Patents by Inventor Andreas Persson

Andreas Persson 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).

  • Publication number: 20180149262
    Abstract: A gearshift assembly for a transmission includes a shift lever which is mounted for pivotal movement in a select direction between a shifting gate for automatic mode and a shifting gate for manual mode. The gearshift assembly also includes a return mechanism including a push member, an electric motor mechanically acting on the shift lever through the push member, a driven member connected to the push member, a spring acting between the push member and the driven member, and a blocking element which can be actuated to move out of a blocking position in which the blocking element blocks the movement of the shift lever from the shifting gate for automatic mode to the shifting gate for manual mode. The return mechanism also includes a wheel drivable for rotation by the electric motor.
    Type: Application
    Filed: January 25, 2018
    Publication date: May 31, 2018
    Inventors: Jasmin Insanic, Bengt Hermansson, Andreas Persson
  • Patent number: 9969445
    Abstract: A trailer (10) and a side skirt (19), each comprising an integrated arrangement (60, 70, 80) for reducing air drag, are provided. Each arrangement (60, 70, 80) comprises means for receiving air (60) comprising at least one air inlet (6), means for ejecting air (70) comprising at least one air outlet (7) facing downwards. The means for ejecting air (70) are arranged along a lower edge (11) of the trailer cargo housing (16) and side skirt (19) respectively. The arrangement also comprises means for conveying air (80) comprising at least one air duct (8). The means for conveying air (80) extend between the air receiving means (60) and the air ejecting means (70). The arrangement (60, 70, 80) is configured to produce a screen of air from the lower edge (11) and downwards during travel. The air screen prevents air, especially side wind, from entering the undercarriage.
    Type: Grant
    Filed: February 3, 2015
    Date of Patent: May 15, 2018
    Assignee: Creo Dynamics AB
    Inventor: Andreas Persson
  • Patent number: 9384669
    Abstract: A method for estimating, from a platform, at least one parameter of an intruder. Consecutive frames of image data at different times of the intruder utilizing at least one passive sensor are generated. A direction from the platform to the intruder is determined based on the generated consecutive frames of image data. A time period remaining until a potential collision between the platform and the intruder is estimated. An angular extent of the intruder, as viewed by the passive sensor, is estimated based on the image data. At least one of a first relative location vector to a minimum intruder associated with the intruder or a second relative location vector to a maximum intruder associated with the intruder is estimated. An arrangement for generating input data to a sense-and-avoid system on-board a platform, a computer program, a computer program product and a platform carrying the arrangement are also provided.
    Type: Grant
    Filed: December 18, 2009
    Date of Patent: July 5, 2016
    Assignee: SAAB AB
    Inventors: Erik Petrini, Bengt-Göran Sundqvist, Andreas Persson, Johan Pellebergs
  • Patent number: 9334621
    Abstract: An eccentric shaft for a compacting machine is rotatable about a rotational axis and includes a fixed and movable eccentric mass where the movable eccentric mass cooperates with the fixed eccentric mass in one of the directions of rotation of the eccentric shaft to partly balance the fixed eccentric mass in the other rotation direction of the eccentric shaft. At least one section of the fixed eccentric mass shows a maximal radial extension (UB) in relation to the rotational axis, limited by an arc-shaped curve, which extends to a circle shape, with the diameter (D) showing a distance (A), between the point (P) on the circle-shaped curve that is located closest to the point of intersection of the rotational axis and the section plane, and the point of intersection, from 0 up to 0.1(D).
    Type: Grant
    Filed: November 17, 2014
    Date of Patent: May 10, 2016
    Assignee: Dynapac Compaction Equipment AB
    Inventors: Andreas Persson, Hans Christensen
  • Publication number: 20150139731
    Abstract: An eccentric shaft for a compacting machine is rotatable about a rotational axis and includes a fixed and movable eccentric mass where the movable eccentric mass cooperates with the fixed eccentric mass in one of the directions of rotation of the eccentric shaft to partly balance the fixed eccentric mass in the other rotation direction of the eccentric shaft. At least one section of the fixed eccentric mass shows a maximal radial extension (UB) in relation to the rotational axis, limited by an arc-shaped curve, which extends to a circle shape, with the diameter (D) showing a distance (A), between the point (P) on the circle-shaped curve that is located closest to the point of intersection of the rotational axis and the section plane, and the point of intersection, from 0 up to 0.1(D).
    Type: Application
    Filed: November 17, 2014
    Publication date: May 21, 2015
    Inventors: Andreas Persson, Hans Christensen
  • Publication number: 20140070979
    Abstract: A method for validating received positional data in vehicle surveillance applications. A signal carrying a Mode S ES message including positional data indicating an alleged position of a vehicle, transmitted from a radio source is received with a radio direction finding antenna of a receiver. A bearing from the receiver to the radio source is estimated utilizing the radio direction finding antenna and received signal. A distance between the receiver and radio source based on a time of flight for a signal travelling between the receiver and radio source at known speed is estimated with a distance measurer including primary radar, laser detector and ranger, and/or secondary surveillance radar. An estimated position of the radio source is calculated based on the estimated bearing and distance. A deviation value indicating a deviation/coincidence between the alleged position is determined according to the received and estimated position of the radio source.
    Type: Application
    Filed: November 12, 2013
    Publication date: March 13, 2014
    Applicant: SAAB AB
    Inventors: Svante Andersson, Andreas Persson
  • Patent number: 8610619
    Abstract: A method for validating received positional data in vehicle surveillance applications wherein vehicles transmit positional data indicating their own position to surrounding vehicles. A a radio direction finding antenna arrangement of a receiving unit receives a signal carrying positional data indicating an alleged position of a vehicle, transmitted from a radio source. The bearing from the receiving unit to the radio source is estimated utilizing the radio direction finding antenna arrangement and the received signal. The distance between the receiving unit and the radio source is estimated based on the time of flight for a signal travelling there between at known speed. An estimated position of the radio source is calculated based on the estimated bearing and the estimated distance. A deviation value indicating the deviation/coincidence between the alleged position of a vehicle is determined according to the received positional data and the estimated position of the radio source.
    Type: Grant
    Filed: June 10, 2009
    Date of Patent: December 17, 2013
    Assignee: SAAB AB
    Inventors: Svante Andersson, Andreas Persson
  • Publication number: 20110163908
    Abstract: A method for validating received positional data in vehicle surveillance applications wherein vehicles transmit positional data indicating their own position to surrounding vehicles. A a radio direction finding antenna arrangement of a receiving unit receives a signal carrying positional data indicating an alleged position of a vehicle, transmitted from a radio source. The bearing from the receiving unit to the radio source is estimated utilizing the radio direction finding antenna arrangement and the received signal. The distance between the receiving unit and the radio source is estimated based on the time of flight for a signal travelling there between at known speed. An estimated position of the radio source is calculated based on the estimated bearing and the estimated distance. A deviation value indicating the deviation/coincidence between the alleged position of a vehicle is determined according to the received positional data and the estimated position of the radio source.
    Type: Application
    Filed: June 10, 2009
    Publication date: July 7, 2011
    Applicant: SAAB AB
    Inventors: Svante Andersson, Andreas Persson