Patents by Inventor Gerd Roesel
Gerd Roesel 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).
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Patent number: 10876452Abstract: A metering device for metering water or an aqueous solution, such as an injector for metering a reducing agent liquid into an exhaust gas stream of a combustion system or an injector for metering water or aqueous solution into a combustion chamber or into an intake manifold of an internal combustion engine. The metering device has an inlet and an outlet for the water or aqueous solution and a shut-off device which is arranged between the inlet and the outlet. At least one electrically operated heating element is arranged in the region of the shut-off device so as to heat and avoid freezing of the liquid.Type: GrantFiled: December 31, 2018Date of Patent: December 29, 2020Assignee: Continental Automotive GmbHInventors: Gerd Roesel, Wendelin Kluegl
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Patent number: 10774800Abstract: The present disclosure relates to a nozzle body for a fuel injection valve, the nozzle body including a cavity and an injection channel for dispensing fuel from the cavity. The injection channel includes a first section and a second section downstream of the first section, the first and second sections having a common interface. The first section extends from a fuel inlet opening to a second opening disposed at the common interface. The cross-sectional area of the first section monotonically decreases from the fuel inlet opening to the common interface. The cross-sectional area of the second section monotonically increases from the common interface to the fuel outlet opening.Type: GrantFiled: December 3, 2014Date of Patent: September 15, 2020Assignee: CONTINENTAL AUTOMOTIVE GMBHInventors: Antonio Agresta, Luca Gestri, Eberhard Kull, Marco Saliu, Hong Zhang, Gerd Roesel, Erwin Achleitner
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Patent number: 10605191Abstract: A method for determining an injection quantity of a fuel injector determines a first time at which an injection process of the fuel injector starts, a second time at which the injection process of the fuel injector ends, calculates a model on the basis of the first time and the second time, which model represents the position of a nozzle needle of the fuel injector as a function of the time, and calculates the quantity of fuel to inject.Type: GrantFiled: March 27, 2018Date of Patent: March 31, 2020Assignee: Vitesco Technologies GmbHInventors: Christian Hauser, Gerd Roesel, Markus Stutika
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Patent number: 10330068Abstract: A method for determining the movement behavior of a fuel injector having a coil drive includes: (a) applying an electrical excitation to a coil of the coil drive, which prompts an opening movement of a valve needle; (b) recording the temporal progression of a first electrical measurement variable of the coil; (c) determining the time when the opening movement ends based on the recorded temporal progression of the first electrical measurement variable; (d) modifying the electrical excitation of the coil such that the valve needle performs a closing movement; (e) recording the temporal progression of a second electrical measurement variable of the coil; and (f) determining the time when the closing movement ends based on the recorded temporal progression of the second electrical measurement variable. One of the two measurement variables is the voltage present at the coil and the other is the intensity of current flowing through the coil.Type: GrantFiled: March 27, 2013Date of Patent: June 25, 2019Assignee: CONTINENTAL AUTOMOTIVE GMBHInventors: Frank Denk, Gerd Roesel
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Patent number: 10309331Abstract: The present disclosure generally relates to internal combustion engines. The teachings thereof may be embodied in methods for the measuring of a feedback signal generated by the movement dynamics of a fuel injector in operation. A method may include: (a) generating an electrical test pulse; (b) feeding the test pulse into an actuation line connecting the output stage to the injector to an electric drive of the injector; (c) measuring an electrical response pulse generated by the actuation line in response to the test pulse; (d) identifying a characteristic feature of the measured response pulse; (e) transferring the feature to a control and evaluation unit; (f) evaluating the feature; and (g) acquiring the characteristic information item about the measuring channel based on the evaluation of the transferred characteristic feature.Type: GrantFiled: March 31, 2015Date of Patent: June 4, 2019Assignee: CONTINENTAL AUTOMOTIVE GMBHInventors: Christian Hauser, Gerd Roesel, Markus Stutika
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Publication number: 20190136735Abstract: A metering device for metering water or an aqueous solution, such as an injector for metering a reducing agent liquid into an exhaust gas stream of a combustion system or an injector for metering water or aqueous solution into a combustion chamber or into an intake manifold of an internal combustion engine. The metering device has an inlet and an outlet for the water or aqueous solution and a shut-off device which is arranged between the inlet and the outlet. At least one electrically operated heating element is arranged in the region of the shut-off device so as to heat and avoid freezing of the liquid.Type: ApplicationFiled: December 31, 2018Publication date: May 9, 2019Inventors: GERD ROESEL, WENDELIN KLUEGL
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Patent number: 10174701Abstract: A method for detecting the commencement of opening of the nozzle needle of an injector of an injection system. In the detection method, the coil of the solenoid injector has a voltage applied to it which is so low that the armature is moved toward the nozzle needle at such a low speed that the abutment causes a stoppage of the armature movement, without the nozzle needle being opened. In this case, the idle travel is overcome, but no injection process is initiated. The abutment of the armature against the nozzle needle is detected, in the current profile, as the commencement of opening of the nozzle needle.Type: GrantFiled: March 5, 2015Date of Patent: January 8, 2019Assignee: Continental Automotive GmbHInventors: Frank Denk, Nikolay Belyaev, Christian Hauser, Anatoliy Lyubar, Gerd Roesel, Markus Stutika
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Publication number: 20180216560Abstract: A method for determining an injection quantity of a fuel injector determines a first time at which an injection process of the fuel injector starts, a second time at which the injection process of the fuel injector ends, calculates a model on the basis of the first time and the second time, which model represents the position of a nozzle needle of the fuel injector as a function of the time, and calculates the quantity of fuel to inject.Type: ApplicationFiled: March 27, 2018Publication date: August 2, 2018Applicant: Continental Automotive GmbHInventors: Christian HAUSER, Gerd ROESEL, Markus STUTIKA
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Publication number: 20170114746Abstract: A method for detecting the commencement of opening of the nozzle needle of an injector of an injection system. In the detection method, the coil of the solenoid injector has a voltage applied to it which is so low that the armature is moved toward the nozzle needle at such a low speed that the abutment causes a stoppage of the armature movement, without the nozzle needle being opened. In this case, the idle travel is overcome, but no injection process is initiated. The abutment of the armature against the nozzle needle is detected, in the current profile, as the commencement of opening of the nozzle needle.Type: ApplicationFiled: March 5, 2015Publication date: April 27, 2017Inventors: Frank DENK, Nikolay BELYAEV, Christian HAUSER, Anatoliy LYUBAR, Gerd ROESEL, Markus STUTIKA
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Publication number: 20170089288Abstract: The present disclosure generally relates to internal combustion engines. The teachings thereof may be embodied in methods for the measuring of a feedback signal generated by the movement dynamics of a fuel injector in operation. A method may include: (a) generating an electrical test pulse; (b) feeding the test pulse into an actuation line connecting the output stage to the injector to an electric drive of the injector; (c) measuring an electrical response pulse generated by the actuation line in response to the test pulse; (d) identifying a characteristic feature of the measured response pulse; (e) transferring the feature to a control and evaluation unit; (f) evaluating the feature; and (g) acquiring the characteristic information item about the measuring channel based on the evaluation of the transferred characteristic feature.Type: ApplicationFiled: March 31, 2015Publication date: March 30, 2017Applicant: Continental Automotive GmbHInventors: Christian Hauser, Gerd Roesel, Markus Stutika
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Publication number: 20160319792Abstract: The present disclosure relates to a nozzle body for a fuel injection valve, the nozzle body including a cavity and an injection channel for dispensing fuel from the cavity. The injection channel includes a first section and a second section downstream of the first section, the first and second sections having a common interface. The first section extends from a fuel inlet opening to a second opening disposed at the common interface. The cross-sectional area of the first section monotonically decreases from the fuel inlet opening to the common interface. The cross-sectional area of the second section monotonically increases from the common interface to the fuel outlet opening.Type: ApplicationFiled: December 3, 2014Publication date: November 3, 2016Applicant: Continental Automotive GmbHInventors: Antonio Agresta, Luca Gestri, Eberhard Kull, Marco Saliu, Hong Zhang, Gerd Roesel, Erwin Achleitner
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Patent number: 7997257Abstract: For operating a internal combustion engine a first characteristic value is determined depending on a distance integral of at least a portion of a control signal of an oxygen sensor control based on control reference signal characteristics across a given time period. Depending on the first characteristic value (KW—1) a quality value (GW—1) is determined. Depending on the quality value (GW1) either the existence or the non existence of an error of the exhaust sensor is detected.Type: GrantFiled: March 13, 2009Date of Patent: August 16, 2011Assignee: Continental Automotive GmbHInventors: Krzysztol Korbel, Gerd Roesel, Nobert Sieber
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Publication number: 20090248280Abstract: For operating a internal combustion engine a first characteristic value is determined depending on a distance integral of at least a portion of a control signal of an oxygen sensor control based on control reference signal characteristics across a given time period. Depending on the first characteristic value (KW—1) a quality value (GW—1) is determined. Depending on the quality value (GW1) either the existence or the non existence of an error of the exhaust sensor is detected.Type: ApplicationFiled: March 13, 2009Publication date: October 1, 2009Applicant: Continental Automotive GMBHInventors: Krzysztof Korbel, Gerd Roesel, Norbert Sieber
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Patent number: 6550307Abstract: A process for cleaning exhaust gas flow from an internal combustion engine using a catalyst, a lambda probe is disposed in the exhaust gas flow upstream from the catalyst and is connected to a controller that actuates the lambda probe, the controller receives a raw signal output from the lambda probe and forms a measurement signal that is supplied to control the internal combustion engine. The process includes regulating operation of the internal combustion engine such that a predetermined value of the lambda probe corresponds to a certain level of the measurement signal. Trimming the certain level of the measurement signal by a set value determined with an additional measuring pickup located downstream of the catalyst is performed, the trimming corrects the certain level of the measurement signal that corresponds to the predetermined value of the lambda probe.Type: GrantFiled: December 6, 1999Date of Patent: April 22, 2003Assignee: Siemens AktiengesellschaftInventors: Hong Zhang, Gerd Roesel
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Patent number: 6336352Abstract: A process for cleaning exhaust gas flow from an internal combustion engine using a catalyst, a lambda probe is disposed in the exhaust gas flow upstream from the catalyst and is connected to a controller that actuates the lambda probe, the controller receives a raw signal output from the lambda probe and forms a measurement signal that is supplied to control the internal combustion engine. The process includes regulating operation of the internal combustion engine such that a predetermined value of the lambda probe corresponds to a certain level of the measurement signal. Trimming the certain level of the measurement signal by a set value determined with an additional measuring pickup located downstream of the catalyst is performed, the trimming corrects the certain level of the measurement signal that corresponds to the predetermined value of the lambda probe.Type: GrantFiled: December 6, 1999Date of Patent: January 8, 2002Assignee: Siemens AktiengesellschaftInventors: Hong Zhang, Gerd Roesel