Patents by Inventor Chen-Fang Chang

Chen-Fang Chang 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: 20070113821
    Abstract: A method and apparatus are provided to control combustion in a multi-cylinder internal combustion engine operating in a controlled auto-ignition mode with minimum combustion phasing error using a least amount of fuel reforming. This comprises monitoring combustion in each cylinder, and determining a target combustion phasing. Fuel delivery to each cylinder is selectively controlled effective to achieve the target combustion phasing, and, effective to achieve the target combustion phasing further comprises controlling the fuel delivery effective to equilibrate combustion phasing of the cylinders.
    Type: Application
    Filed: November 16, 2006
    Publication date: May 24, 2007
    Applicant: GM Global Technology Operations, Inc.
    Inventors: Jun-Mo Kang, Jyh-Shin Chen, Chen-Fang Chang, Tang-Wei Kuo
  • Patent number: 7178493
    Abstract: A method and system to avoid collision of piston and engine valves is provided. This facilitates use of a fully flexible variable valve actuation system over its operating range, without arbitrary constraints. Included is actuation control of the engine valve, determination of a crank angle at which to initiate engine valve opening, and determination of a desired valve lift, and, duration of valve open time. Opening profile for the engine valve is estimated. A first and a second crank angle are calculated, based upon the estimated opening profile. The crank angle to initiate engine valve opening is determined by adding a safety margin to the second crank angle. The method determines a maximum valve lift, given the duration of valve open time and an engine valve opening crank angle, and a minimum duration of valve open time, given a valve lift and an engine valve opening crank angle.
    Type: Grant
    Filed: July 8, 2005
    Date of Patent: February 20, 2007
    Assignee: GM Global Technology Operations, Inc.
    Inventors: Jun-Mo Kang, Chen-Fang Chang
  • Publication number: 20070006832
    Abstract: A method and system to avoid collision of piston and engine valves is provided. This facilitates use of a fully flexible variable valve actuation system over its operating range, without arbitrary constraints. Included is actuation control of the engine valve, determination of a crank angle at which to initiate engine valve opening, and determination of a desired valve lift, and, duration of valve open time. Opening profile for the engine valve is estimated. A first and a second crank angle are calculated, based upon the estimated opening profile. The crank angle to initiate engine valve opening is determined by adding a safety margin to the second crank angle. The method determines a maximum valve lift, given the duration of valve open time and an engine valve opening crank angle, and a minimum duration of valve open time, given a valve lift and an engine valve opening crank angle.
    Type: Application
    Filed: July 8, 2005
    Publication date: January 11, 2007
    Inventors: Jun-Mo Kang, Chen-Fang Chang
  • Publication number: 20060243241
    Abstract: The present invention relates to methods for robust controlled auto-ignition and spark ignited combustion controls in gasoline direct-injection engines, including transients, using either exhaust re-breathing or a combination of exhaust re-compression and re-breathing valve strategy. These methods are capable of enabling engine operation with either lean of stoichiometric or stoichiometric air/fuel ratio for oxides of nitrogen (NOx) control, with varying exhaust gas recirculation (EGR) rates and throttle valve positions for knock control, and with a combination of homogeneous charge compression ignition (HCCI) and spark ignition (SI) combustion modes to optimize fuel economy over a wide range of engine operating conditions.
    Type: Application
    Filed: March 22, 2006
    Publication date: November 2, 2006
    Inventors: Tang-Wei Kuo, Zongxuan Sun, James Eng, Barry Brown, Paul Najt, Jun-Mo Kang, Chen-Fang Chang, Man-Feng Chang
  • Publication number: 20060196467
    Abstract: A direct injection controlled auto-ignition engine is operated at steady state, within a homogeneous charge compression-ignition (HCCI) load range and with fuel-air-diluent mixtures at predetermined conditions, for each speed and load, of engine control inputs, including at least fueling mass flow rate, injection timing (FI), spark timing (SI) and exhaust recompression obtained by negative valve overlap (NVO). During load change rates below a predetermined threshold, SI, FI and NVO change rates are synchronized to current changes in the fueling mass flow rate. For fast load increases above the threshold, the cylinder charge is temporarily enriched by increasing the percentage of residual gas or reducing the percentage of fresh air mass in the charge sufficiently to maintain auto-ignition temperature during the load change. This may be done by delaying NVO action for a predetermined speed-dependent number of engine cycles.
    Type: Application
    Filed: March 2, 2006
    Publication date: September 7, 2006
    Inventors: Jun-Mo Kang, Chen-Fang Chang, Zongxuan Sun, Tang-Wei Kuo, James Eng, Barry Brown, Paul Najt, Man-Feng Chang
  • Publication number: 20060196469
    Abstract: A method is provided for control of a direct-injection engine operated with controlled auto-ignition (HCCI) during load transient operations between modes of lean combustion low load (HCCI/Lean) and stiochiometric combustion medium load (HCCI/Stoich.). The method includes 1) operating the engine at steady state, within a homogeneous charge compression-ignition (HCCI) load range, with fuel-air-exhaust gas mixtures at predetermined conditions, for each speed and load, and controlling the engine during changes of operating mode between one to another of the HCCI/Stoich. medium load mode and the HCCI/Lean lower load mode by synchronizing change rates of predetermined controlled inputs to the current engine fueling change rate.
    Type: Application
    Filed: March 2, 2006
    Publication date: September 7, 2006
    Inventors: Tang-Wei Kuo, Jun-Mo Kang, Chen-Fang Chang, Zongxuan Sun, James Eng, Barry Brown, Paul Najt, Man-Feng Chang
  • Publication number: 20060196468
    Abstract: A direct injection controlled auto-ignition engine is operated at steady state, within a homogeneous charge compression-ignition (HCCI) load range and with fuel-air-diluent mixtures at predetermined conditions, for each speed and load, of engine control inputs, including at least injection timing (FI), spark timing (SI), throttle position, exhaust gas recirculation (EGR) valve setting and exhaust recompression obtained by negative valve overlap (NVO). During engine speed transients, the control inputs are synchronized to changes in the current engine speed, and also with any concurrent changes in the engine fueling rate. Inputs that are inactive during all or part of a speed change have a zero change rate while inactive. The method maintains robust auto-ignition combustion during speed transients with constant or variable fueling rates and with or without load changes.
    Type: Application
    Filed: March 2, 2006
    Publication date: September 7, 2006
    Inventors: Chen-Fang Chang, Zongxuan Sun, Jun-Mo Kang, Tang-Wei Kuo, James Eng, Barry Brown, Paul Najt, Man-Feng Chang
  • Publication number: 20060196466
    Abstract: A method is provided for control of transition between combustion modes of a direct-injection engine operable in a homogeneous charge compression ignition (HCCI) mode at lower loads and a spark ignition flame propagation (SI) mode at higher loads. The engine includes a variable valve actuation system including two-step high and low lift valve actuation and separate cam phasing for both intake and exhaust valves. The method includes operating the engine at steady state, with fuel-air-exhaust gas mixtures at predetermined conditions, for each speed and load, and controlling the engine during mode changes between the HCCI mode and the SI mode by switching the exhaust and intake valves between low lift for HCCI operation and high lift for SI operation.
    Type: Application
    Filed: March 2, 2006
    Publication date: September 7, 2006
    Inventors: Tang-Wei Kuo, Zongxuan Sun, Jun-Mo Kang, James Eng, Chen-Fang Chang, Barry Brown, Paul Najt, Man-Feng Chang
  • Publication number: 20060016417
    Abstract: A four-stroke internal combustion engine is operated in controlled auto-ignition mode by any of a variety of valve control strategies conducive to controlled auto-ignition conditions in conjunction with in-cylinder fuel charges that are at either stoichiometric or lean of stoichiometric air-fuel ratios. A measure of engine NOx emission is provided and when it crosses a predetermined threshold, the in-cylinder fuel charge is transitioned from the operative one of the stoichiometric or lean of stoichiometric air-fuel ratios to the inoperative one of the stoichiometric or lean of stoichiometric air-fuel ratios.
    Type: Application
    Filed: June 30, 2005
    Publication date: January 26, 2006
    Inventors: Tang-Wei Kuo, Paul Najt, James Eng, Barry Brown, Chen-Fang Chang, Jun-Mo Kang
  • Patent number: 6178949
    Abstract: An improved engine control in which the fuel volatility is detected based on a measure of the fired-to-motored cylinder pressure ratio, and used to trim fuel and spark timing controls during engine warm-up and transient fueling periods. In a first embodiment, a matrix of empirically determined pressure ratio values that occur with fuels of differing volatility is stored and compared to the measured pressure ratio to identify the closest stored pressure ratio, and the fuel volatility is determined based on the fuel volatility associated with the identified pressure ratio. In a second embodiment, the actual fuel vapor-to-air equivalence ratio is computed based on the measured pressure ratio, and the fuel volatility is determined based on the deviation between the actual ratio and the desired fuel vapor-to-air equivalence ratio.
    Type: Grant
    Filed: October 4, 1999
    Date of Patent: January 30, 2001
    Assignee: General Motors Corporation
    Inventors: John E. Kirwan, Frederic Anton Matekunas, Scott Willis Jorgensen, Chen-Fang Chang
  • Patent number: 6176222
    Abstract: An improved engine fuel control method which divides the liquid fuel into a plurality of components characterized by relative volatility. The mass and evaporation characteristics of each fuel volatility component are determined separately within the fuel puddle, with the overall puddle behavior being characterized as the sum of the behaviors of the individual volatility components. The method involves determining, for each engine cycle, the mass of fuel that will evaporate from the puddle, the mass of vapor required to achieve the desired air/fuel ratio for the engine cylinder, the fraction of the injected fuel that will vaporize, and the mass of fuel that needs to be injected in order to achieve the desired air/fuel ratio in the cylinder. Finally, the puddle mass is updated for the next intake event.
    Type: Grant
    Filed: November 9, 1999
    Date of Patent: January 23, 2001
    Assignee: General Motors Corporation
    Inventors: John E. Kirwan, Scott Willis Jorgensen, Frederic Anton Matekunas, Chen-Fang Chang