Patents by Inventor Joachim Schiessling
Joachim Schiessling 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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Publication number: 20240328894Abstract: The present disclosure relates to a method for monitoring a power device. The method includes obtaining at least one frequency spectrum of at least one physical component of the power device, wherein the at least one frequency spectrum comprises at least one eigenfrequency of the at least one physical component of the power device; measuring, using at least one sensor, a vibroacoustic signal of the power device; and determining a signal contribution of the at least one physical component of the power device to the vibroacoustic signal based on the obtained at least one frequency spectrum. The present disclosure also relates to a respective monitoring device and a system including at least one sensor and a monitoring device.Type: ApplicationFiled: October 5, 2022Publication date: October 3, 2024Inventors: Niklas Gustavsson, Tommy Larsson, Nilanga Abeywickrama, Joachim Schiessling
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Patent number: 12046423Abstract: The present disclosure relates to a wound electrical component comprising a wound body comprising a plurality of wound layers of a web of an electrically insulating material around a longitudinal axis of the body. The wound body comprises a plurality of electrically conducting layers of an electrically conducting material, each printed onto a respective separate area of the web in the wound body. An edge zone of at least one of the plurality of electrically conducting layers is connected to a printed high permittivity layer of a high permittivity material along said edge zone such that at least a part of the high permittivity layer extends, printed on the web, beyond the edge zone.Type: GrantFiled: May 29, 2019Date of Patent: July 23, 2024Assignee: HITACHI ENERGY LTDInventors: Cecilia Forssen, Harald Martini, Joachim Schiessling, Nils Lavesson, Peter Dyreklev, Mats Sandberg
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Patent number: 11769626Abstract: An electromagnetic device comprises an enclosure, at least one winding in the interior of the enclosure, at least one wireless sensor attached to the winding for sensing at least one property or deficiency of the electromagnetic device and at least one active communication unit comprising transceiving circuitry and at least one antenna, wherein the transceiving circuitry is placed on the exterior of the enclosure and the least one antenna is placed inside the enclosure for communication with the at least one sensor, wherein the at least one sensor comprises at least one sensor attached to the winding, and wherein the at least one sensor attached to the winding is a printed electronic sensor comprising electronics printed on an insulating substrate, where the substrate faces the at least one winding.Type: GrantFiled: January 18, 2021Date of Patent: September 26, 2023Assignee: Hitachi Energy Switzerland AGInventors: Joachim Schiessling, Cecilia Forssén
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Publication number: 20230178297Abstract: An electromagnetic device comprises an enclosure, at least one winding in the interior of the enclosure, at least one wireless sensor attached to the winding for sensing at least one property or deficiency of the electromagnetic device and at least one active communication unit comprising transceiving circuitry and at least one antenna, wherein the transceiving circuitry is placed on the exterior of the enclosure and the least one antenna is placed inside the enclosure for communication with the at least one sensor, wherein the at least one sensor comprises at least one sensor attached to the winding, and wherein the at least one sensor attached to the winding is a printed electronic sensor comprising electronics printed on an insulating substrate, where the substrate faces the at least one winding.Type: ApplicationFiled: January 18, 2021Publication date: June 8, 2023Inventors: Joachim Schiessling, Cecilia Forssén
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Patent number: 11366025Abstract: A high voltage system including: a high voltage bushing having a bushing body configured to be assembled with a tank filled with a dielectric liquid wherein the bushing body has a cavity, and the bushing includes a dielectric liquid level sensor configured to measure a dielectric liquid level in the cavity, and a temperature distribution determining device configured to determine a heat distribution in the bushing based on the dielectric liquid level measured by the dielectric liquid level sensor.Type: GrantFiled: February 28, 2020Date of Patent: June 21, 2022Assignee: HITACHI ENERGY SWITZERLAND AGInventors: Tor Laneryd, Joachim Schiessling
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Patent number: 11269002Abstract: A high-voltage lead-through device includes an insulator body having a solid exterior and including insulation, a main conductor passing therethrough, a sensor adjacent the main conductor inside the insulator body measuring a physical property of the device and a communication unit adjacent the main conductor outside the insulator body, wherein the main conductor has a first electric potential, a section of the solid exterior of the insulator body faces a second electric potential, the communication unit is connected to the sensor using a signal conductor as a first electrical communication medium and the communication unit employs a different communication medium for communicating with a data distribution device at a third electric potential.Type: GrantFiled: November 15, 2019Date of Patent: March 8, 2022Assignee: Hitachi Energy Switzerland AGInventors: Cecilia Forssén, Joachim Schiessling, Peter Sjöberg, Andrew Maxwell
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Publication number: 20220042858Abstract: A high voltage system including: a high voltage bushing having a bushing body configured to be assembled with a tank filled with a dielectric liquid wherein the bushing body has a cavity, and the bushing includes a dielectric liquid level sensor configured to measure a dielectric liquid level in the cavity, and a temperature distribution determining device configured to determine a heat distribution in the bushing based on the dielectric liquid level measured by the dielectric liquid level sensor.Type: ApplicationFiled: February 28, 2020Publication date: February 10, 2022Applicant: ABB Power Grids Switzerland AGInventors: Tor LANERYD, Joachim SCHIESSLING
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Publication number: 20210356509Abstract: A high-voltage lead-through device includes an insulator body having a solid exterior and including insulation, a main conductor passing therethrough, a sensor adjacent the main conductor inside the insulator body measuring a physical property of the device and a communication unit adjacent the main conductor outside the insulator body, wherein the main conductor has a first electric potential, a section of the solid exterior of the insulator body faces a second electric potential, the communication unit is connected to the sensor using a signal conductor as a first electrical communication medium and the communication unit employs a different communication medium for communicating with a data distribution device at a third electric potential.Type: ApplicationFiled: November 15, 2019Publication date: November 18, 2021Inventors: Cecilia Forssén, Joachim Schiessling, Peter Sjöberg, Andrew Maxwell
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Patent number: 11137293Abstract: A wound electrical component includes a wound body comprising a plurality of wound layers of an electrically insulating material around a longitudinal axis of the body. The component also includes at least one printed electronics sensor consisting of printed circuits on a flexible substrate. Each sensor is interleaved between two of the wound layers of the wound body.Type: GrantFiled: January 21, 2019Date of Patent: October 5, 2021Assignee: ABB Power Grids Switzerland AGInventors: Andrew Maxwell, Cecilia Forssen, Joachim Schiessling
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Publication number: 20210225595Abstract: The present disclosure relates to a wound electrical component comprising a wound body comprising a plurality of wound layers of a web of an electrically insulating material around a longitudinal axis of the body. The wound body comprises a plurality of electrically conducting layers of an electrically conducting material, each printed onto a respective separate area of the web in the wound body. An edge zone of at least one of the plurality of electrically conducting layers is connected to a printed high permittivity layer of a high permittivity material along said edge zone such that at least a part of the high permittivity layer extends, printed on the web, beyond the edge zone.Type: ApplicationFiled: May 29, 2019Publication date: July 22, 2021Inventors: Cecilia Forssen, Harald Martini, Joachim Schiessling, Nils Lavesson, Peter Dyreklev, Mats Sandberg
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Patent number: 11045998Abstract: A method for producing an electrical power device having an insulator. The method includes, by means of additive manufacturing, applying a polymeric insulating material forming part of the device. The method also includes, in a subsequent consolidation step, subjecting the insulator to elevated temperature and pressure during a predetermined time period to consolidate the insulator.Type: GrantFiled: February 6, 2018Date of Patent: June 29, 2021Assignee: ABB Power Grids Switzerland AGInventors: Harald Martini, Joachim Schiessling, Nils Lavesson, Cecilia Forssen, Håkan Faleke, Julia Viertel, Lukasz Matysiak, Jan Czyzewski, Roger Hedlund, Jens Rocks
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Patent number: 10937597Abstract: A high voltage capacitive device having: a non-impregnatable film having a plurality of physically separated regions each defined by a conductive coating provided on the non-impregnatable film, wherein the non-impregnatable film is wound in a plurality of turns to form a plurality of layers, wherein the regions are arranged in overlapping layers in the radial direction, wherein the non-impregnatable film forms a dielectric between adjacent layers of the regions, and wherein the conductive coating of at least some of the regions is provided with a plurality of first radial openings extending through the conductive coating to the non-impregnatable film, which delimits a radial extension of each first radial opening.Type: GrantFiled: June 19, 2018Date of Patent: March 2, 2021Assignee: ABB Schweiz AGInventors: Cecilia Forssen, Francisco Penayo, Joachim Schiessling, Nils Lavesson, Peter Sjöberg, Roger Hedlund, Ylva Granbom, Peter Dyreklev, Staffan Nordlinder
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Publication number: 20200378836Abstract: A wound electrical component includes a wound body comprising a plurality of wound layers of an electrically insulating material around a longitudinal axis of the body. The component also includes at least one printed electronics sensor consisting of printed circuits on a flexible substrate. Each sensor is interleaved between two of the wound layers of the wound body.Type: ApplicationFiled: January 21, 2019Publication date: December 3, 2020Inventors: Andrew MAXWELL, Cecilia FORSSEN, Joachim SCHIESSLING
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Publication number: 20200126732Abstract: A high voltage capacitive device having: a non-impregnatable film having a plurality of physically separated regions each defined by a conductive coating provided on the non-impregnatable film, wherein the non-impregnatable film is wound in a plurality of turns to form a plurality of layers, wherein the regions are arranged in overlapping layers in the radial direction, wherein the non-impregnatable film forms a dielectric between adjacent layers of the regions, and wherein the conductive coating of at least some of the regions is provided with a plurality of first radial openings extending through the conductive coating to the non-impregnatable film, which delimits a radial extension of each first radial opening.Type: ApplicationFiled: June 19, 2018Publication date: April 23, 2020Applicant: ABB Schweiz AGInventors: Cecilia Forssen, Francisco Penayo, Joachim Schiessling, Nils Lavesson, Peter Sjöberg, Roger Hedlund, Ylva Granbom, Peter Dyreklev, Staffan Nordlinder
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Publication number: 20190389126Abstract: A method for producing an electrical power device having an insulator. The method includes, by means of additive manufacturing, applying a polymeric insulating material forming part of the device. The method also includes, in a subsequent consolidation step, subjecting the insulator to elevated temperature and pressure during a predetermined time period to consolidate the insulator.Type: ApplicationFiled: February 6, 2018Publication date: December 26, 2019Inventors: Harald Martini, Joachim Schiessling, Nils Lavesson, Cecilia Forssen, Håkan Faleke, Julia Viertel, Lukasz Matysiak, Jan Czyzewski, Roger Hedlund, Jens Rocks
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Patent number: 9870847Abstract: The method relates to an electric device comprising at least two electrodes which are separated by dielectric part. At least one of said electrodes is arranged to be at a floating potential. The dielectric part comprises at least one turn of at least one non-impregnatable electrically insulating film between two neighboring electrodes. The electrodes are bonded to adjacent turns of non-impregnatable insulating film, and adjacent turns of non-impregnatable insulating film, if any, are bonded to each other, so that the turns of non-impregnatable insulating film and the electrodes form a solid body. The invention further relates to a method of manufacturing an electric device, where bonding of at least one turn is performed upon forming of said turn, so that the bonding of said turn to the turn/electrode underneath will commence before said turn has been completely covered by the next turn.Type: GrantFiled: December 5, 2013Date of Patent: January 16, 2018Assignee: ABB Schweiz AGInventors: Roger Hedlund, Peter Sjöberg, Håkan Faleke, Nils Lavesson, Harald Martini, Joachim Schiessling
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Publication number: 20150325341Abstract: The method relates to an electric device comprising at least two electrodes which are separated by dielectric part. At least one of said electrodes is arranged to be at a floating potential. The dielectric part comprises at least one turn of at least one non-impregnatable electrically insulating film between two neighbouring electrodes. The electrodes are bonded to adjacent turns of non-impregnatable insulating film, and adjacent turns of non-impregnatable insulating film, if any, are bonded to each other, so that the turns of non-impregnatable insulating film and the electrodes form a solid body. The invention further relates to a method of manufacturing an electric device, where bonding of at least one turn is performed upon forming of said turn, so that the bonding of said turn to the turn/electrode underneath will commence before said turn has been completely covered by the next turn.Type: ApplicationFiled: December 5, 2013Publication date: November 12, 2015Inventors: Roger Hedlund, Peter Sjöberg, Håkan Faleke, Nils Lavesson, Harald Martini, Joachim Schiessling
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Patent number: 9167731Abstract: A high voltage shielding device including a main body having an enclosing outer solid insulating wall, an outer electrode arranged on the solid insulating wall providing a first level of insulation to the outer electrode, and a first inner electrode which is uninsulated or has a coating providing a second level of insulation, which second level of insulation is lower than the first level of insulation. The first inner electrode is oriented relative the outer electrode in such a way that the first inner electrode mainly shields a component of an electric field which is perpendicular to a component of an electric field mainly shielded by the outer electrode.Type: GrantFiled: January 8, 2013Date of Patent: October 20, 2015Assignee: ABB Reasearch Ltd.Inventors: Mats Berglund, Uno Gafvert, Ralf Hartings, Tor Laneryd, Tommy Larsson, Joachim Schiessling, Peter Astrand
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Patent number: 9013260Abstract: A cable for winding of an electromagnetic device. The cable includes a conductor, and a layer including a magnetic material having a relative permeability in the range 2 to 100000, wherein the layer at least partly surrounds the conductor.Type: GrantFiled: October 7, 2013Date of Patent: April 21, 2015Assignee: ABB Research Ltd.Inventors: Christer Tornkvist, Goran Eriksson, Jan Hajek, Joachim Schiessling, Manoj Pradhan
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Publication number: 20140035712Abstract: A cable for winding of an electromagnetic device. The cable includes a conductor, and a layer including a magnetic material having a relative permeability in the range 2 to 100000, wherein the layer at least partly surrounds the conductor.Type: ApplicationFiled: October 7, 2013Publication date: February 6, 2014Inventors: Christer Thornkvist, Goran Eriksson, Jan Hajek, Joachim Schiessling, Manoj Pradhan