, N being an integer number at least equal to 2, comprises, continuously: a step of detection of a magnetometer capable of being magnetized, i.e. capable of delivering as output measurements comprising a measurement bias following a magnetization; a step of correction, by means of a correction bias, of the measurements delivered by the magnetometer capable of being magnetized, the correction bias corresponding to a deviation between the measurements supplied by the magnetometer as input for a location filtering and the estimations, upon the location filtering, of the data delivered by the magnetometer; and a step of consideration of the magnetometer as not capable of being magnetized, by taking into account the step of correction of the magnetometer capable of being magnetized.
    Type: Grant
    Filed: December 7, 2015
    Date of Patent: May 25, 2021
    Assignee: ISKN
    Inventors: Tristan Hautson, Rabeb Aloui
  • Patent number: 10331220
    Abstract: A configurable human-machine interface for controlling an electrical apparatus includes at least one permanent magnet rigidly connected to each of utensils and a magnetometer array including N triaxial magnetometers, mechanically linked to each other without any degree of freedom to retain a known distance between each of the magnetometers, wherein N is a whole number greater than or equal to five, and a processing unit configured to: define, for each permanent magnet of a utensil, a value of at least one variable encoding a position or orientation of same in a three-dimensional reference system fixed without any degree of freedom to the array or the amplitude of the magnetic moment of same, from measurements of the magnetometers of the array, and automatically select a control law based on the value defined for the variable.
    Type: Grant
    Filed: May 5, 2014
    Date of Patent: June 25, 2019
    Assignee: COMMISSARIAT A L'ENERGIE ATOMIQUE ET AUX ENERGIES ALTERNATIVES
    Inventors: Tristan Hautson, Rabeb Aloui, Timothee Jobert
  • Patent number: 10310030
    Abstract: A method for recognizing a magnetic object includes holding the object immobile in front of an array of N (where N is >five) tri-axial magnetometers (Mij) linked with no degree of freedom. There is a fixed distance between two consecutive magnetometers less than the maximum separation between the magnetic parts of the magnetic object furthest away from one another. The method includes measuring by each magnetometer a vector bi,m of which each coordinate represents the value of the magnetic field projected onto a respective measurement axis of the magnetometer, and a union of vectors bi,m forming a measured magnetic signature Sm, where the index “i” is an identifier of the magnetometer. The method includes computing of a deviation E between the magnetic signature Sm and a prerecorded magnetic signature SRef of a known magnetic object. The method includes comparing E to a predetermined threshold and recognizing the magnetic object.
    Type: Grant
    Filed: February 26, 2014
    Date of Patent: June 4, 2019
    Assignee: Commissariat à l'énergie atomique et aux énergies alternatives
    Inventors: Tristan Hautson, Rabeb Aloui, Saifeddine Aloui, Timothée Jobert
  • Patent number: 10095326
    Abstract: A method is provided for continuously detecting a state of contact or non-contact between a tip of an instrument and a writing surface of a writing medium of variable thickness positioned on a bearing surface of a tracking device.
    Type: Grant
    Filed: December 7, 2015
    Date of Patent: October 9, 2018
    Assignee: ISKN
    Inventors: Rabeb Aloui, Tristan Hautson
  • Patent number: 10095325
    Abstract: A method for locating at least one movable magnetic object with respect to an array of at least N triaxial magnetometers comprises steps consisting in: subtracting a weighted average from each of the measurements to obtain modified measurement; loading the modified measurements and a location of the one or more movable magnetic objects at the current time as input into a filtering operation for locating the one or more movable magnetic objects; implementing the location filtering operation, this comprises steps consisting in: subtracting a weighted average from each of the estimated data; and delivering as output a location of the one or more movable magnetic objects at a subsequent time.
    Type: Grant
    Filed: December 7, 2015
    Date of Patent: October 9, 2018
    Assignee: ISKN
    Inventors: Tristan Hautson, Rabeb Aloui
  • Publication number: 20170351350
    Abstract: A method is provided for continuously detecting a state of contact or non-contact between a tip of an instrument and a writing surface of a writing medium of variable thickness positioned on a bearing surface of a tracking device.
    Type: Application
    Filed: December 7, 2015
    Publication date: December 7, 2017
    Inventors: Rabeb ALOUI, Tristan HAUTSON
  • Publication number: 20170350723
    Abstract: A method for locating at least one movable magnetic object relative to a network of at least N tri-axial magnetometers linked together mechanically with no degree of freedom to retain a known relative position of these magnetometers, N being an integer number at least equal to 2, comprises, continuously: a step of detection of a magnetometer capable of being magnetized, i.e. capable of delivering as output measurements comprising a measurement bias following a magnetization; a step of correction, by means of a correction bias, of the measurements delivered by the magnetometer capable of being magnetized, the correction bias corresponding to a deviation between the measurements supplied by the magnetometer as input for a location filtering and the estimations, upon the location filtering, of the data delivered by the magnetometer; and a step of consideration of the magnetometer as not capable of being magnetized, by taking into account the step of correction of the magnetometer capable of being magnetized.
    Type: Application
    Filed: December 7, 2015
    Publication date: December 7, 2017
    Inventors: Tristan HAUTSON, Rabeb ALOUI
  • Publication number: 20170336885
    Abstract: A method for locating at least one movable magnetic object with respect to an array of at least N triaxial magnetometers comprises steps consisting in: subtracting a weighted average from each of the measurements to obtain modified measurement; loading the modified measurements and a location of the one or more movable magnetic objects at the current time as input into a filtering operation for locating the one or more movable magnetic objects; implementing the location filtering operation, this comprises steps consisting in: subtracting a weighted average from each of the estimated data; and delivering as output a location of the one or more movable magnetic objects at a subsequent time.
    Type: Application
    Filed: December 7, 2015
    Publication date: November 23, 2017
    Inventors: Tristan HAUTSON, Rabeb ALOUI
  • Patent number: 9703001
    Abstract: An automatic recognition method includes the calculation of an error representative of the difference between an estimate of the values of the magnetometer measurements when the positions, orientations and amplitudes of the magnetic moments of the P dipoles are equal to those determined, and the values of the magnetometer measurements taken. There is the selection of another system of equations linking each measurement of a triaxial magnetometer to the position, orientation and amplitude of the magnetic moment of P? magnetic dipoles. The method includes the calculation of at least one distinctive feature of the object presented from the position, orientation, or amplitude of the magnetic moment of each dipole determined with the system of equations that minimizes the error calculated. The method includes the recognition of the magnetic object presented if the calculated distinctive features correspond to those of a known object, otherwise the lack of recognition of this object.
    Type: Grant
    Filed: November 12, 2013
    Date of Patent: July 11, 2017
    Assignee: Commissariat à l'énergie atomique et aux énergies alternatives
    Inventors: Tristan Hautson, Rabeb Aloui, Saifeddine Aloui, Timothée Jobert
  • Publication number: 20160018485
    Abstract: A method for recognizing a magnetic object includes holding the object immobile in front of an array of N (where N is >five) tri-axial magnetometers (Mij) linked with no degree of freedom. There is a fixed distance between two consecutive magnetometers less than the maximum separation between the magnetic parts of the magnetic object furthest away from one another. The method includes measuring by each magnetometer a vector bi,m of which each coordinate represents the value of the magnetic field projected onto a respective measurement axis of the magnetometer, and a union of vectors bi,m forming a measured magnetic signature Sm, where the index “i” is an identifier of the magnetometer. The method includes computing of a deviation E between the magnetic signature Sm and a prerecorded magnetic signature SRef of a known magnetic object. The method includes comparing E to a predetermined threshold and recognizing the magnetic object.
    Type: Application
    Filed: February 26, 2014
    Publication date: January 21, 2016
    Inventors: Tristan Hautson, Rabeb Aloui, Saifeddine Aloui, Timothée Jobert
  • Publication number: 20150301216
    Abstract: An automatic recognition method includes the calculation of an error representative of the difference between an estimate of the values of the magnetometer measurements when the positions, orientations and amplitudes of the magnetic moments of the P dipoles are equal to those determined, and the values of the magnetometer measurements taken. There is the selection of another system of equations linking each measurement of a triaxial magnetometer to the position, orientation and amplitude of the magnetic moment of P? magnetic dipoles. The method includes the calculation of at least one distinctive feature of the object presented from the position, orientation, or amplitude of the magnetic moment of each dipole determined with the system of equations that minimizes the error calculated. The method includes the recognition of the magnetic object presented if the calculated distinctive features correspond to those of a known object, otherwise the lack of recognition of this object.
    Type: Application
    Filed: November 12, 2013
    Publication date: October 22, 2015
    Inventors: Tristan Hautson, Rabeb Aloui, Saifeddine Aloui, Timothée Jobert