Patents by Inventor Hiroki Morimoto

Hiroki Morimoto 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: 20260165499
    Abstract: An air mattress includes a main mattress configured to support a body of a user, a sub mattress that is positioned below the main mattress, and a mattress controller configured to control internal pressure of the main mattress and the sub mattress. The sub mattress includes a head part air cell band configured to cause a cervical region of the user to bend forward, and a chest air cell band configured to lift a chest of the user from a back side of the user.
    Type: Application
    Filed: April 22, 2025
    Publication date: June 18, 2026
    Inventors: Ryosuke YAHAGI, Hiroki MORIMOTO
  • Patent number: 11293395
    Abstract: In an engine having fuel supply means for supplying fuel containing gasoline to a combustion chamber and ignition means for igniting an air-fuel mixture, if knocking occurs when ignition is performed at a reference ignition timing set on a retarded side of MBT that is an ignition timing at which the engine torque is maximized in a high-load region in which the engine load is larger than a predetermined load, ignition advance control that causes the ignition means to perform ignition at a timing on an advanced side of the reference ignition timing is performed.
    Type: Grant
    Filed: July 9, 2019
    Date of Patent: April 5, 2022
    Assignee: Mazda Motor Corporation
    Inventors: Mitsuo Hitomi, Eiji Nakai, Naohiro Yamaguchi, Hiroki Morimoto
  • Patent number: 11242812
    Abstract: An engine control method includes: a first fuel supply step of supplying fuel into the combustion chamber using an injector when a spark plug makes flame in the combustion chamber so that an air-fuel mixture is generated at least around the spark plug, the air-fuel mixture having an air-fuel mass ratio A/F or a gas-fuel mass ratio G/F, in which gas includes air, higher than a stoichiometric air-fuel ratio; after the first fuel supply step, an ignition step of making the flame in the combustion chamber in the compression stroke using the spark plug; and after the ignition step, a second fuel supply step of supplying the fuel into the combustion chamber in the compression stroke using the injector to increase a fuel concentration of the air-fuel mixture in the combustion chamber.
    Type: Grant
    Filed: January 23, 2019
    Date of Patent: February 8, 2022
    Assignee: Mazda Motor Corporation
    Inventors: Mitsuo Hitomi, Eiji Nakai, Naohiro Yamaguchi, Hiroki Morimoto
  • Publication number: 20210310456
    Abstract: In an engine having fuel supply means for supplying fuel containing gasoline to a combustion chamber and ignition means for igniting an air-fuel mixture, if knocking occurs when ignition is performed at a reference ignition timing set on a retarded side of MBT that is an ignition timing at which the engine torque is maximized in a high-load region in which the engine load is larger than a predetermined load, ignition advance control that causes the ignition means to perform ignition at a timing on an advanced side of the reference ignition timing is performed.
    Type: Application
    Filed: July 9, 2019
    Publication date: October 7, 2021
    Inventors: Mitsuo HITOMI, Eiji NAKAI, Naohiro YAMAGUCHI, Hiroki MORIMOTO
  • Patent number: 11028797
    Abstract: The engine control method includes a fuel supply step and an ignition step. In the fuel supply step, the injector supplies fuel into a combustion chamber. In the ignition step, an spark plug arranged in the combustion chamber makes a flame after the supply of the fuel into the combustion chamber and at a timing when a flow strength in the combustion chamber is greater than a predetermined value in a compression stroke during or before a post-mid stage where the compression stroke is divided into four stages of a pre-stage, a pre-mid stage, a post-mid stage, and a post-stage.
    Type: Grant
    Filed: January 23, 2019
    Date of Patent: June 8, 2021
    Assignee: Mazda Motor Corporation
    Inventors: Mitsuo Hitomi, Eiji Nakai, Naohiro Yamaguchi, Hiroki Morimoto
  • Patent number: 10934961
    Abstract: A control device for controlling an engine including an injector that supplies fuel into a cylinder and an in-cylinder pressure sensor that detects an in-cylinder pressure being a pressure inside the cylinder, is provided. The device includes a processor configured to execute an abnormal combustion determining module to determine whether combustion of a mixture gas inside the cylinder is abnormal based on a detection value of the in-cylinder pressure sensor. The abnormal combustion determining module determines that an abnormal combustion has occurred in which progress of the combustion of the mixture gas is excessively fast, when an in-cylinder pressure intensity that is a spectrum value of a frequency component of an in-cylinder pressure waveform less than a given reference frequency is greater than or equal to a given determination intensity, the in-cylinder pressure waveform being detected by the in-cylinder pressure sensor.
    Type: Grant
    Filed: February 10, 2020
    Date of Patent: March 2, 2021
    Assignee: Mazda Motor Corporation
    Inventors: Hiroki Morimoto, Takeshi Tsugawa
  • Publication number: 20210033038
    Abstract: An engine control method includes: a first fuel supply step of supplying fuel into the combustion chamber using an injector when a spark plug makes flame in the combustion chamber so that an air-fuel mixture is generated at least around the spark plug, the air-fuel mixture having an air-fuel mass ratio A/F or a gas-fuel mass ratio G/F, in which gas includes air, higher than a stoichiometric air-fuel ratio; after the first fuel supply step, an ignition step of making the flame in the combustion chamber in the compression stroke using the spark plug; and after the ignition step, a second fuel supply step of supplying the fuel into the combustion chamber in the compression stroke using the injector to increase a fuel concentration of the air-fuel mixture in the combustion chamber.
    Type: Application
    Filed: January 23, 2019
    Publication date: February 4, 2021
    Inventors: Mitsuo HITOMI, Eiji NAKAI, Naohiro YAMAGUCHI, Hiroki MORIMOTO
  • Publication number: 20210033042
    Abstract: The engine control method includes a fuel supply step and an ignition step. In the fuel supply step, the injector supplies fuel into a combustion chamber. In the ignition step, an spark plug arranged in the combustion chamber makes a flame after the supply of the fuel into the combustion chamber and at a timing when a flow strength in the combustion chamber is greater than a predetermined value in a compression stroke during or before a post-mid stage where the compression stroke is divided into four stages of a pre-stage, a pre-mid stage, a post-mid stage, and a post-stage.
    Type: Application
    Filed: January 23, 2019
    Publication date: February 4, 2021
    Inventors: Mitsuo HITOMI, Eiji NAKAI, Naohiro YAMAGUCHI, Hiroki MORIMOTO
  • Patent number: 10895215
    Abstract: A control system for a pre-mixture compression-ignition engine is provided, configured such that in a first combustion mode, the control unit controls the fuel injection valve to have a fuel amount within a mixture gas in an outer circumferential portion of the combustion chamber larger than in the center portion, the swirl generating part to generate a swirl flow in the outer circumferential portion, and the spark plug to ignite the mixture gas in the center portion. In a second combustion mode, the control unit controls the fuel injection valve to start a fuel injection on intake stroke so that the mixture gas is formed in the entire combustion chamber, the swirl generating part so that a swirl flow becomes weaker than in the first combustion mode, and the spark plug to ignite the mixture gas before CTDC.
    Type: Grant
    Filed: August 21, 2018
    Date of Patent: January 19, 2021
    Assignee: Mazda Motor Corporation
    Inventors: Naohiro Yamaguchi, Hiroki Morimoto, Toru Miyamoto, Akira Noomo
  • Publication number: 20200386181
    Abstract: A control device for controlling an engine including an injector that supplies fuel into a cylinder and an in-cylinder pressure sensor that detects an in-cylinder pressure being a pressure inside the cylinder, is provided. The device includes a processor configured to execute an abnormal combustion determining module to determine whether combustion of a mixture gas inside the cylinder is abnormal based on a detection value of the in-cylinder pressure sensor. The abnormal combustion determining module determines that an abnormal combustion has occurred in which progress of the combustion of the mixture gas is excessively fast, when an in-cylinder pressure intensity that is a spectrum value of a frequency component of an in-cylinder pressure waveform less than a given reference frequency is greater than or equal to a given determination intensity, the in-cylinder pressure waveform being detected by the in-cylinder pressure sensor.
    Type: Application
    Filed: February 10, 2020
    Publication date: December 10, 2020
    Inventors: Hiroki Morimoto, Takeshi Tsugawa
  • Patent number: 10794317
    Abstract: A control device for a compression-ignition engine in which partial compression-ignition combustion including spark ignition (SI) combustion performed by combusting a portion of a mixture gas inside a cylinder by spark-ignition followed by compression ignition (CI) combustion performed by causing the remaining mixture gas to self-ignite is executed at least within a part of an engine operating range is provided, which includes a detector configured to detect a given parameter that changes as combustion progresses inside the cylinder, an A/F (air-fuel ratio) controller configured to change an air-fuel ratio of air to fuel introduced into the cylinder, and a combustion controller configured to determine combustion stability based on the detected parameter of the detector and control the A/F controller to reduce the air-fuel ratio when it is confirmed that during the partial compression-ignition combustion the combustion stability is low.
    Type: Grant
    Filed: October 22, 2018
    Date of Patent: October 6, 2020
    Assignee: Mazda Motor Corporation
    Inventors: Daisuke Tanaka, Yuichiro Tsumura, Kenko Ujihara, Masayoshi Higashio, Hiroki Morimoto
  • Patent number: 10767612
    Abstract: A control device for a compression-ignition (CI) engine in which partial CI combustion including spark ignition (SI) combustion performed by combusting a portion of mixture gas inside a cylinder by spark ignition followed by CI combustion performed by causing the rest of the mixture gas inside the cylinder to self-ignite is executed within a part of an engine operating range, is provided, including an EGR (exhaust gas recirculation) controller configured to change an EGR ratio, and a combustion controller configured to control the EGR controller during the partial compression-ignition combustion to switch a combustion mode between first and second modes in which the EGR ratio is higher than the first mode. After the first mode is switched to the second mode, if a condition is satisfied, the combustion controller causes the resumption to the first mode after a given period of time has elapsed from the switching.
    Type: Grant
    Filed: October 23, 2018
    Date of Patent: September 8, 2020
    Assignee: Mazda Motor Corporation
    Inventors: Daisuke Tanaka, Yuichiro Tsumura, Kenko Ujihara, Yuto Matsushima, Masayoshi Higashio, Hiroki Morimoto
  • Patent number: 10648411
    Abstract: To provide a controller and a control method, for an internal combustion engine, that can detect occurrence of knocking appropriately, even though the frequency distribution of the knock signal is distorted according to the occurrence state of knocking. The controller for the internal combustion engine calculates the background level by processing a low pass filter to the knock signal; and performs a low side frequency increase which makes a low side frequency, which is a cutoff frequency of the low pass filter in the case where the knock signal is smaller than an output value of the low pass filter, higher than a high side frequency, which is a cutoff frequency of the low pass filter in the case where the knock signal is larger than the output value of the low pass filter.
    Type: Grant
    Filed: May 5, 2017
    Date of Patent: May 12, 2020
    Assignees: Mitsubishi Electric Corporation, MAZDA MOTOR CORPORATION
    Inventors: Yuhei Matsushima, Nobuhiko Yokoyama, Hiroki Morimoto
  • Patent number: 10641161
    Abstract: A control device for a compression-ignition engine is provided, in which partial compression-ignition combustion including spark ignition (SI) combustion performed by combusting a portion of mixture gas inside a cylinder by spark-ignition followed by compression ignition (CI) combustion performed by causing the rest of the mixture gas inside the cylinder to self-ignite is executed within a part of an operating range of the engine. The device includes a detector configured to detect a parameter related to noise caused by the combustion inside the cylinder, an EGR (exhaust gas recirculation) controller configured to change an EGR ratio being a ratio of exhaust gas introduced into the cylinder, and a combustion controller configured to control the EGR controller to increase the EGR ratio when a noise index value specified based on the detected parameter of the detector is confirmed to exceed a given threshold during the partial compression-ignition combustion.
    Type: Grant
    Filed: October 22, 2018
    Date of Patent: May 5, 2020
    Assignee: Mazda Motor Corporation
    Inventors: Daisuke Tanaka, Yuichiro Tsumura, Kenichi Nakashima, Taiki Maiguma, Hiroki Morimoto, Masayoshi Higashio, Kensuke Ashikaga
  • Publication number: 20190145306
    Abstract: A control device for a compression-ignition engine is provided, in which partial compression-ignition combustion including spark ignition (SI) combustion performed by combusting a portion of mixture gas inside a cylinder by spark-ignition followed by compression ignition (CI) combustion performed by causing the rest of the mixture gas inside the cylinder to self-ignite is executed within a part of an operating range of the engine. The device includes a detector configured to detect a parameter related to noise caused by the combustion inside the cylinder, an EGR (exhaust gas recirculation) controller configured to change an EGR ratio being a ratio of exhaust gas introduced into the cylinder, and a combustion controller configured to control the EGR controller to increase the EGR ratio when a noise index value specified based on the detected parameter of the detector is confirmed to exceed a given threshold during the partial compression-ignition combustion.
    Type: Application
    Filed: October 22, 2018
    Publication date: May 16, 2019
    Inventors: Daisuke Tanaka, Yuichiro Tsumura, Kenichi Nakashima, Taiki Maiguma, Hiroki Morimoto, Masayoshi Higashio, Kensuke Ashikaga
  • Publication number: 20190145367
    Abstract: A control device for a compression-ignition (CI) engine in which partial CI combustion including spark ignition (SI) combustion performed by combusting a portion of mixture gas inside a cylinder by spark ignition followed by CI combustion performed by causing the rest of the mixture gas inside the cylinder to self-ignite is executed within a part of an engine operating range, is provided, including an EGR (exhaust gas recirculation) controller configured to change an EGR ratio, and a combustion controller configured to control the EGR controller during the partial compression-ignition combustion to switch a combustion mode between first and second modes in which the EGR ratio is higher than the first mode. After the first mode is switched to the second mode, if a condition is satisfied, the combustion controller causes the resumption to the first mode after a given period of time has elapsed from the switching.
    Type: Application
    Filed: October 23, 2018
    Publication date: May 16, 2019
    Inventors: Daisuke Tanaka, Yuichiro Tsumura, Kenko Ujihara, Yuto Matsushima, Masayoshi Higashio, Hiroki Morimoto
  • Publication number: 20190145338
    Abstract: A control device for a compression-ignition engine in which partial compression-ignition combustion including spark ignition (SI) combustion performed by combusting a portion of a mixture gas inside a cylinder by spark-ignition followed by compression ignition (CI) combustion performed by causing the remaining mixture gas to self-ignite is executed at least within a part of an engine operating range is provided, which includes a detector configured to detect a given parameter that changes as combustion progresses inside the cylinder, an A/F (air-fuel ratio) controller configured to change an air-fuel ratio of air to fuel introduced into the cylinder, and a combustion controller configured to determine combustion stability based on the detected parameter of the detector and control the A/F controller to reduce the air-fuel ratio when it is confirmed that during the partial compression-ignition combustion the combustion stability is low.
    Type: Application
    Filed: October 22, 2018
    Publication date: May 16, 2019
    Inventors: Daisuke Tanaka, Yuichiro Tsumura, Kenko Ujihara, Masayoshi Higashio, Hiroki Morimoto
  • Publication number: 20190063361
    Abstract: A control system for a pre-mixture compression-ignition engine is provided, configured such that in a first combustion mode, the control unit controls the fuel injection valve to have a fuel amount within a mixture gas in an outer circumferential portion of the combustion chamber larger than in the center portion, the swirl generating part to generate a swirl flow in the outer circumferential portion, and the spark plug to ignite the mixture gas in the center portion. In a second combustion mode, the control unit controls the fuel injection valve to start a fuel injection on intake stroke so that the mixture gas is formed in the entire combustion chamber, the swirl generating part so that a swirl flow becomes weaker than in the first combustion mode, and the spark plug to ignite the mixture gas before CTDC.
    Type: Application
    Filed: August 21, 2018
    Publication date: February 28, 2019
    Inventors: Naohiro Yamaguchi, Hiroki Morimoto, Toru Miyamoto, Akira Noomo
  • Patent number: 9897034
    Abstract: Provided is a control device of an engine that can certainly suppress and avoid pre-ignition. A control device of an engine is an engine control device for controlling the behavior of fuel that is directly injected into a combustion chamber of a cylinder by a tumble flow, and it has an injector that directly injects the fuel into the combustion chamber, an intake port that generates the tumble flow in the combustion chamber, and an ECU that injects the fuel from the injector at a plurality of injection timings including an intake-stroke-early-half injection timing that is set at an early half of the intake stroke of the cylinder, when an operating state of the engine is in a high-load, low-rotation range.
    Type: Grant
    Filed: June 15, 2016
    Date of Patent: February 20, 2018
    Assignee: Mazda Motor Corporation
    Inventors: Takeshi Tsugawa, Hiroki Morimoto, Nobuhiko Yokoyama, Shouichi Aiga, Yoshitomo Matsuo, Tomoaki Fujiyama, Yoshitaka Wada
  • Patent number: 9849373
    Abstract: A data communication restricted content providing device executes a program of game content, accepts operation input for the game content, controls the game content in accordance with operation input, generates, based on information of a changed progress condition of the game content, audio data indicating the progress condition, and plays back the audio data. An information processing device acquires an audio signal played back by the content providing device, extracts information of the progress condition from the audio signal, and outputs, to an external device, information of the progress condition.
    Type: Grant
    Filed: June 18, 2014
    Date of Patent: December 26, 2017
    Assignee: SQUARE ENIX CO., LTD.
    Inventor: Hiroki Morimoto