Patents by Inventor Dietrich Hunold

Dietrich Hunold 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: 7877095
    Abstract: A method of adapting a radio network model to conditions of a real radio network consists of the following steps: defining different measuring positions; carrying out measurements of variables at the different measuring positions, thereby generating measured data; providing position-dependent modelling values, using the measured data for the modelling values from the real radio network obtained at the measuring positions; setting a fine grid in a radio cell, defining small area portions, wherein one or more of the modelling values is attributed to each area portion by the radio network model. Mathematical operations are then established for modifying the modelling values of all area portions of the fine grid by adapting the modelling values to the measured data. In this manner, the mathematical operations are for each area portion and directly dependent on the measured data and the position of the respective area portions.
    Type: Grant
    Filed: July 14, 2006
    Date of Patent: January 25, 2011
    Assignee: Actix GmbH
    Inventors: Johannes Hübner, Dietrich Hunold
  • Patent number: 7787983
    Abstract: In a method for sequentially programming an injection molding cycle of an injection molding machine comprising one or several injection molds, the injection molding cycle is started manually step by step. The parts of the injection molding machine and/or the parts of the injection mold(s) are manually displaced into the positions or states required for the injection molding cycle in the order required for the injection molding cycle. The movement sequence (the actions and the obtained states) of the machine parts and/or the mold parts is stored in a controller.
    Type: Grant
    Filed: November 20, 2007
    Date of Patent: August 31, 2010
    Assignee: KraussMaffei Technologies GmbH
    Inventors: Günther Grimm, Markus Betsche, Dietrich Hunold
  • Patent number: 7768968
    Abstract: A method of optimising real cellular, wireless communication networks comprising the steps of providing location-referenced values of subscriber traffic for area elements; transmitting a reference signal of constant transmission power; providing a cell-referenced value of the power received from the reference signal; providing a model of the communication network having an original model network configuration, and iteratively optimising the model network configuration by accumulating and weighting the subscriber traffic values of the area elements and by locally adjusting the model network configuration, to provide an optimised model network configuration.
    Type: Grant
    Filed: May 6, 2005
    Date of Patent: August 3, 2010
    Assignee: Vodafone Holding GmbH
    Inventors: Jürgen Plehn, Jann Erik Dietert, Johannes Hübner, Michael Berg, Peter Schneider, Dietrich Hunold, Peter Steinkönig, Jürgen Deiβner, Jens Voigt
  • Publication number: 20080065261
    Abstract: In a method for sequentially programming an injection molding cycle of an injection molding machine comprising one or several injection molds, the injection molding cycle is started manually step by step. The parts of the injection molding machine and/or the parts of the injection mold(s) are manually displaced into the positions or states required for the injection molding cycle in the order required for the injection molding cycle. The movement sequence (the actions and the obtained states) of the machine parts and/or the mold parts is stored in a controller.
    Type: Application
    Filed: November 20, 2007
    Publication date: March 13, 2008
    Applicant: Krauss Maffei GmbH
    Inventors: Gunther Grimm, Markus Betsche, Dietrich Hunold
  • Publication number: 20070010204
    Abstract: A method of adapting a radio network model to conditions of a real radio network consists of the following steps: defining different measuring positions; carrying out measurements of variables at the different measuring positions, thereby generating measured data; providing position-dependent modelling values, using the measured data for the modelling values from the real radio network obtained at the measuring positions; setting a fine grid in a radio cell, defining small area portions, wherein one or more of the modelling values is attributed to each area portion by the radio network model. Mathematical operations are then established for modifying the modelling values of all area portions of the fine grid by adapting the modelling values to the measured data. In this manner, the mathematical operations are for each area portion and directly dependent on the measured data and the position of the respective area portions.
    Type: Application
    Filed: July 14, 2006
    Publication date: January 11, 2007
    Inventors: Johannes Hubner, Dietrich Hunold
  • Publication number: 20050254455
    Abstract: A method of optimising real cellular, wireless communication networks comprising the steps of providing location-referenced values of subscriber traffic for area elements; transmitting a reference signal of constant transmission power; providing a cell-referenced value of the power received from the reference signal; providing a model of the communication network having an original model network configuration, and iteratively optimising the model network configuration by accumulating and weighting the subscriber traffic values of the area elements and by locally adjusting the model network configuration, to provide an optimised model network configuration.
    Type: Application
    Filed: May 6, 2005
    Publication date: November 17, 2005
    Inventors: Jurgen Plehn, Jann Dietert, Johannes Hubner, Michael Berg, Peter Schneider, Dietrich Hunold, Peter Steinkonig, Jurgen Deissner, Jens Voigt
  • Publication number: 20030137073
    Abstract: In a method of making an electrically conductive electrode member, a compound material, containing a binder made of polymer plastic and 80 weight % of a powdery electrically conductive material as filler, is introduced into a plasticizing screw of an injection molding machine for transforming the compound material to a plasticized material and discharging the plasticized material via a nozzle having a length of less than 15 mm for subsequent injection molding. The injection molding machine is constructed throughout a material flow passage from a point of introduction of the compound material to the injection mold to have only tapered portions which narrow a flow cross section by not more than 10:1.
    Type: Application
    Filed: December 2, 2002
    Publication date: July 24, 2003
    Applicant: KRAUSS-MAFFEI KUNSTSTOFFTECHNIK GMBH
    Inventor: Dietrich Hunold