Patents by Inventor Ehsan Moradi-Pari
Ehsan Moradi-Pari 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: 11702081Abstract: A method and system for road condition monitoring including receiving roadway data from connected vehicles in response to a third party request. The connected vehicles include sensors for capturing the roadway data. The method and system include determining a roadway condition based on the roadway data and calculating a data price based on the roadway condition and the roadway data. Further, the method and system include controlling access to the roadway data according to the data price.Type: GrantFiled: February 7, 2020Date of Patent: July 18, 2023Assignee: HONDA MOTOR CO., LTD.Inventors: Xue Bai, Rajeev Chhajer, Brian Mills Nutwell, Jose I. Herrero Zarzosa, Ehsan Moradi-Pari, Kathiravan Natarajan, Abolfazl Hajisami
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Patent number: 11212654Abstract: According to one or more aspects, a system for coordinated driving may include a vehicle communication system receiving a proposed driving maneuver from a tractor vehicle, an input device receiving a response to the proposed driving maneuver from an occupant of a trailer vehicle, and a route generation module generating a route corresponding to the proposed driving maneuver based on the response to the proposed driving maneuver. The tractor vehicle may be engaged in segment-by-segment coordinated driving with the trailer vehicle utilizing a cooperative adaptive cruise control (CACC) module.Type: GrantFiled: April 2, 2018Date of Patent: December 28, 2021Assignee: HONDA MOTOR CO., LTD.Inventors: Xue Bai, Ehsan Moradi-Pari
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Patent number: 10838428Abstract: Systems and techniques for autonomous vehicle drop-off and pick-up of an individual (e.g., valet type operation) are disclosed herein. An autonomous vehicle may receive global positioning system (GPS) location data including a drop-off location, a parking location, a pick-up location, a pick-up time, and timing factor information associated with an estimated arrival of the individual at the pick-up location, determine an adjusted pick-up time associated with the pick-up of the individual based on the timing factor, determine a departure time for autonomous pick-up of the individual based on the adjusted pick-up time, autonomously park the autonomous vehicle, by travelling from the drop-off location to the parking location after drop-off of the individual, and autonomously pick-up the individual, by departing, at the departure time, from the parking location and travelling to the pick-up location.Type: GrantFiled: November 29, 2017Date of Patent: November 17, 2020Assignee: Honda Motor Co., Ltd.Inventors: Xue Bai, Ehsan Moradi-Pari, Samer Rajab
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Patent number: 10803746Abstract: A system and method for providing an infrastructure based safety alert associated with at least one roadway that include identifying road users located within a surrounding environment of the at least one roadway. The system and method also include determining road user related data and roadway related data. The system and method additionally include processing roadway behavioral data associated with a non-equipped vehicle. The system and method further include providing a roadway safety alert based on the roadway behavioral data.Type: GrantFiled: November 28, 2017Date of Patent: October 13, 2020Assignee: Honda Motor Co., Ltd.Inventors: Xue Bai, Ehsan Moradi-Pari
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Publication number: 20200262438Abstract: A method and system for road condition monitoring including receiving roadway data from connected vehicles in response to a third party request. The connected vehicles include sensors for capturing the roadway data. The method and system include determining a roadway condition based on the roadway data and calculating a data price based on the roadway condition and the roadway data. Further, the method and system include controlling access to the roadway data according to the data price.Type: ApplicationFiled: February 7, 2020Publication date: August 20, 2020Inventors: Xue Bai, Rajeev Chhajer, Brian Mills Nutwell, Jose I. Herrero Zarzosa, Ehsan Moradi-Pari, Kathiravan Natarajan, Abolfazl Hajisami
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Patent number: 10490075Abstract: A system and method for providing road user related data based on vehicle communications that include detecting at least one road user located within a surrounding environment of a vehicle. The system and method also include sending vehicle communication signals to the at least one road user detected within the surrounding environment of the vehicle. The system and method additionally include receiving reflected vehicle communication signals that are reflected back from the at least one road user. The system and method further include analyzing the reflected vehicle communication signals to determine a received signal strength of each of the reflected vehicle communication signals.Type: GrantFiled: November 27, 2017Date of Patent: November 26, 2019Assignee: Honda Motor Co., Ltd.Inventors: Xue Bai, Ehsan Moradi-Pari
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Publication number: 20190164422Abstract: A system and method for providing an infrastructure based safety alert associated with at least one roadway that include identifying road users located within a surrounding environment of the at least one roadway. The system and method also include determining road user related data and roadway related data. The system and method additionally include processing roadway behavioral data associated with a non-equipped vehicle. The system and method further include providing a roadway safety alert based on the roadway behavioral data.Type: ApplicationFiled: November 28, 2017Publication date: May 30, 2019Inventors: Xue Bai, Ehsan Moradi-Pari
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Publication number: 20190163204Abstract: Systems and techniques for autonomous vehicle drop-off and pick-up of an individual (e.g., valet type operation) are disclosed herein. An autonomous vehicle may receive global positioning system (GPS) location data including a drop-off location, a parking location, a pick-up location, a pick-up time, and timing factor information associated with an estimated arrival of the individual at the pick-up location, determine an adjusted pick-up time associated with the pick-up of the individual based on the timing factor, determine a departure time for autonomous pick-up of the individual based on the adjusted pick-up time, autonomously park the autonomous vehicle, by travelling from the drop-off location to the parking location after drop-off of the individual, and autonomously pick-up the individual, by departing, at the departure time, from the parking location and travelling to the pick-up location.Type: ApplicationFiled: November 29, 2017Publication date: May 30, 2019Inventors: Xue Bai, Ehsan Moradi-Pari, Samer Rajab
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Publication number: 20190164423Abstract: A system and method for providing road user related data based on vehicle communications that include detecting at least one road user located within a surrounding environment of a vehicle. The system and method also include sending vehicle communication signals to the at least one road user detected within the surrounding environment of the vehicle. The system and method additionally include receiving reflected vehicle communication signals that are reflected back from the at least one road user. The system and method further include analyzing the reflected vehicle communication signals to determine a received signal strength of each of the reflected vehicle communication signals.Type: ApplicationFiled: November 27, 2017Publication date: May 30, 2019Inventors: Xue Bai, Ehsan Moradi-Pari
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Publication number: 20180227729Abstract: According to one or more aspects, a system for coordinated driving may include a vehicle communication system receiving a proposed driving maneuver from a tractor vehicle, an input device receiving a response to the proposed driving maneuver from an occupant of a trailer vehicle, and a route generation module generating a route corresponding to the proposed driving maneuver based on the response to the proposed driving maneuver. The tractor vehicle may be engaged in segment-by-segment coordinated driving with the trailer vehicle utilizing a cooperative adaptive cruise control (CACC) module.Type: ApplicationFiled: April 2, 2018Publication date: August 9, 2018Inventors: Xue Bai, Ehsan Moradi-Pari
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Patent number: 9937860Abstract: A safety system for an automotive vehicle includes: a dedicated radio to receive and transmit state data between a host vehicle and a remote vehicle; a global positioning system (GPS) receiver; an on-board unit (OBE) to perform a vehicle-to-vehicle (V2V) communications so that the host vehicle receives state data of the remove vehicle in a basic safety message (BSM) format; and a safety control unit. In particular, the safety control unit receives the state data of the host and remote vehicles, calculates a separation distance, a prediction horizon time, and then compares the prediction horizon time with a driver reaction time to generate a warning to a driver. More specifically, the safety control unit performs a cost value procedure when a deducted prediction horizon time is greater than zero to determine variable coefficients for estimating a future position and speed of the host and remote vehicles.Type: GrantFiled: September 26, 2016Date of Patent: April 10, 2018Assignees: HYUNDAI AMERICA TECHNICAL CENTER, INC., HYUNDAI MOTOR COMPANY, KIA MOTORS CORPORATIONInventors: Ehsan Moradi-Pari, Mohammad Naserian, Mohammad Horani, Allan Lewis, John Robb
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Publication number: 20180086263Abstract: A safety system for an automotive vehicle includes: a dedicated radio to receive and transmit state data between a host vehicle and a remote vehicle; a global positioning system (GPS) receiver; an on-board unit (OBE) to perform a vehicle-to-vehicle (V2V) communications so that the host vehicle receives state data of the remove vehicle in a basic safety message (BSM) format; and a safety control unit. In particular, the safety control unit receives the state data of the host and remote vehicles, calculates a separation distance, a prediction horizon time, and then compares the prediction horizon time with a driver reaction time to generate a warning to a driver. More specifically, the safety control unit performs a cost value procedure when a deducted prediction horizon time is greater than zero to determine variable coefficients for estimating a future position and speed of the host and remote vehicles.Type: ApplicationFiled: September 26, 2016Publication date: March 29, 2018Applicants: Hyundai America Technical Center, Inc., HYUNDAI MOTOR COMPANY, KIA MOTORS CORPORATIONInventors: Ehsan Moradi-Pari, Mohammad Naserian, Mohammad Horani, Allan Lewis, John Robb