Patents by Inventor Lars JORGENSEN
Lars JORGENSEN 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: 20240289723Abstract: The system for validating the use of an activity area comprises an activity area having at least one activity detector adapted for collecting activity data. A computer is configured for determining, based on the activity data, an activity level in one or more zones in said activity area, comparing the activity level in said one or more zones onto a known mapping of said activity area, and determining whether the activity level in said one of more zones is above a predetermined activity value based on said known mapping.Type: ApplicationFiled: June 13, 2022Publication date: August 29, 2024Inventors: Carsten JØRGENSEN, Lars PEHRSON
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Publication number: 20230407195Abstract: A process and a system for conversion of a hydrocarbonaceous feed comprising at least 10 ppmw and less than 10000 ppmw of one or more halides, and at least 20 ppmw and less than 10000 ppmw organically bound nitrogen, to a hydrocarbon product stream by hydrotreatment, in the presence of a material catalytically active in hydrotreatment and an amount of hydrogen, wherein said hydrocarbon product stream comprises an amount of ionic halides and an amount of ammonia, said process including: a) separating in a first separation step at a first separation temperature the mixed product stream to provide an overhead stream and a bottoms stream, b) combining the overhead stream with an amount of wash water and c) separating in a second separation step the combined overhead stream and wash water in a non-polar stream of hydrocarbon product and a polar stream of wash water comprising ammonium halides.Type: ApplicationFiled: November 11, 2021Publication date: December 21, 2023Applicant: TOPSOE A/SInventor: Lars JØRGENSEN
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Publication number: 20220306952Abstract: A process for conversion of a hydro-carbonaceous feed including ionic halides to a hydrocarbon product stream by hydrotreatment, wherein the stream is combined with wash water, the weight ratio between wash water and hydrocarbon product stream water is between 1:10 and 10:1, wherein the combined hydrocarbon product stream and wash water are separated in a non-polar stream of hydrocarbon product and a polar stream of wash water including ionic halides, such that from 50% of the ionic halides are transferred from the hydrocarbon product stream to the polar stream of wash water including ionic halides, wherein the polar stream of wash water is directed to a means of concentrating, to provide a stream of purified water and a stream of brine having a concentration of ionic halides being more than 2 times and less than 100 times above that of the polar stream of waste water including ionic halides.Type: ApplicationFiled: June 19, 2020Publication date: September 29, 2022Applicant: HALDOR TOPSØE A/SInventor: Lars JØRGENSEN
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Publication number: 20220298428Abstract: A halides removal washing system for absorbing halides from a process gas within a process gas duct comprising a wash water injection nozzle and anti-precipitation means arranged around the nozzle, injection pipe and within the process gas duct.Type: ApplicationFiled: October 28, 2020Publication date: September 22, 2022Applicant: Haldor Topsøe A/SInventors: Klaus Risbjerg Jarlkov, Lars Jørgensen
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Patent number: 11377425Abstract: The present invention relates to a compound according to formula I and pharmaceutically acceptable salts, hydrates, or solvates thereof. The invention further relates to said compounds for use in therapy, to pharmaceutical compositions comprising said compounds, to methods of treating diseases, e.g. dermal diseases, with said compounds, and to the use of said compounds in the manufacture of medicaments.Type: GrantFiled: December 19, 2019Date of Patent: July 5, 2022Assignee: Leo Pharma A/SInventors: Kevin Neil Dack, Xifu Liang, Mogens Larsen, Mark Andrews, Alan Stuart Jessiman, Mia Nørreskov Burhardt, Patrick Stephen Johnson, Peter Andersen, Lars Jørgensen
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Publication number: 20220204869Abstract: A process plant and process for conversion of a hydrocarbonaceous feed, having a feed temperature, to a hydrocarbonaceous effluent, having an effluent temperature, by hydrotreatment, in the presence of a material catalytically active in hydrotreatment and an amount of hydrogen, wherein the conversion is exothermal and wherein an amount of the effluent will solidify at a solidification temperature above the feed temperature and below the effluent temperature, and wherein the feed is preheated by heat exchange, utilizing thermal energy from said effluent, wherein the heat exchange is mediated by a fluid heat exchange medium being physically separated from the feed and the effluent and having a temperature above the solidification temperature, with the associated benefit of such a process being highly energy effective, while avoiding solidification in the process lines, especially when hydrotreating feedstocks including halides.Type: ApplicationFiled: June 19, 2020Publication date: June 30, 2022Applicant: HALDOR TOPSØE A/SInventor: Lars JØRGENSEN
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Publication number: 20200355160Abstract: This invention relates to a bulkhead unit, a wind turbine blade comprising the bulkhead unit, a lifting device and methods of assembling and installing the bulkhead unit in the wind turbine blade. The bulkhead unit comprises a bulkhead element substantially extending in a radial direction and a frame structure attached to the bulkhead element. The frame structure provides support for the bulkhead element and additional components mounted to the frame structure. The frame structure comprises a plurality of frame elements which are interconnected to form a number of areas that are aligned with corresponding openings in the bulkhead element. The lifting device is used to lift the bulkhead unit into position and fix the bulkhead unit relative to the blade shell.Type: ApplicationFiled: August 21, 2018Publication date: November 12, 2020Inventors: Damien ROGERS, Søren STEFFENSEN, Johan Bergholt SKOV, Torben LINDBY, Lars JØRGENSEN, Casper KILDEGAARD
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Patent number: 10015028Abstract: A system and method for reducing peak to average power ratio in a wireless communication system. A wireless communication system includes a radio frequency wireless transmitter that includes signal peak reduction circuitry configured to reduce peak to average power ratio of a signal to be transmitted by reducing amplitude of the signal to be transmitted that is greater than a predetermined amplitude. The signal peak reduction circuitry includes a bit inverter configured to invert a bit of a symbol identified as causing the amplitude of the signal to exceed the predetermined amplitude. The bit inverter is also configured to select the bit to invert such that inversion of the bit reduces the amplitude of the signal, and such that forward error correction in a receiver wirelessly coupled to the transmitter restores the bit to a pre-inversion value.Type: GrantFiled: September 22, 2014Date of Patent: July 3, 2018Assignee: TEXAS INSTRUMENTS INCORPORATEDInventors: Lars Jorgensen, Zigang Yang, Hardik Prakash Gandhi
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Patent number: 9374112Abstract: A digital pre-distortion component includes: a first capturing component that captures a first sample set of data; a first generating component that generates a first change matrix associated with a portion of the first sample set of data; a first memory component that stores the first change matrix; a second capturing component that captures a second sample set of data; a second generating component that generates a second change matrix associated with a portion of the second sample set of data; a second memory component that stores the second change matrix; a third capturing component that captures a third sample set of data; a third generating component that generates a third change matrix associated with a portion of the third sample set of data; a comparing component that compares the third change matrix with the first change matrix to obtain a first comparison, and compares the third change matrix with the second change matrix to obtain a second comparison; and an adapting component that adapts the digiType: GrantFiled: September 2, 2014Date of Patent: June 21, 2016Assignee: TEXAS INSTRUMENTS INCORPORATEDInventors: Zigang Yang, Raul Blazquez, Hardik Prakash Gandhi, Xiaohan Chen, Lars Jorgensen
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Publication number: 20160107977Abstract: The present invention relates generally to methods of synthesis of diterpene heterocylic compounds. More particularly, the present invention relates to efficient methods of synthesis of ingenol (Formula (21), CAS 30220-46-3), from a compound of formula (1). The present invention also provides for various advantageous intermediates along the synthetic route of ingenol. Efficient synthesis of ingenol is important in the design and synthesis of related analogues, such as ingenol-3-angelate.Type: ApplicationFiled: May 28, 2014Publication date: April 21, 2016Inventors: Phillipe S. BARAN, Lars JØRGENSEN, Christian A. KUTTRUFF, Steven J. MCKERRALL, Chien-Hung YEH
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Publication number: 20160065249Abstract: A digital pre-distortion component includes: a first capturing component that captures a first sample set of data; a first generating component that generates a first change matrix associated with a portion of the first sample set of data; a first memory component that stores the first change matrix; a second capturing component that captures a second sample set of data; a second generating component that generates a second change matrix associated with a portion of the second sample set of data; a second memory component that stores the second change matrix; a third capturing component that captures a third sample set of data; a third generating component that generates a third change matrix associated with a portion of the third sample set of data; a comparing component that compares the third change matrix with the first change matrix to obtain a first comparison, and compares the third change matrix with the second change matrix to obtain a second comparison; and an adapting component that adapts the digiType: ApplicationFiled: September 2, 2014Publication date: March 3, 2016Inventors: Zigang Yang, Raul Blazquez, Hardik Prakash Gandhi, Xiaohan Chen, Lars Jorgensen
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Patent number: 9246510Abstract: A method includes receiving input blocks each having multiple bits to be transmitted. The method also includes applying a first encoding scheme to a first subset of the bits in the input blocks to generate first encoded bits and applying a second encoding scheme to a second subset of the bits in the input blocks to generate second encoded bits. The second encoding scheme has lower overhead than the first encoding scheme. The method further includes generating symbols using the first and second encoded bits. The first encoded bits include two or more first bits per symbol of each output block, and the second encoded bits include one or more second bits per symbol of each output block.Type: GrantFiled: September 30, 2014Date of Patent: January 26, 2016Assignee: TEXAS INSTRUMENTS INCORPORATEDInventors: Mohamed F. Mansour, Lars Jorgensen
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Publication number: 20160015703Abstract: A composition for oromucosal delivery of at least one active ingredient, more particularly a lipid nano-microdelivery system comprising a nicotine component and/or a flavour component, wherein the nicotine component may be delivered to the oral cavity via absorption through the mucosal membranes thereof and/or wherein the flavour component may be delivered to the oral mucosa by controlled release.Type: ApplicationFiled: March 6, 2014Publication date: January 21, 2016Inventors: Ioannis S. Chronakis, Lars Jorgensen, Maria Ahlm Mattebjerg
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Patent number: 9124324Abstract: A method of predistorting an input signal (902) for an amplifier is disclosed (FIG. 9). The method includes predistorting the input signal with a first set of parameters (FDPD) and a second set of parameters (CDPD) at a first time (904). The first set of parameters is updated at a second time (914). The second set of parameters is updated separately from the first set of parameters at a third time (920).Type: GrantFiled: April 6, 2015Date of Patent: September 1, 2015Assignee: TEXAS INSTRUMENTS INCORPORATEDInventors: Hardik Prakash Gandhi, Zigang Yang, Xiaohan Chen, Raul Blazquez, Lars Jorgensen, Hongzhi Zhao, Jie Yang
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Publication number: 20150214988Abstract: A method of predistorting an input signal (902) for an amplifier is disclosed (FIG. 9). The method includes predistorting the input signal with a first set of parameters (FDPD) and a second set of parameters (CDPD) at a first time (904). The first set of parameters is updated at a second time (914). The second set of parameters is updated separately from the first set of parameters at a third time (920).Type: ApplicationFiled: April 6, 2015Publication date: July 30, 2015Inventors: Hardik Prakash Gandhi, Zigang Yang, Xiaohan Chen, Raul Blazquez, Lars Jorgensen, Hongzhi Zhao, Jie Yang
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Patent number: 9059881Abstract: Embodiments of the invention provide a method of decoding of hexagonal constellations. The decoding methods exploit the inherent structure of the hexagonal grid to eliminate/minimize the requirements for distance computations. A constellation which has unused constellation points is received. A plurality of lookup tables is used for indicating whether a particular constellation point is used. The lookup tables are indexed using the two integers u and v. An initial estimate ? and v is found. The Euclidean distance to the immediate neighbors resulting in the immediate upper and lower integers for ? and v is computed. From the distance to the nearest neighbor, the log-likelihood ratio value is computed.Type: GrantFiled: October 10, 2013Date of Patent: June 16, 2015Assignee: TEXAS INSTRUMENTS INCORPORATEDInventors: Mohamed Farouk Mansour, Lars Jorgensen
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Patent number: 9001928Abstract: A method of predistorting an input signal (902) for an amplifier is disclosed (FIG. 9). The method includes predistorting the input signal with a first set of parameters (FDPD) and a second set of parameters (CDPD) at a first time (904). The first set of parameters is updated at a second time (914). The second set of parameters is updated separately from the first set of parameters at a third time (920).Type: GrantFiled: March 28, 2013Date of Patent: April 7, 2015Assignee: Texas Instruments IncorporatedInventors: Hardik Prakash Gandhi, Zigang Yang, Xiaohan Chen, Raul Blazquez, Lars Jorgensen, Hongzhi Zhao, Jie Yang
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Publication number: 20150092879Abstract: A method includes receiving input blocks each having multiple bits to be transmitted. The method also includes applying a first encoding scheme to a first subset of the bits in the input blocks to generate first encoded bits and applying a second encoding scheme to a second subset of the bits in the input blocks to generate second encoded bits. The second encoding scheme has lower overhead than the first encoding scheme. The method further includes generating symbols using the first and second encoded bits. The first encoded bits include two or more first bits per symbol of each output block, and the second encoded bits include one or more second bits per symbol of each output block.Type: ApplicationFiled: September 30, 2014Publication date: April 2, 2015Inventors: Mohamed F. Mansour, Lars Jorgensen
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Publication number: 20150085748Abstract: A system and method for reducing peak to average power ratio in a wireless communication system. A wireless communication system includes a radio frequency wireless transmitter that includes signal peak reduction circuitry configured to reduce peak to average power ratio of a signal to be transmitted by reducing amplitude of the signal to be transmitted that is greater than a predetermined amplitude. The signal peak reduction circuitry includes a bit inverter configured to invert a bit of a symbol identified as causing the amplitude of the signal to exceed the predetermined amplitude. The bit inverter is also configured to select the bit to invert such that inversion of the bit reduces the amplitude of the signal, and such that forward error correction in a receiver wirelessly coupled to the transmitter restores the bit to a pre-inversion value.Type: ApplicationFiled: September 22, 2014Publication date: March 26, 2015Inventors: Lars Jorgensen, Zigang Yang, Hardik Prakash Gandhi
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Patent number: 8971464Abstract: A method to form a CFR cancellation filter for signals with dynamic power and frequency distribution by estimating the filter at the rate required by the input signal's dynamics. For mixed mode systems (for example CDMA and LTE) the CFR is computed for each stream, and combined to form the final filter.Type: GrantFiled: November 21, 2012Date of Patent: March 3, 2015Assignee: Texas Instruments IncorporatedInventors: Hardik Prakash Gandhi, Zigang Yang, Lars Jorgensen, Prasad Chivakula