Patents by Inventor Robin Gupta
Robin Gupta 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: 20190081481Abstract: An electrical assembly includes a power converter having first and second DC terminals which are connectable to a DC electrical network. The power converter also includes converter limbs connected between the first and second DC terminals. Each converter limb includes an AC terminal that is connectable to a respective AC phase of a multi-phase AC electrical network. Each converter limb also includes limb portions, each connected between a corresponding AC terminal and a respective one of the first and second DC terminals. Each limb portion includes switching element(s). The electrical assembly includes a single grounding circuit having a reactor configured to provide a current path for alternating current with a high impedance to ground and a current path for direct current with a low impedance to ground. The grounding circuit is arranged so that only one of the AC phases is connected to ground via the grounding circuit.Type: ApplicationFiled: February 23, 2017Publication date: March 14, 2019Inventors: Robin GUPTA, Robert WHITEHOUSE
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Patent number: 10218180Abstract: Methods and apparatus for controlling a voltage source converter to energize a DC link. A voltage order generating module generates a voltage order for controlling the voltage source converter to generate a DC voltage on the DC link. the voltage order is based on a time varying voltage reference signal. A voltage reference module, which may include a ramp generator generates the time varying voltage reference signal such that the rate of change of the voltage reference signal changes over time. The rate of change of the voltage reference signal may decrease over time, to become more gradual as the nominal operating voltage is reached to avoid over-voltages.Type: GrantFiled: February 19, 2016Date of Patent: February 26, 2019Assignee: GENERAL ELECTRIC TECHNOLOGY GMBHInventors: Robin Gupta, Carl Barker, Andrzej Adamczyk
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Publication number: 20180366942Abstract: A converter apparatus and methods of operation thereof are disclosed. In an example, a converter unit of a bipole converter apparatus comprising a neutral connection having a breaker switch is disclosed. In the event of a DC fault, the fault condition may be monitored and it is determined whether a breaker switch operation condition is met. The breaker switch is opened when the breaker switch operation condition is met. In one example, the breaker switch operation condition may comprise a current level.Type: ApplicationFiled: March 30, 2016Publication date: December 20, 2018Inventors: Robin GUPTA, Robert WHITEHOUSE, Carl BARKER
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Publication number: 20180241213Abstract: There is provided an electrical assembly for use in a power transmission network. The electrical assembly includes a converter including terminals for connection to an electrical network, where the first terminal is a DC terminal. The assembly also includes a DC power transmission medium connected to the DC terminal, and a circuit interruption device including switching element(s) and an energy absorption element, each switching element being switchable to divert a flow of current in the DC power transmission medium through the energy absorption element in order to reduce the flow of current in the DC power transmission medium; The assembly also includes a converter control unit programmed to operate the converter to control a DC voltage at the DC terminal in a leakage current reduction mode to control a voltage across the energy absorption element.Type: ApplicationFiled: August 18, 2016Publication date: August 23, 2018Inventors: Robin GUPTA, Robert Stephen WHITEHOUSE, Carl David BARKER
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Publication number: 20180145499Abstract: A bipolar DC power transmission scheme including first and second DC poles, each including a respective DC power transmission medium extending between first and second ends; a plurality of converters wherein each end of the transmission medium of each of the poles is operatively connected to at least one of the converters to form a rectifier and an inverter at opposite ends of the DC power transmission media; and a controller to operate at least one converter of one of the rectifier and inverter in a control mode and at least one converter of the other of the rectifier and inverter in a second control mode in response to a fault occurring on either of the poles. Additionally, the first control mode decreases and the second control mode increases the operating DC voltage of the or each corresponding converter from a normal operating voltage value.Type: ApplicationFiled: April 27, 2016Publication date: May 24, 2018Inventors: Robin GUPTA, Robert Stephen WHITEHOUSE, Carl David BARKER, Andrzej ADAMCZYK
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Publication number: 20180115164Abstract: Methods and apparatus for controlling a voltage source converter to energise a DC link. A voltage order generating module generates a voltage order for controlling the voltage source converter to generate a DC voltage on the DC link. the voltage order is based on a time varying voltage reference signal. A voltage reference module, which may include a ramp generator generates the time varying voltage reference signal such that the rate of change of the voltage reference signal changes over time. The rate of change of the voltage reference signal may decrease over time, to become more gradual as the nominal operating voltage is reached to avoid over-voltages.Type: ApplicationFiled: February 19, 2016Publication date: April 26, 2018Inventors: Robin GUPTA, Carl BARKER, Andrzej ADAMCZYK
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Publication number: 20180115152Abstract: A bipolar DC power transmission scheme comprises: DC poles, each including a respective power transmission medium extending between two ends; a plurality of converters, wherein each end of the power transmission medium of the first pole is respectively operatively connected to a converter, and each end of the power transmission medium of the second pole is respectively operatively connected to a converters; a controller programmed to block one or more of the converters in response to a fault occurring on either of the first and second poles; and a monitoring device configured to identify the faulty poles on which the fault has occurred, wherein the controller is further programmed to deblock the or each blocked converter connected to the other of the poles after the monitoring device has identified the faulty one of the poles on which the fault has occurred.Type: ApplicationFiled: April 26, 2016Publication date: April 26, 2018Applicant: General Electric Technology GmbHInventors: Robin GUPTA, Robert Stephen WHITEHOUSE
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Publication number: 20180115253Abstract: An assembly including a converter including first and second DC terminals connectable to the DC network and between which extends a converter limb. Each converter limb includes first and second portions separated by an AC terminal. Each portion includes a switching element for normal operation and a switching element and energy absorber for a bypass mode. The bypass mode causes current to bypass the energy absorber in the limb portion and flow through the energy absorber. The assembly also includes an AC circuit breaker which is openable to isolate the converter from the network. The electrical assembly includes a control unit that is a programmed to operate the energy absorption module within the converter in its bypass mode and following a DC fault to initiate opening of the AC circuit breaker then to operate in absorption mode to remove DC fault current within an augmented current path.Type: ApplicationFiled: March 17, 2016Publication date: April 26, 2018Applicant: General Electric Technology GmbHInventors: Robert Stephen WHITEHOUSE, Robin GUPTA, Andrzej ADAMCZYK
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Publication number: 20180076619Abstract: A method and apparatus for controlling a voltage source converter to energise a DC link. A voltage order generating module generates a voltage order for controlling the voltage source converter to generate a DC voltage on the DC link. An oscillation damping module monitors the DC current flow to determine an indication of current oscillation and the voltage order is based on a voltage reference signal which is modulated by the indication of current oscillation to provide oscillation damping.Type: ApplicationFiled: March 11, 2016Publication date: March 15, 2018Inventors: Robin GUPTA, Carl BARKER, Andrzej ADAMCZYK
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Publication number: 20180069469Abstract: A method and apparatus for controlling a fault blocking voltage source converter apparatus which is, in use, connected to an AC system and a DC system for power transmission, in the event of a DC side interruption operating the voltage source converter apparatus after identification of a need for a DC side interruption based on a voltage order, so as to extract at least some electrical energy stored in the connected DC system to the voltage source converter apparatus.Type: ApplicationFiled: March 30, 2016Publication date: March 8, 2018Inventors: Robin GUPTA, Carl BARKER, Robert WHITEHOUSE, Andrzej ADAMCZYK
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Publication number: 20170248506Abstract: Herein disclosed are apparatuses and methods related to coreflood testing apparatuses and methods for determining key physical properties of core specimens. More particularly, disclosed herein are coreflood inlet end-piece designs, coreflood testing systems and coreflood testing methods to enable simultaneous testing to obtain necessary data for determination for determining key physical properties of core specimens, which include the relative permeability and the capillary pressure, as well as, optionally the wettability of the core sample.Type: ApplicationFiled: February 10, 2017Publication date: August 31, 2017Inventors: Robin Gupta, Robert Longoria, Jeffrey D. Spitzenberger, David C. Laverick, Christopher A. Crowell
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Patent number: 8739869Abstract: Methods for enhanced oil recovery from a subterranean formation including adding a first salt to a first aqueous stream to form a first injection stream with an increased concentration of a first ion. A second salt is added to a second aqueous stream to form a second injection stream with an increased concentration of a second ion. The second injection stream is of different composition than the first injection stream and the first injection stream and the second injection stream have substantially the same interfacial tension with a hydrocarbon and substantially the same kinematic viscosity. The first injection stream is injected into the formation at a first time and the second injection stream is injected into the formation at a second time. The first injection stream and second injection stream contact at least some overlapping portion of the formation. Oil is recovered from the overlapping portion of the formation.Type: GrantFiled: November 1, 2011Date of Patent: June 3, 2014Assignee: ExxonMobil Upstream Research CompanyInventors: Thomas W Willingham, Robin Gupta, Mauro Lo Cascio, Peter Griffin Smith, Jr., Jung-gi Jane Shyeh, Robert D. Kaminsky
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Patent number: 8656996Abstract: Methods and systems for enhanced oil recovery from a subterranean formation are provided. An exemplary includes separating fluid produced from the subterranean formation into a first fluid stream that includes an aqueous stream containing multivalent ions. At least a portion of the multivalent ions in the first fluid are removed to form a second fluid stream and the second fluid stream is injected into the subterranean formation. The first fluid stream and the second fluid stream have substantially the same interfacial tension with a hydrocarbon and substantially the same kinematic viscosity, and the second fluid stream has a total concentration of ions greater than about 100,000 ppm.Type: GrantFiled: November 1, 2011Date of Patent: February 25, 2014Assignee: ExxonMobil Upstream Research CompanyInventors: Thomas W Willingham, Robin Gupta, Mauro Lo Cascio, Peter Griffin Smith, Jr., Jung-gi Jane Shyeh
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Patent number: 8657000Abstract: Methods and systems for enhancing oil recovery from a subterranean formation comprising at least a first region and a second region are provided. An exemplary method includes creating an injection stream by adding a salt to a water stream to increase a concentration of an ion and injecting the injection stream into the subterranean formation through a first injection well in the first region of the subterranean formation. Fluid is produced from the subterranean formation and separated to generate an aqueous stream comprising at least a portion of the ion. The salt is added to the aqueous stream to adjust the concentration of the ion in the aqueous stream to a desired level. The aqueous stream is injected into the subterranean formation through a second injection well in the second region of the subterranean formation.Type: GrantFiled: November 1, 2011Date of Patent: February 25, 2014Assignee: ExxonMobil Upstream Research CompanyInventors: Thomas W Willingham, Robin Gupta, Mauro Lo Cascio, Peter Griffin Smith, Jr.
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Publication number: 20120125603Abstract: Methods for enhanced oil recovery from a subterranean formation including adding a first salt to a first aqueous stream to form a first injection stream with an increased concentration of a first ion. A second salt is added to a second aqueous stream to form a second injection stream with an increased concentration of a second ion. The second injection stream is of different composition than the first injection stream and the first injection stream and the second injection stream have substantially the same interfacial tension with a hydrocarbon and substantially the same kinematic viscosity. The first injection stream is injected into the formation at a first time and the second injection stream is injected into the formation at a second time. The first injection stream and second injection stream contact at least some overlapping portion of the formation. Oil is recovered from the overlapping portion of the formation.Type: ApplicationFiled: November 1, 2011Publication date: May 24, 2012Inventors: Thomas W. Willingham, Robin Gupta, Mauro Lo Cascio, Peter Griffin Smith, JR., Jung-gi Jane Shyeh, Robert D. Kaminsky
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Publication number: 20120125604Abstract: Methods and systems for enhancing oil recovery from a subterranean formation comprising at least a first region and a second region are provided. An exemplary method includes creating an injection stream by adding a salt to a water stream to increase a concentration of an ion and injecting the injection stream into the subterranean formation through a first injection well in the first region of the subterranean formation. Fluid is produced from the subterranean formation and separated to generate an aqueous stream comprising at least a portion of the ion. The salt is added to the aqueous stream to adjust the concentration of the ion in the aqueous stream to a desired level. The aqueous stream is injected into the subterranean formation through a second injection well in the second region of the subterranean formation.Type: ApplicationFiled: November 1, 2011Publication date: May 24, 2012Inventors: Thomas W. Willingham, Robin Gupta, Mauro Lo Cascio, Peter Griffin Smith, JR.
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Publication number: 20120125605Abstract: Methods and systems for enhanced oil recovery from a subterranean formation are provided. An exemplary includes separating fluid produced from the subterranean formation into a first fluid stream that includes an aqueous stream containing multivalent ions. At least a portion of the multivalent ions in the first fluid are removed to form a second fluid stream and the second fluid stream is injected into the subterranean formation. The first fluid stream and the second fluid stream have substantially the same interfacial tension with a hydrocarbon and substantially the same kinematic viscosity, and the second fluid stream has a total concentration of ions greater than about 100,000 ppm.Type: ApplicationFiled: November 1, 2011Publication date: May 24, 2012Inventors: Thomas W. Willingham, Robin Gupta, Mauro Lo Cascio, Peter Griffin Smith, JR., Jung-gi Jane Shyeh