Patents by Inventor Daniel R. Cohn

Daniel R. Cohn 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: 20100147265
    Abstract: Engine management system for operation of a direct injection spark ignition gasoline engine. The system includes a gasoline engine, a source of gasoline and a source of an anti-knock agent. Gasoline and anti-knock agent are introduced into a proportioning valve that delivers a selected mixture of gasoline/anti-knock agent to a high pressure pump. At least one injector receives the selected mixture from the high pressure pump and delivers the mixture into a cylinder of the engine. The engine management system provides a rapidly variable mixture of directly injected anti-knock agent and gasoline which prevents knock as the engine torque increases.
    Type: Application
    Filed: January 28, 2010
    Publication date: June 17, 2010
    Applicant: ETHANOL BOOSTING SYSTEMS LLC
    Inventors: Leslie Bromberg, Paul Blumberg, Daniel R. Cohn, John Heywood
  • Patent number: 7726265
    Abstract: Fuel tank system for a direct ethanol injection octane boosted gasoline engine. The system includes a gasoline engine and a main fuel tank that contains a mix of gasoline and gasoline E85. A smaller secondary tank is provided to contain ethanol or E85. An injector directly injects in a separately controlled fashion ethanol or E85 into a cylinder of the engine to boost octane. A control module controls the relative amounts of gasoline and ethanol used and structure is provided for fueling the main and secondary fuel tanks.
    Type: Grant
    Filed: March 9, 2007
    Date of Patent: June 1, 2010
    Assignee: Ethanol Boosting Systems, LLC
    Inventors: Leslie Bromberg, Paul N. Blumberg, Daniel R. Cohn, John Heywood
  • Publication number: 20100121559
    Abstract: A fuel management system for using water for on-board vehicular separation of ethanol from ethanol-gasoline blends is described. Water or a water-alcohol mixture from a secondary tank is mixed with the ethanol-gasoline blend resulting in separation of the ethanol. By using on-board vehicular separation, the consumption of the externally supplied liquid from a secondary tank can be decreased to less than 1% of the gasoline consumption. This allows for long refilling periods for the externally supplied fluid. In another embodiment, a water-based fluid is directly injected into the cylinders of a spark ignition engine to eliminate knocking without causing misfire. In a further embodiment, an alcohol-based fluid is also used in those circumstances where injection of the water-based fluid may cause misfire.
    Type: Application
    Filed: November 2, 2009
    Publication date: May 13, 2010
    Inventors: Leslie Bromberg, Daniel R. Cohn, John Heywood
  • Patent number: 7703446
    Abstract: Engine management system for operation of a direct injection spark ignition gasoline engine. The system includes a gasoline engine, a source of gasoline and a source of an anti-knock agent. Gasoline and anti-knock agent are introduced into a proportioning valve that delivers a selected mixture of gasoline/anti-knock agent to a high pressure pump. At least one injector receives the selected mixture from the high pressure pump and delivers the mixture into a cylinder of the engine. The engine management system provides a rapidly variable mixture of directly injected anti-knock agent and gasoline which prevents knock as the engine torque increases.
    Type: Grant
    Filed: July 24, 2007
    Date of Patent: April 27, 2010
    Assignee: Ethanol Boosting Systems LLC
    Inventors: Leslie Bromberg, Paul Blumberg, Daniel R. Cohn, John Heywood
  • Patent number: 7681554
    Abstract: As one embodiment, a method of operating an engine of a vehicle is provided wherein the engine has a variable engine output. The method comprises during a first engine output, delivering a first fuel to at least a cylinder of the engine via a first injector and directly injecting a second fuel directly into said cylinder via a second injector; and during a second engine output lower than said first engine output, delivering said first fuel to said at least a cylinder of the engine via said first injector and directly injecting at least a purging substance via said second injector based on an idle period since a previous injection by said second injector.
    Type: Grant
    Filed: July 11, 2007
    Date of Patent: March 23, 2010
    Assignees: Ford Global Technologies, LLC, Ethanol Boosting Systems, LLC
    Inventors: Robert A. Stein, Leslie Bromberg, Paul N. Blumberg, Daniel R. Cohn, John B. Heywood
  • Publication number: 20100070155
    Abstract: Fuel management system for operation of a spark ignition gasoline engine. The system includes a gasoline engine powering the vehicle and a source of gasoline for introduction into the engine. A source of an anti-knock fuel such as ethanol is provided. An injector directly injects the anti-knock fuel into a cylinder of the engine and the control system shuts down the engine by stopping gasoline and anti-knock agent flow into the engine during vehicle deceleration and idling and restarts the engine upon driver demand. Direct ethanol injection and engine shutdown results in efficiencies similar to those of full hybrid vehicles.
    Type: Application
    Filed: November 9, 2009
    Publication date: March 18, 2010
    Applicant: ETHANOL BOOSTING SYSTEMS LLC
    Inventors: Leslie Bromberg, Paul N. Blumberg, Daniel R. Cohn, John Heywood
  • Publication number: 20100070154
    Abstract: Fuel management system of operation of a spark ignition engine. The system includes a source of gasoline and a source of anti-knock fuel. A proportioning valve receives the gasoline and the anti-knock fuel to discharge a mixture having a controlled gasoline/anti-knock fuel ratio. A single high pressure pump receives the mixture and delivers the mixture to an injector. A fuel management control system controls the proportioning valve and the injector for injection of the mixture into a cylinder of the engine to control knock. A preferred anti-knock fuel is ethanol.
    Type: Application
    Filed: November 9, 2009
    Publication date: March 18, 2010
    Applicant: ETHANOL BOOSTING SYSTEMS LLC
    Inventors: Paul N. Blumberg, Leslie Bromberg, John Heywood, Daniel R. Cohn
  • Publication number: 20100070156
    Abstract: Fuel management system for efficient operation of a spark ignition gasoline engine. Injectors inject an anti-knock agent such as ethanol directly into a cylinder of the engine. A fuel management microprocessor system controls injection of the anti-knock agent so as to control knock and minimize that amount of the anti-knock agent that is used in a drive cycle. It is preferred that the anti-knock agent is ethanol. The use of ethanol can be further minimized by injection in a non-uniform manner within a cylinder. The ethanol injection suppresses knock so that higher compression ratio and/or engine downsizing from increased turbocharging or supercharging can be used to increase the efficiency of the engine.
    Type: Application
    Filed: November 18, 2009
    Publication date: March 18, 2010
    Applicant: MASSACHUSETTS INSTITUTE OF TECHNOLOGY
    Inventors: Daniel R. Cohn, Leslie Bromberg, John B. Heywood
  • Publication number: 20100065016
    Abstract: A number of systems and methods are disclosed which increase the replenishment interval for anti-knock fluid. This is especially important during activities which require a large amount of anti-knock fluid, such as towing. In some embodiments, the systems and methods are used to reduce anti-knock fluid consumption. For example, changes to engine operation, such as rich operation, spark retarding, upspeeding, and variable valve timing, all serve to reduce the amount of anti-knock fluid required to eliminate knocking. In other embodiments, the composition of the anti-knock fluid is modified, such as by using a higher octane fluid, or through the addition of water to the anti-knock fluid. In other embodiments, the replenishment interval is increased through a larger anti-knock fluid storage capacity. In one embodiment, a three tank system is used where the third tank can be used to store gasoline or anti-knock fluid, depending on the driving conditions.
    Type: Application
    Filed: September 9, 2009
    Publication date: March 18, 2010
    Inventors: Leslie Bromberg, Daniel R. Cohn
  • Publication number: 20100063712
    Abstract: Engine management system for operation of a direct injection spark ignition gasoline engine. The system includes a gasoline engine, a source of gasoline and a source of an anti-knock agent. Gasoline and anti-knock agent are introduced into a proportioning valve that delivers a selected mixture of gasoline/anti-knock agent to a high pressure pump. At least one injector receives the selected mixture from the high pressure pump and delivers the mixture into a cylinder of the engine. The engine management system provides a rapidly variable mixture of directly injected anti-knock agent and gasoline which prevents knock as the engine torque increases.
    Type: Application
    Filed: July 24, 2007
    Publication date: March 11, 2010
    Inventors: Leslie Bromberg, Paul N. Blumberg, Daniel R. Cohn, John B. Heywood
  • Publication number: 20100022669
    Abstract: The present invention includes a method for converting renewable energy source electricity and a hydrocarbon feedstock into a liquid fuel by providing a source of renewable electrical energy in communication with a synthesis gas generation unit and an air separation unit. Oxygen from the air separation unit and a hydrocarbon feedstock is provided to the synthesis gas generation unit, thereby causing partial oxidation reactions in the synthesis gas generation unit in a process that converts the hydrocarbon feedstock into synthesis gas. The synthesis gas is then converted into a liquid fuel.
    Type: Application
    Filed: October 7, 2009
    Publication date: January 28, 2010
    Inventors: Daniel R. Cohn, Jeffrey E. Surma, Leslie Bromberg
  • Publication number: 20100006050
    Abstract: Fuel management system for enhanced operation of a spark ignition gasoline engine. Injectors inject an anti-knock agent such as ethanol directly into a cylinder. It is preferred that the direct injection occur after the inlet valve is closed. It is also preferred that stoichiometric operation with a three way catalyst be used to minimize emissions. In addition, it is also preferred that the anti-knock agents have a heat of vaporization per unit of combustion energy that is at least three times that of gasoline.
    Type: Application
    Filed: September 18, 2009
    Publication date: January 14, 2010
    Inventors: Leslie Bromberg, Daniel R. Cohn, John B. Heywood
  • Patent number: 7640913
    Abstract: Fuel management system for operation of a spark ignition engine. The system includes a source of gasoline and a source of anti-knock fuel. A proportioning valve receives the gasoline and the anti-knock fuel to discharge a mixture having a controlled gasoline/anti-knock fuel ratio. A single high pressure pump receives the mixture and delivers the mixture to an injector. A fuel management control system controls the proportioning valve and the injector for injection of the mixture into a cylinder of the engine to control knock. A preferred anti-knock fuel is ethanol.
    Type: Grant
    Filed: March 6, 2007
    Date of Patent: January 5, 2010
    Assignee: Ethanol Boosting Systems, LLC
    Inventors: Paul N. Blumberg, Leslie Bromberg, John Heywood, Daniel R. Cohn
  • Patent number: 7640915
    Abstract: Fuel management system for efficient operation of a spark ignition gasoline engine. Injectors inject an anti-knock agent such as ethanol directly into a cylinder of the engine. A fuel management microprocessor system controls injection of the anti-knock agent so as to control knock and minimize that amount of the anti-knock agent that is used in a drive cycle. It is preferred that the anti-knock agent is ethanol. The use of ethanol can be further minimized by injection in a non-uniform manner within a cylinder. The ethanol injection suppresses knock so that higher compression ratio and/or engine downsizing from increased turbocharging or supercharging can be used to increase the efficiency of the engine.
    Type: Grant
    Filed: October 12, 2007
    Date of Patent: January 5, 2010
    Assignee: Massachusetts Institute of Technology
    Inventors: Daniel R. Cohn, Leslie Bromberg, John B. Heywood
  • Patent number: 7637250
    Abstract: Fuel management system for operation of a spark ignition gasoline engine. The system includes a gasoline engine powering the vehicle and a source of gasoline for introduction into the engine. A source of an anti-knock fuel such as ethanol is provided. An injector directly injects the anti-knock fuel into a cylinder of the engine and the control system shuts down the engine by stopping gasoline and anti-knock agent flow into the engine during vehicle deceleration and idling and restarts the engine upon driver demand. Direct ethanol injection and engine shutdown results in efficiencies similar to those of full hybrid vehicles.
    Type: Grant
    Filed: March 8, 2007
    Date of Patent: December 29, 2009
    Assignee: Ethanol Boosting Systems, LLC
    Inventors: Leslie Bromberg, Paul Blumberg, Daniel R. Cohn, John Heywood
  • Patent number: 7597860
    Abstract: A novel apparatus and method is disclosed for a plasmatron fuel converter (“plasmatron”) that efficiently uses electrical energy to produce hydrogen rich gas. The volume and shape of the plasma discharge is controlled by a fluid flow established in a plasma discharge volume. A plasmatron according to this invention produces a substantially large effective plasma discharge volume allowing for substantially greater volumetric efficiency in the initiation of chemical reactions within a volume of bulk fluid reactant flowing through the plasmatron.
    Type: Grant
    Filed: April 8, 2005
    Date of Patent: October 6, 2009
    Assignee: Massachusetts Institute of Technology
    Inventors: Alexander Rabinovich, Nikolai Alexeev, Leslie Bromberg, Daniel R. Cohn, Andrei Samokhin
  • Publication number: 20090084349
    Abstract: Fuel management system for efficient operation of a spark ignition gasoline engine. Injectors inject an anti-knock agent such as ethanol directly into a cylinder of the engine. A fuel management microprocessor system controls injection of the anti-knock agent so as to control knock and minimize that amount of the anti-knock agent that is used in a drive cycle. It is preferred that the anti-knock agent is ethanol. The use of ethanol can be further minimized by injection in a non-uniform manner within a cylinder. The ethanol injection suppresses knock so that higher compression ratio and/or engine downsizing from increased turbocharging or supercharging can be used to increase the efficiency of the engine.
    Type: Application
    Filed: December 8, 2008
    Publication date: April 2, 2009
    Applicant: MASSACHUSETTS INSTITUTE OF TECHNOLOGY
    Inventors: Daniel R. COHN, Leslie BROMBERG, John B. HEYWOOD
  • Publication number: 20090024306
    Abstract: Fuel management system for a spark ignition gasoline engine. The system includes a gasoline engine, a source of gasoline, a source of a second liquid fuel and a means for introducing gasoline into the cylinders of the engine. Injectors directly inject the second liquid fuel into the cylinders of the engine and a fuel management control system controls injection of the second fuel into the cylinder so that it is provided in an amount needed to prevent knock as torque increases or other conditions require. A means for providing fast burn is provided.
    Type: Application
    Filed: July 3, 2008
    Publication date: January 22, 2009
    Inventors: Leslie Bromberg, Paul Blumberg, Daniel R. Cohn
  • Patent number: 7461628
    Abstract: A method of operating an engine, comprising of performing homogeneous charge compression ignition combustion during a first operating condition, and performing spark ignition combustion during a second operating condition, where an amount of directly injected alcohol in at least one of said homogeneous charge compression ignition combustion and said spark ignition combustion is varied in response to at least an operating parameter.
    Type: Grant
    Filed: December 1, 2006
    Date of Patent: December 9, 2008
    Assignee: Ford Global Technologies, LLC
    Inventors: Paul Blumberg, Leslie Bromberg, Daniel R. Cohn, John B. Heywood, George Davis, Michael Zubeck, Robert Stein
  • Patent number: 7444987
    Abstract: Fuel management system for efficient operation of a spark ignition gasoline engine. Injectors inject an anti-knock agent such as ethanol directly into a cylinder of the engine. A fuel management microprocessor system controls injection of the anti-knock agent so as to control knock and minimize that amount of the anti-knock agent that is used in a drive cycle. It is preferred that the anti-knock agent is ethanol. The use of ethanol can be further minimized by injection in a non-uniform manner within a cylinder. The ethanol injection suppresses knock so that higher compression ratio and/or engine downsizing from increased turbocharging or supercharging can be used to increase the efficiency of the engine.
    Type: Grant
    Filed: September 19, 2005
    Date of Patent: November 4, 2008
    Assignee: Massachusetts Institute of Technology
    Inventors: Daniel R. Cohn, Leslie Bromberg, John B. Heywood