Patents by Inventor Stefan Hassler

Stefan Hassler 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: 10459001
    Abstract: A speed of a rail vehicle equipped with a first chassis unit is determined. A chassis speed measurement variable is provided by a sensor unit. Inertial measurement variables are detected by an inertial measurement unit; a reference speed characteristic value is formed; an inertial speed characteristic value is determined by a calculation unit based on the inertial measurement variables, in a first operating mode, to estimate a deviation in the inertial calculation based on the reference speed characteristic value; the inertial speed characteristic value is determined, in a second operating mode, without taking into account the reference speed characteristic value. If an anomalous provision process of the chassis speed measurement variable is detected by a recognition unit on the basis of a reference characteristic value and the chassis speed measurement value, the inertial calculation is performed according to the second operating mode.
    Type: Grant
    Filed: May 26, 2014
    Date of Patent: October 29, 2019
    Assignee: Siemens Mobility GmbH
    Inventors: Till Foerster, Stefan Hassler, Thorsten Stuetzle
  • Patent number: 10391869
    Abstract: An energy conversion device for a vehicle is particularly suited for a rail vehicle. The energy conversion device has, in at least one mode, a unit which operates as a generator unit and has at least one synchronous machine, and which has at least one energy discharge unit which is provided for discharging at least a portion of an electrical energy generated by the generator unit, and has at least one resistor unit. The novel energy discharge unit has at least one control unit which is provided to set operating modes from a set of operating modes in which the resistor unit makes available a different resistance value in each case.
    Type: Grant
    Filed: October 28, 2016
    Date of Patent: August 27, 2019
    Assignee: Siemens Mobility GmbH
    Inventors: Christian Foerth, Stefan Hassler, Stefan Koch, Sabine Methner, Gerhild Schinagl, Thorsten Stuetzle
  • Publication number: 20180312067
    Abstract: An energy conversion device for a vehicle is particularly suited for a rail vehicle. The energy conversion device has, in at least one mode, a unit which operates as a generator unit and has at least one synchronous machine, and which has at least one energy discharge unit which is provided for discharging at least a portion of an electrical energy generated by the generator unit, and has at least one resistor unit. The novel energy discharge unit has at least one control unit which is provided to set operating modes from a set of operating modes in which the resistor unit makes available a different resistance value in each case.
    Type: Application
    Filed: October 28, 2016
    Publication date: November 1, 2018
    Inventors: CHRISTIAN FOERTH, STEFAN HASSLER, STEFAN KOCH, SABINE METHNER, GERHILD SCHINAGL, THORSTEN STUETZLE
  • Patent number: 9889866
    Abstract: The invention relates to a 1st power supply arrangement for a rail vehicle. The rail vehicle includes at least one driven car with an intermediate circuit, a brake system and an energy supply system for supplying the brake system with operating energy. In order to improve the framework conditions to ensure reliable electrodynamic braking, the energy supply system contains at least two energy supply units, for the driven car, arranged at the intermediate circuit, for the redundant energy supply to the brake system.
    Type: Grant
    Filed: December 18, 2013
    Date of Patent: February 13, 2018
    Assignee: Siemens Aktiengesellschaft
    Inventors: Till Foerster, Stefan Hassler, Reiner Heilmann, Lars Loewenstein, Jens Konstantin Schwarzer, Jean-Pascal Schwinn, Thorsten Stuetzle
  • Patent number: 9869610
    Abstract: A method for detecting a vibration of a driven axle system of a rail vehicle includes a sensor system detecting a parameter indicating the vibration of an element of the axle system and an evaluating unit evaluating a signal of the sensor system. In order to reliably detect the vibration of the driven axle system of the rail vehicle, the sensor system includes a motion sensor which detects a motion of the element as the parameter.
    Type: Grant
    Filed: January 27, 2014
    Date of Patent: January 16, 2018
    Assignee: Siemens Aktiengesellschaft
    Inventors: Stefan Hassler, Wolfgang Rulka, Thorsten Stuetzle
  • Patent number: 9707951
    Abstract: A rail vehicle braking device has at least one electrodynamic brake, which comprises a drive unit, which has at least one drive motor and a power supply unit for supplying the drive motor when the drive unit is in a traction mode. The rail vehicle braking device has at least two brake control units in order to increase the safety of the electrodynamic brake. In a first braking mode, a first brake control unit in an active state controls the power supply unit for providing a braking effect, a first brake effect monitoring unit and a switching unit, which serves to switch, depending on a brake effect parameter in the first braking mode, into a second braking mode, in which the second brake control unit in an active state controls the power supply unit for providing a brake effect.
    Type: Grant
    Filed: February 28, 2013
    Date of Patent: July 18, 2017
    Assignee: Siemens Aktiengesellschaft
    Inventors: Till Foerster, Stefan Hassler, Reiner Heilmann, Jean-Pascal Schwinn, Thorsten Stuetzle, Manfred Wiesand
  • Patent number: 9533668
    Abstract: A rail vehicle braking device has at least one first electrodynamic brake with a drive unit that includes at least one drive motor and a power supply unit for supplying the drive motor in a traction mode of the drive unit. A brake control unit controls, in a first brake mode, the respective power supply unit for providing a braking effect. In order to optimize the system with a fall-back measure in case of a braking effect loss in respect of the cause thereof, there is provided at least one sensor unit, which detects a braking effect parameter for the first braking mode of the brake. A monitoring device is assigned to the first brake. It is independent of the brake control unit and considers, in a first monitoring mode, the braking effect parameter for the introduction of a fall-back measure concerning the brake.
    Type: Grant
    Filed: February 28, 2013
    Date of Patent: January 3, 2017
    Assignee: SIEMENS AKTIENGESELLSCHAFT
    Inventors: Till Foerster, Stefan Hassler, Reiner Heilmann, Jean-Pascal Schwinn, Thorsten Stützle, Manfred Wiesand
  • Publication number: 20160244073
    Abstract: A method controls a drive-off process of an electrically driven vehicle, the electric motor of which is fed via a converter. A holding torque necessary to prevent the vehicle from rolling back is determined. By using sensors for determining carriage masses and sensors for determining route inclinations, the holding torque can be precisely determined. In order to achieve a drive-off process of the electrically driven vehicle that is gentle on the electric motor and as long as a determined rotational motor speed is less than a specified limit rotational speed, a traction torque is limited by a control unit of the vehicle to a limit torque dependent on the holding torque, and the traction torque is increased beyond the limit torque by the control unit only once the rotational motor speed is greater than the limit rotational speed.
    Type: Application
    Filed: September 1, 2014
    Publication date: August 25, 2016
    Inventors: TILL FOERSTER, STEFAN HASSLER, THORSTEN STUETZLE
  • Publication number: 20160109476
    Abstract: A speed of a rail vehicle equipped with a first chassis unit is determined. A chassis speed measurement variable is provided by a sensor unit. Inertial measurement variables are detected by an inertial measurement unit; a reference speed characteristic value is formed; an inertial speed characteristic value is determined by a calculation unit based on the inertial measurement variables, in a first operating mode, to estimate a deviation in the inertial calculation based on the reference speed characteristic value; the inertial speed characteristic value is determined, in a second operating mode, without taking into account the reference speed characteristic value. If an anomalous provision process of the chassis speed measurement variable is detected by a recognition unit on the basis of a reference characteristic value and the chassis speed measurement value, the inertial calculation is performed according to the second operating mode.
    Type: Application
    Filed: May 26, 2014
    Publication date: April 21, 2016
    Inventors: TILL FOERSTER, STEFAN HASSLER, THORSTEN STUETZLE
  • Publication number: 20150362407
    Abstract: A method for detecting a vibration of a driven axle system of a rail vehicle includes a sensor system detecting a parameter indicating the vibration of an element of the axle system and an evaluating unit evaluating a signal of the sensor system. In order to reliably detect the vibration of the driven axle system of the rail vehicle, the sensor system includes a motion sensor which detects a motion of the element as the parameter.
    Type: Application
    Filed: January 27, 2014
    Publication date: December 17, 2015
    Inventors: STEFAN HASSLER, WOLFGANG RULKA, THORSTEN STUETZLE
  • Publication number: 20150353109
    Abstract: The invention relates to a 1st power supply arrangement for a rail vehicle. The rail vehicle includes at least one driven car with an intermediate circuit, a brake system and an energy supply system for supplying the brake system with operating energy. In order to improve the framework conditions to ensure reliable electrodynamic braking, the energy supply system contains at least two energy supply units, for the driven car, arranged at the intermediate circuit, for the redundant energy supply to the brake system.
    Type: Application
    Filed: December 18, 2013
    Publication date: December 10, 2015
    Inventors: TILL FOERSTER, STEFAN HASSLER, REINER HEILMANN, LARS LOEWENSTEIN, JENS KONSTANTIN SCHWARZER, JEAN-PASCAL SCHWINN, THORSTEN STUETZLE
  • Publication number: 20150081145
    Abstract: A rail vehicle braking device has at least one first electrodynamic brake with a drive unit that includes at least one drive motor and a power supply unit for supplying the drive motor in a traction mode of the drive unit. A brake control unit controls, in a first brake mode, the respective power supply unit for providing a braking effect. In order to optimize the system with a fall-back measure in case of a braking effect loss in respect of the cause thereof, there is provided at least one sensor unit, which detects a braking effect parameter for the first braking mode of the brake. A monitoring device is assigned to the first brake. It is independent of the brake control unit and considers, in a first monitoring mode, the braking effect parameter for the introduction of a fall-back measure concerning the brake.
    Type: Application
    Filed: February 28, 2013
    Publication date: March 19, 2015
    Applicant: SIEMENS AKTIENGESELLSCHAFT
    Inventors: Till Förster, Stefan Hassler, Reiner Heilmann, Jean-Pascal Schwinn, Thorsten Stützle, Manfred Wiesand
  • Publication number: 20150032302
    Abstract: A rail vehicle braking device has at least one electrodynamic brake, which comprises a drive unit, which has at least one drive motor and a power supply unit for supplying the drive motor when the drive unit is in a traction mode. The rail vehicle braking device has at least two brake control units in order to increase the safety of the electrodynamic brake. In a first braking mode, a first brake control unit in an active state controls the power supply unit for providing a braking effect, a first brake effect monitoring unit and a switching unit, which serves to switch, depending on a brake effect parameter in the first braking mode, into a second braking mode, in which the second brake control unit in an active state controls the power supply unit for providing a brake effect.
    Type: Application
    Filed: February 28, 2013
    Publication date: January 29, 2015
    Inventors: Till Foerster, Stefan Hassler, Reiner Heilmann, Jean-Pascal Schwinn, Thorsten Stuetzle, Manfred Wiesand