Patents by Inventor Paul Robert Buda
Paul Robert Buda 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: 11592200Abstract: Embodiments of the disclosure provide a thermal model based on an adaptive filter bank for characterizing heat transfer of a volume of a thermal system. In one embodiment, the adaptive filter bank is used for diagnostics that provides information related to the condition of a thermal system. The diagnostics are based on an analysis of heat transfer characteristics of a dynamic representation of the thermal system. In accordance with the embodiments, thermal coefficients are generated based on an adaptive filter bank. One or more filters are applied to the thermal coefficients based on a sampling rate and one or more estimate thermal coefficient thresholds are generated based on the sampling rate. It is determined whether at least one of the thermal coefficients that is filtered satisfies at least one of the estimated thermal coefficient thresholds. Thereupon, alert information indicative of a diagnostic event is provided based on the determination.Type: GrantFiled: July 23, 2019Date of Patent: February 28, 2023Assignee: Schneider Electric USA, Inc.Inventors: Larry A. Turner, Paul Robert Buda, Scott Robert Brown, Gary B. Pollard, David R. Glasgow
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Patent number: 11156971Abstract: The INTERIOR COMFORT HVAC USER-FEEDBACK CONTROL SYSTEM AND APPARATUS transforms qualitative feedback received from a user/occupant into a “comfort map,” or modifications thereto, a comfort map being defined at least in part by one or more comfort event windows. The comfort map data is used to determine a temperature setpoint sequence that avoids regions of the map corresponding to known and/or predicted regions of user discomfort.Type: GrantFiled: January 7, 2020Date of Patent: October 26, 2021Assignee: Schneider Electric USA, Inc.Inventors: Paul Robert Buda, Larry A. Turner, Scott Robert Brown, Gary Brent Pollard, David R. Glasgow, Jason Pazis, Frank J. Verga
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Patent number: 11156572Abstract: A processor-implemented method of controlling an HVAC system transforms a comfort map into a plurality of sequential constant-temperature segments that are used in generating a control temperature sequence that preserves occupant comfort while improving energy efficiency. The method balances user comfort, temperature trajectory execution complexity, operational HVAC trajectory realization, and energy efficiency. The system achieves this balance through utilization of comfort map metric data, analysis and control system execution. The system, comfort map metric data processing and analysis facilitates this balance by executing a control temperature sequence/temperature trajectories developed based on direct user comfort feedback data within the context of a comfort map and thermal equilibrium boundaries derived from the comfort map.Type: GrantFiled: December 1, 2015Date of Patent: October 26, 2021Assignee: Schneider Electric USA, Inc.Inventors: Paul Robert Buda, Larry A. Turner, Scott Robert Brown, Gary Brent Pollard, David R. Glasgow, Jason Pazis
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Publication number: 20210025611Abstract: Embodiments of the disclosure provide a thermal model based on an adaptive filter bank for characterizing heat transfer of a volume of a thermal system. In one embodiment, the adaptive filter bank is used for diagnostics that provides information related to the condition of a thermal system. The diagnostics are based on an analysis of heat transfer characteristics of a dynamic representation of the thermal system. In accordance with the embodiments, thermal coefficients are generated based on an adaptive filter bank. One or more filters are applied to the thermal coefficients based on a sampling rate and one or more estimate thermal coefficient thresholds are generated based on the sampling rate. It is determined whether at least one of the thermal coefficients that is filtered satisfies at least one of the estimated thermal coefficient thresholds. Thereupon, alert information indicative of a diagnostic event is provided based on the determination.Type: ApplicationFiled: July 23, 2019Publication date: January 28, 2021Applicant: Schneider Electric USA, Inc.Inventors: Larry A. Turner, Paul Robert Buda, Scott Robert Brown, Gary B. Pollard, David R. Glasgow
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Publication number: 20200241492Abstract: The INTERIOR COMFORT HVAC USER-FEEDBACK CONTROL SYSTEM AND APPARATUS transforms qualitative feedback received from a user/occupant into a “comfort map,” or modifications thereto, a comfort map being defined at least in part by one or more comfort event windows. The comfort map data is used to determine a temperature setpoint sequence that avoids regions of the map corresponding to known and/or predicted regions of user discomfort.Type: ApplicationFiled: January 7, 2020Publication date: July 30, 2020Applicant: SCHNEIDER ELECTRIC USA, INC.Inventors: Paul Robert BUDA, Larry A. TURNER, Scott Robert BROWN, Gary Brent POLLARD, David R. GLASGOW, Jason PAZIS, Frank J. VERGA
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Patent number: 10571142Abstract: The INTERIOR USER-COMFORT ENERGY EFFICIENCY MODELING AND CONTROL SYSTEMS AND APPARATUSES (“IUCEEMC”) transforms comfort maps and occupant comfort inputs via a profile library manager component, exploration manager component, comfort map manager component, regulation monitor component, control temperature sequence generator component, and comfort map modification component, into comfort map and control temperature sequence outputs. In some implementations, the IUCEEMC can divide a timespace of a temperature model into a plurality of sections, select a section from the plurality of sections, perform a first persistent change of the section from the plurality of sections, and, via a control temperature sequence generator, calculate a control temperature sequence using the temperature model. The IUCEEMC can develop and execute a temperature trajectory on an HVAC system, such as a home or industrial HVAC system.Type: GrantFiled: December 1, 2015Date of Patent: February 25, 2020Assignee: Schneider Electric USA, Inc.Inventors: Paul Robert Buda, Larry A. Turner, Scott Robert Brown, Gary Brent Pollard, David R. Glasgow, Jason Pazis
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Patent number: 10571876Abstract: The INTERIOR COMFORT HVAC USER-FEEDBACK CONTROL SYSTEM AND APPARATUS transforms qualitative feedback received from a user/occupant into a “comfort map,” or modifications thereto, a comfort map being defined at least in part by one or more comfort event windows. The comfort map data is used to determine a temperature setpoint sequence that avoids regions of the map corresponding to known and/or predicted regions of user discomfort.Type: GrantFiled: December 28, 2017Date of Patent: February 25, 2020Assignee: Schneider Electric USA, Inc.Inventors: Paul Robert Buda, Larry A. Turner, Scott Robert Brown, Gary Brent Pollard, David R. Glasgow, Jason Pazis, Frank J. Verga
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Patent number: 10352884Abstract: A system for comfort based management of thermal systems, including residential and commercial buildings with active cooling and/or heating, is described. The system can operate without commissioning information, and with minimal occupant interactions, and can learn heat transfer and thermal comfort characteristics of the thermal systems so as to control the temperature thereof while minimizing energy consumption and maintaining comfort.Type: GrantFiled: December 1, 2015Date of Patent: July 16, 2019Assignee: Schneider Electric USA, Inc.Inventors: Larry A. Turner, Paul Robert Buda, Scott Robert Brown, Gary Brent Pollard, David R. Glasgow
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Patent number: 10254726Abstract: The INTERIOR COMFORT HVAC USER-FEEDBACK CONTROL SYSTEM AND APPARATUS transforms qualitative feedback received from a user/occupant into a “comfort map,” or modifications thereto, a comfort map being defined at least in part by one or more comfort event windows. The comfort map data is used to determine a temperature setpoint sequence that avoids regions of the map corresponding to known and/or predicted regions of user discomfort.Type: GrantFiled: December 1, 2015Date of Patent: April 9, 2019Assignee: Schneider Electric USA, Inc.Inventors: Paul Robert Buda, Larry A. Turner, Scott Robert Brown, Gary Brent Pollard, David R. Glasgow, Jason Pazis, Frank J. Verga
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Publication number: 20180136621Abstract: The INTERIOR COMFORT HVAC USER-FEEDBACK CONTROL SYSTEM AND APPARATUS transforms qualitative feedback received from a user/occupant into a “comfort map,” or modifications thereto, a comfort map being defined at least in part by one or more comfort event windows. The comfort map data is used to determine a temperature setpoint sequence that avoids regions of the map corresponding to known and/or predicted regions of user discomfort.Type: ApplicationFiled: December 28, 2017Publication date: May 17, 2018Applicant: SCHNEIDER ELECTRIC USA, INC.Inventors: Paul Robert BUDA, Larry A. TURNER, Scott Robert BROWN, Gary Brent POLLARD, David R. GLASGOW, Jason PAZIS, Frank J. VERGA
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Publication number: 20160223217Abstract: The INTERIOR USER-COMFORT ENERGY EFFICIENCY MODELING AND CONTROL SYSTEMS AND APPARATUSES (“IUCEEMC”) transforms comfort maps and occupant comfort inputs via a profile library manager component, exploration manager component, comfort map manager component, regulation monitor component, control temperature sequence generator component, and comfort map modification component, into comfort map and control temperature sequence outputs. In some implementations, the IUCEEMC can divide a timespace of a temperature model into a plurality of sections, select a section from the plurality of sections, perform a first persistent change of the section from the plurality of sections, and, via a control temperature sequence generator, calculate a control temperature sequence using the temperature model. The IUCEEMC can develop and execute a temperature trajectory on an HVAC system, such as a home or industrial HVAC system.Type: ApplicationFiled: December 1, 2015Publication date: August 4, 2016Inventors: Paul Robert Buda, Larry A. Turner, Scott Robert Brown, Gary Brent Pollard, David R. Glasgow, Jason Pazis
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Publication number: 20160223214Abstract: A system for comfort based management of thermal systems, including residential and commercial buildings with active cooling and/or heating, is described. The system can operate without commissioning information, and with minimal occupant interactions, and can learn heat transfer and thermal comfort characteristics of the thermal systems so as to control the temperature thereof while minimizing energy consumption and maintaining comfort.Type: ApplicationFiled: December 1, 2015Publication date: August 4, 2016Inventors: Larry A. Turner, Paul Robert Buda, Scott Robert Brown, Gary Brent Pollard, David R. Glasgow
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Publication number: 20160223215Abstract: The INTERIOR COMFORT HVAC USER-FEEDBACK CONTROL SYSTEM AND APPARATUS transforms qualitative feedback received from a user/occupant into a “comfort map,” or modifications thereto, a comfort map being defined at least in part by one or more comfort event windows. The comfort map data is used to determine a temperature setpoint sequence that avoids regions of the map corresponding to known and/or predicted regions of user discomfort.Type: ApplicationFiled: December 1, 2015Publication date: August 4, 2016Inventors: Paul Robert Buda, Larry A. Turner, Scott Robert Brown, Gary Brent Pollard, David R. Glasgow, Jason Pazis, Frank J. Verga
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Publication number: 20160223216Abstract: The APPARATUSES, METHODS AND SYSTEMS FOR COMFORT AND ENERGY EFFICIENCY CONFORMANCE IN AN HVAC SYSTEM transforms a comfort map into a plurality of sequential constant-temperature segments that are used in generating a control temperature sequence that preserves occupant comfort while improving energy efficiency.Type: ApplicationFiled: December 1, 2015Publication date: August 4, 2016Inventors: Paul Robert Buda, Larry A. Turner, Scott Robert Brown, Gary Brent Pollard, David R. Glasgow, Jason Pazis
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Patent number: 8800309Abstract: A method of automatically detecting an anomalous condition relative to a nominal operating condition in a vapor compression system. An expected input power function in the form of a hyperplane is calculated based on three temperature readings: an intake temperature from an intake area of the condenser unit, a return temperature from an intake area of an evaporator unit, and a supply temperature from a supply output area of the evaporator unit. The function produces an estimate of the expected input power consumed by the compressor unit, and this expected input power is compared with an actual input power measured from the compressor unit. If the expected input power deviates from the measured input power by more than a predetermined tolerance, an indication is stored and communicated that an anomalous condition, such as a refrigerant loss, condenser unit fouling, or a malfunctioning fan, exists in the vapor compression system.Type: GrantFiled: December 14, 2009Date of Patent: August 12, 2014Assignee: Schneider Electric USA, Inc.Inventors: Paul Robert Buda, Roy Stephen Colby, Scott Robert Littler
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Publication number: 20110144807Abstract: A method of automatically detecting an anomalous condition relative to a nominal operating condition in a vapor compression system. An expected input power function in the form of a hyperplane is calculated based on three temperature readings: an intake temperature from an intake area of the condenser unit, a return temperature from an intake area of an evaporator unit, and a supply temperature from a supply output area of the evaporator unit. The function produces an estimate of the expected input power consumed by the compressor unit, and this expected input power is compared with an actual input power measured from the compressor unit. If the expected input power deviates from the measured input power by more than a predetermined tolerance, an indication is stored and communicated that an anomalous condition, such as a refrigerant loss, condenser unit fouling, or a malfunctioning fan, exists in the vapor compression system.Type: ApplicationFiled: December 14, 2009Publication date: June 16, 2011Applicant: Square D CompanyInventors: Paul Robert Buda, Roy Stephen Colby, Scott Robert Littler
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Publication number: 20100065533Abstract: A resistance weld control employing a model-based run-to-run estimate of load impedance, giving the weld control system the ability to maintain and predict the expected impedance of a successfully completed resistance spot weld, and to detect when the load impedance observed by the resistance weld control is within a target neighborhood of that impedance predicted by the model-based run-to-run estimate of load impedance. A target weld current and a range of weld times may be specified, such that the actual weld time employed in making the resistance spot weld is responsive to the time required to complete the contact preparation phase. Further, a fixed weld time and a range of target weld currents may be specified to make a resistance spot weld, such that the actual target weld current employed is responsive to the time required to complete the contact preparation phase of the weld.Type: ApplicationFiled: December 15, 2008Publication date: March 18, 2010Applicant: SQUARE D COMPANYInventors: Paul Robert Buda, Timothy Eugene Miller, Robert Michael Slazinski
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Publication number: 20030195722Abstract: High-speed programmable logic controller (PLC) signal processing is accomplished using a programmable signal processing arrangement that is capable of altering characteristics of signal processing in response to one or more signal processing coefficients. According to an example embodiment of the present invention, a PLC-based arrangement includes a PLC controller and a signal processing arrangement that oversamples and processes a signal at a frequency that is greater than a maximum input-process-output scan rate of the PLC controller. In one implementation, the signal processing arrangement is programmable with complex high-speed signal processing parameters that can be downloaded, for example, via the Internet in response to an end-user request. With these approaches, signal sampling and processing is achieved with a PLC-based system at a rate that can be much higher than previously-available signal processing rates with PLC controllers.Type: ApplicationFiled: April 12, 2002Publication date: October 16, 2003Inventor: Paul Robert Buda
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Patent number: 6611724Abstract: An online monitor that can be permanently attached to a device to be monitored continuously monitors a set of analog signals and initiates data capture over a window of time when a user programmable set of conditions is satisfied. The online monitor includes a digital signal processing unit, a modular, interchangeable, analog signal conditioning base unit that can be tailored to the specific requirements of the process to be monitored and a modular, interchangeable, communication interface unit. The interface unit permits the digital signal processing unit to exchange data with external equipment such as network computers via a number of industry standard communication fieldbus protocols. The online monitor provides the capability to define the trigger condition under which data capture is initiated by comparing a user defined signal to a function of the instantaneous value of another signal or constant.Type: GrantFiled: November 24, 1999Date of Patent: August 26, 2003Assignee: Square D CompanyInventors: Paul Robert Buda, Larry Alan Dew, Todd Charles Wheaton, Jackie Laverne Winn
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Patent number: 5802321Abstract: A communication system between a programmable logic controller and a network of a plurality of remote input/output repeater modules uses a synchronous serial communications protocol. The programmable logic controller contains a transmitter module for generating a data packet containing the state of an output device connected to a remote input/output repeater module coupled to the network. A receiver module receives and decodes a returned modified data packet that indicates the state of input devices connected to the same or other remote input/output repeater modules also coupled to the network. The remote input/output repeater modules receive and decode the data packet to determine the state of the output devices that may be connected to it and modifies the data packet to indicate the state of its input device if there is one present. The modified data packet is sent to the next in-line remote input/output repeater module coupled to the network.Type: GrantFiled: June 20, 1996Date of Patent: September 1, 1998Assignee: Square D CompanyInventors: Paul Robert Buda, Gary Lynn Dowdy