Patents by Inventor Ihab S. Soliman

Ihab S. Soliman 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).

  • Publication number: 20090150035
    Abstract: A hybrid propulsion system for a vehicle. The hybrid propulsion system including a multiple step fixed-gear transmission device for transmitting torque to a first at least one drive wheel, a first electric energy conversion device coupled to an input of the multiple step fixed-gear transmission device, and a control system, during a deceleration condition, the control system increasing negative torque output of the first electric energy conversion device to meet a desired wheel braking torque in response to the multiple step fixed-ratio transmission transitioning from a first gear ratio to a second gear that is higher than the first gear ratio.
    Type: Application
    Filed: December 5, 2007
    Publication date: June 11, 2009
    Applicant: FORD GLOBAL TECHNOLOGIES, LLC
    Inventors: Ihab S. Soliman, Andrew John Silveri, Deepak Aswani
  • Publication number: 20090145673
    Abstract: A hybrid propulsion system for a vehicle.
    Type: Application
    Filed: December 5, 2007
    Publication date: June 11, 2009
    Applicant: FORD GLOBAL TECHNOLOGIES, LLC
    Inventors: Ihab S. Soliman, Deepak Aswani
  • Publication number: 20090143188
    Abstract: In a powertrain that includes wheels for driving a vehicle, a crankshaft, a machine driveably connected to the crankshaft and able to operate alternately as an electric motor and electric generator, a transmission including an input clutch driveably connected to the crankshaft and an output driveably connected to the wheels, a method for controlling idle speed including producing a desired magnitude of input clutch torque capacity, producing a desired wheel torque, using an error represented by a difference between a desired crankshaft idle speed and a current crankshaft speed to determine a desired change in torque produced by the machine, using the magnitude of input clutch torque capacity and the desired change in torque produced by the machine to determine a desired magnitude machine torque, and using the machine to produce said desired magnitude of machine torque.
    Type: Application
    Filed: November 29, 2007
    Publication date: June 4, 2009
    Inventors: Ihab S. Soliman, Andrew J. Silveri, Deepak Aswani
  • Publication number: 20090093336
    Abstract: In a powertrain that includes wheels for driving a vehicle, an engine including a crankshaft, a machine driveably connected to the crankshaft and able to operate alternately as an electric motor and electric generator, a transmission including an input clutch driveably connected to the crankshaft and an output driveably connected to at least two of the wheels, and an electric storage battery having a variable state of charge and electrically connected to the machine, a method for controlling vehicle creep including adjusting a torque capacity of the input clutch to a desired magnitude of input clutch torque transmitted to the wheels, determining a desired change in torque produced by the machine such that a speed of the crankshaft is controlled to a desired idle speed, using the magnitude of input clutch torque capacity and the desired change in torque produced by the machine to determine a desired magnitude machine torque, and using the machine to produce said desired magnitude of machine torque.
    Type: Application
    Filed: October 5, 2007
    Publication date: April 9, 2009
    Inventors: Ihab S. Soliman, Andrew J. Silveri, Deepak Aswani
  • Publication number: 20090093337
    Abstract: In a powertrain that includes wheels supporting a vehicle, an engine, a first machine able to operate alternately as an electric motor and electric generator, a second machine electric able to operate as an electric motor, and an electric storage battery having a variable state of charge, a method for holding the vehicle stationary on an incline including determining a magnitude of torque at the wheels required to hold the vehicle on the incline, determining whether the state of charge is low or high relative to a reference state of charge, determining whether a temperature of the first machine is low or high relative to a first reference temperature, and whether a temperature of the second machine is low or high relative to a second reference temperature, using the engine and the machines in various combinations to produce the required torque at the wheels.
    Type: Application
    Filed: October 9, 2007
    Publication date: April 9, 2009
    Inventors: Ihab S. Soliman, Andrew J. Silveri
  • Publication number: 20090088944
    Abstract: In a hybrid electric vehicle powered by an internal combustion engine that produces torque and an electric machine that produces torque, a method for operating the electric machine to produce electric assist to the engine includes determining a magnitude of power requested by the vehicle operator, determining a minimum power limit and a maximum power limit of the engine that will produce a response to a torque request within a desired period following the torque request, using the magnitude of power requested, the minimum and maximum power limits of the engine to determine the upper and lower limits of the electric power assist such that the requested torque will be provided within the desired period, and operating the electric machine to provide electric power assist within said upper and lower limits.
    Type: Application
    Filed: September 27, 2007
    Publication date: April 2, 2009
    Inventors: Deepak Aswani, Mattias Kroon, Andrew J. Silveri, Ihab S. Soliman, Roger Leirvik, Daniel Thorsman
  • Publication number: 20090062061
    Abstract: In a vehicle powertrain that includes an engine and an electric machine, a method for preventing rollback of a wheeled vehicle located on an incline includes determining a magnitude of wheel torque required to prevent the vehicle from rolling back, using the electric machine to produce the required magnitude of wheel torque at the wheels, transmitting engine torque to the wheels, and reducing torque produced by the electric machine while increasing engine torque such that the sum of wheel torque produced by the engine and electric machine is substantially equal to said required magnitude of wheel torque.
    Type: Application
    Filed: August 28, 2007
    Publication date: March 5, 2009
    Inventors: Andrew J. Silveri, Ihab S. Soliman
  • Publication number: 20090054200
    Abstract: A method for controlling a vehicle powertrain that includes a first power path including a first electric machine driveably connected to a first wheel set and a second power path including a second electric machine driveably connected to a second wheel set, including determining a desired wheel torque required to hold the vehicle stationary on an inclined surface, determining a temperature of the first machine and a first reference temperature, determining a torque capacity of the first power path, and using the first power path to produce the desired wheel torque, if the temperature of the first electric machine is less than the first reference temperature and the torque capacity of the first power path is greater than the desired wheel torque.
    Type: Application
    Filed: August 23, 2007
    Publication date: February 26, 2009
    Inventors: Ihab S. Soliman, Andrew J. Silveri, Deepak Aswani
  • Publication number: 20090048063
    Abstract: In a powertrain that includes an engine driveably connected to a load and an electric machine driveably connected to the load, a method for controlling a vehicle located on an incline against rollback includes determining a magnitude of wheel torque required to prevent the vehicle from rolling back, determining whether the electric machine has a current torque capacity that is equal to or greater than the required wheel torque, using the electric machine to produce the required wheel torque provided the current torque capacity of the electric machine is able to produce the required wheel torque, and using the engine to produce the required wheel torque provided the torque capacity of the electric machine is unable to produce the required wheel torque.
    Type: Application
    Filed: August 16, 2007
    Publication date: February 19, 2009
    Inventors: Andrew J. Silveri, Ihab S. Soliman
  • Publication number: 20090042689
    Abstract: A method for controlling the launch of a vehicle having a powertrain that includes a first power path for driving a first wheel set and including an engine, a transmission having an input driveably connected to a crankshaft of the engine, a current gear, an input clutch associated with the current gear and an output connected to first wheel set, and a second power path including an electric machine for driving a second wheel set.
    Type: Application
    Filed: August 9, 2007
    Publication date: February 12, 2009
    Inventors: Ihab S. Soliman, Deepak Aswani, Andrew J. Silveri
  • Publication number: 20090033095
    Abstract: In a powertrain that includes an engine having a filter for removing particulate matter from engine exhaust gas, and an electric machine driveably connected to the engine, a method for controlling temperature of the filter including operating the engine to produce a magnitude of positive crankshaft power for driving the vehicle, increasing the temperature of the engine exhaust gas by operating the electric machine to increase load on the engine, and regenerating the particulate filter by passing engine exhaust gas at the increased temperature through the particulate filter.
    Type: Application
    Filed: August 1, 2007
    Publication date: February 5, 2009
    Inventors: Deepak Aswani, Mathew A. Boesch, Ihab S. Soliman, Andrew J. Silveri, Fazal U. Syed, Mark S. Yamazaki
  • Publication number: 20090005215
    Abstract: In a powertrain for a vehicle that includes an engine, a transmission having an input, a current gear, an input clutch, a target gear and an output for driving a load, and an electric machine for driving the load, a method for performing a gearshift from the current gear to the target gear comprising the steps of opening the input clutch, releasing a drive connection between the current gear and the output, producing a drive connection between the target gear and the output, using the electric machine to produce torque at the load, closing the input clutch; and reducing the torque produced by the electric machine.
    Type: Application
    Filed: June 26, 2007
    Publication date: January 1, 2009
    Inventors: Andrew J. Silveri, Ihab S. Soliman, Deepak Aswani
  • Publication number: 20080305924
    Abstract: A method for controlling a vehicle launch using a transmission having an input, a current gear, an input clutch associated with a target gear and an output, an engine and an electric machine for driving the input, includes the steps of determining a desired magnitude of torque to be produced at the transmission output, producing a predetermined magnitude of torque capacity of the input clutch, operating the engine such that a magnitude of torque at the transmission output is substantially equal to the desired transmission output torque, determining an crankshaft speed error, determining a desired change in torque at the transmission input that will reduce the crankshaft speed error, adjusting a magnitude of torque produced by the first electric machine such that the magnitude of torque at the transmission input is substantially equal to the desired torque at the transmission input, and engaging the input clutch.
    Type: Application
    Filed: June 7, 2007
    Publication date: December 11, 2008
    Inventors: Ihab S. Soliman, Deepak Aswani, Andrew J. Silveri
  • Publication number: 20080302324
    Abstract: A method for detecting sustained combustion in the engine of a hybrid electric powertrain that includes a starter/generator driveably connected to the engine, a transmission for driving a load, and an input clutch for opening and closing a drive connection between the electric machine and the transmission, includes the steps of using the starter/generator to produce torque and crank the engine, preparing the engine to produce combustion, producing torque capacity across the input clutch while slipping the clutch, and continuing use of the starter/generator until a sum of the crankshaft torque applied by the starter/generator and the crankshaft torque applied by the transmission is less than some torque threshold for a predetermined period length.
    Type: Application
    Filed: June 5, 2007
    Publication date: December 11, 2008
    Inventors: Deepak Aswani, Brandon R. Masterson, Ihab S. Soliman, Andrew J. Silveri
  • Publication number: 20080305925
    Abstract: A method for controlling a vehicle launch using a transmission having an input, a current gear, an input clutch associated with a target gear and an output, an engine and an electric machine for driving the input, includes the steps of using the engine and the first electric machine to drive the transmission input at a desired magnitude of torque, determining a desired magnitude of torque capacity of the input clutch, determining a crankshaft speed error, determining a magnitude of a change in torque capacity of the input clutch that will reduce the crankshaft speed error, and increasing the torque capacity of the input clutch to a desired torque capacity whose magnitude is determined by adding the current magnitude of torque capacity of the input clutch and said change in torque capacity of the input clutch.
    Type: Application
    Filed: June 7, 2007
    Publication date: December 11, 2008
    Inventors: Ihab S. Soliman, Andrew J. Silveri, Deepak Aswani
  • Patent number: 6718822
    Abstract: A system and method for controlling an internal combustion engine to improve air/fuel ratio control using a feed-forward observer-based control strategy include estimating current and future airflow actuator positions, determining corresponding mass airflow values, and determining a future in-cylinder air charge based on a difference between the current and future mass airflow values. In one embodiment, the difference between current and future mass airflow estimates is used as a feed-forward term and combined with a sensed or measured value generated by a mass airflow sensor prior to being processed using a manifold filling model to predict the future cylinder air charge.
    Type: Grant
    Filed: June 7, 2002
    Date of Patent: April 13, 2004
    Assignee: Ford Global Technologies, LLC
    Inventors: Ihab S. Soliman, Tobias John Pallett, Jerry D. Robichaux
  • Patent number: 6640622
    Abstract: A system and method for controlling an internal combustion engine to improve air/fuel ratio control using a feed-forward observer-based control strategy include estimating current and future airflow actuator positions, determining corresponding mass airflow values, and determining a future in-cylinder air charge based on a difference between the current and future mass airflow values. In one embodiment, the difference between current and future mass airflow estimates is used as a feed-forward term and combined with a sensed or measured value generated by a mass airflow sensor prior to being processed using a manifold filling model to predict the future cylinder air charge.
    Type: Grant
    Filed: May 24, 2002
    Date of Patent: November 4, 2003
    Assignee: Ford Global Technologies, LLC
    Inventors: Ihab S. Soliman, Tobias John Pallett, Jerry D. Robichaux
  • Patent number: 6577939
    Abstract: A modular electronic control system for a geared multiple-ratio transmission wherein pressure profiles for each ratio shift actuator are used to provide seamless transitions during both positive and negative engine torque conditions to improve shift feel and responsiveness to ratio change commands. The system provides shift staging for sequenced shifts between ratios as well as for so-called “change-of-mind” shifts in which a sequence shift is interrupted as a new destination gear is introduced. A constant ratio change occurs during sequenced shifts. A change-of-mind shift can be performed directly where the new destination gear is commanded immediately. Independent pressure profiles for each clutch involved in a commanded shift are used to accommodate various types of shifts.
    Type: Grant
    Filed: May 20, 2002
    Date of Patent: June 10, 2003
    Assignee: Ford Global Technologies, LLC
    Inventors: Brian Keyse, Ihab S. Soliman, Jeremy L. Russell, Kevin MacFarlane, Stephen Michael Cicala
  • Publication number: 20030005756
    Abstract: A system and method for controlling an internal combustion engine to improve air/fuel ratio control using a feed-forward observer-based control strategy include estimating current and future airflow actuator positions, determining corresponding mass airflow values, and determining a future in-cylinder air charge based on a difference between the current and future mass airflow values. In one embodiment, the difference between current and future mass airflow estimates is used as a feed-forward term and combined with a sensed or measured value generated by a mass airflow sensor prior to being processed using a manifold filling model to predict the future cylinder air charge.
    Type: Application
    Filed: June 7, 2002
    Publication date: January 9, 2003
    Inventors: Ihab S. Soliman, Tobias John Pallett, Jerry D. Robichaux
  • Publication number: 20020179050
    Abstract: A system and method for controlling an internal combustion engine to improve air/fuel ratio control using a feed-forward observer-based control strategy include estimating current and future airflow actuator positions, determining corresponding mass airflow values, and determining a future in-cylinder air charge based on a difference between the current and future mass airflow values. In one embodiment, the difference between current and future mass airflow estimates is used as a feed-forward term and combined with a sensed or measured value generated by a mass airflow sensor prior to-being processed using a manifold filling model to predict the future cylinder air charge.
    Type: Application
    Filed: May 24, 2002
    Publication date: December 5, 2002
    Inventors: Ihab S. Soliman, Tobias John Pallett, Jerry D. Robichaux