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    • 62. 发明申请
    • Control System of Internal Combustion Engine
    • 内燃机控制系统
    • US20070266991A1
    • 2007-11-22
    • US11628959
    • 2005-06-14
    • Mamoru Yoshioka
    • Mamoru Yoshioka
    • F02M3/00
    • F02D41/123F01N3/101F01N13/009F01N13/0093F02D31/002F02D41/0005Y02A50/2324Y02T10/22Y02T10/42
    • There is provided a control system for controlling an internal combustion engine with an exhaust system provided with a catalyst, comprising a fuel cut means for stopping the supply of fuel to the internal combustion engine when the vehicle in which the internal combustion engine is mounted is in a decelerating state, the control system of an internal combustion engine characterized in that, in the case that the fuel cut is executed, when the speed SPD of the vehicle is higher than a predetermined first vehicle speed Sh, the intake air amount Ga of the internal combustion engine is made smaller than the intake air amount Gai of when the internal combustion engine is in the idling state (step 120), while when the speed SPD is the first vehicle speed Sh or less, the intake air amount Ga is made larger than the intake air amount Gai of when the internal combustion engine is in the idling state (step 130).
    • 提供了一种用于利用具有催化剂的排气系统来控制内燃机的控制系统,包括燃料切断装置,用于在其中安装有内燃机的车辆处于内燃机时停止向内燃机供应燃料 减速状态,内燃机的控制系统,其特征在于,在执行燃料切断的情况下,当车辆的速度SPD高于预定的第一车速Sh时,吸入空气量Ga 使内燃机小于内燃机处于怠速状态时的进气量Gai(步骤120),而当速度SPD为第一车速Sh以下时,进气量Ga变大 比内燃机处于怠速状态时的进气量Gai(步骤130)。
    • 64. 发明申请
    • Control Device of Internal Combustion Engine
    • 内燃机控制装置
    • US20070233355A1
    • 2007-10-04
    • US11761336
    • 2007-06-11
    • Mamoru Yoshioka
    • Mamoru Yoshioka
    • G06F7/00
    • F02D41/123F02D2200/0802
    • A control device of an internal combustion engine suppressing catalyst deterioration by prohibiting fuel cuts, wherein the generation of odor from the catalyst after deceleration is suppressed. The control device is provided with a fuel cut executing device for stopping the supply of fuel to an internal combustion engine when a vehicle is in a decelerating state and a fuel cut prohibiting device for prohibiting a fuel cut when a temperature of a catalyst provided in an exhaust system is a predetermined temperature or more, wherein when a fuel cut is prohibited by the fuel cut prohibiting device when the vehicle decelerates in a predetermined period after an increased fuel operation is performed, the internal combustion engine is operated so that the combustion air-fuel ratio becomes lean in the decelerating state or in the decelerating state and its succeeding idling state.
    • 通过禁止燃料切断来抑制催化剂劣化的内燃机的控制装置,抑制了减速后来自催化剂的气味的产生。 控制装置设置有燃料切断执行装置,用于当车辆处于减速状态时停止向内燃机供应的燃料,以及用于在设置在减速状态的催化剂的温度下禁止燃料切断的燃料切断禁止装置 排气系统是预定温度以上,其中,当在执行增加的燃料操作之后的车辆在预定时间段内减速时,当燃料切断禁止装置禁止燃料切断时,内燃机被操作, 燃料比在减速状态或减速状态及其后续怠速状态下变得倾斜。
    • 65. 发明授权
    • Air-fuel ratio control apparatus of internal combustion engine
    • 内燃机空燃比控制装置
    • US07143577B2
    • 2006-12-05
    • US11002470
    • 2004-12-03
    • Mamoru Yoshioka
    • Mamoru Yoshioka
    • F01N3/00
    • F01N3/01F01N2430/02F02D31/009F02D41/123F02D41/1441Y02T10/20
    • An air-fuel ratio control apparatus of an internal combustion engine in which an exhaust gas purifying catalyst is disposed in an exhaust passage, comprises: fuel cut means which stops fuel supply to the internal combustion engine when it is determined that a number of revolutions of the internal combustion engine is higher than a fuel cut number of revolutions at the time of deceleration of the internal combustion engine; and changing means of the fuel cut number of revolutions for changing the fuel cut number of revolutions according to a physical amount which correlates with an amount of oxygen discharged from the exhaust gas purifying catalyst during the fuel increasing operation of the internal combustion engine such that as the amount of oxygen is greater, the fuel cut number of revolutions is reduced.
    • 一种内燃机的空燃比控制装置,其中排气净化催化剂设置在排气通道中,包括:燃料切断装置,当确定转子的转数时停止对内燃机的燃料供给 所述内燃机高于所述内燃机减速时的燃料切断转数; 以及根据与在内燃机的燃料增加运转期间从排气净化催化剂排出的氧的量相关的物理量来改变燃料切断转数的燃料切断转数的改变装置,使得如 氧气量越大,燃料切断转数降低。
    • 67. 发明申请
    • Device for controlling internal combustion engine
    • 内燃机控制装置
    • US20050028517A1
    • 2005-02-10
    • US10887977
    • 2004-07-12
    • Norihisa NakagawaMamoru Yoshioka
    • Norihisa NakagawaMamoru Yoshioka
    • F02D45/00F01N3/20F01N3/22F01N3/24F01N3/30F01N13/02F02D13/06F02D41/02F02D41/04F02D41/14F01N3/00
    • F01N3/101F01N3/30F01N13/009F01N13/0093F02D41/0295F02D41/1441F02D41/1458F02D41/1482F02D2200/0814Y02T10/22
    • An upstream-side catalyst is arranged in an exhaust passage and a downstream-side catalyst is arranged in the exhaust passage downstream of the upstream-side catalyst. An air-fuel ratio sensor is attached for detecting the air-fuel ratio in the exhaust passage between the upstream-side catalyst and downstream-side catalyst. A representative upstream-side stored oxygen value OXU is calculated based on whether the control state of the engine is the “slight rich” control, “slight lean” control, fuel increase correction, or engine fuel cut and a representative downstream-side stored oxygen value OXD is calculated based on the engine control state and the output of the air-fuel ratio sensor. If the representative upstream-side stored oxygen value OXU or the representative downstream-side stored oxygen value OXD becomes smaller than the corresponding allowable lower limit LLU or LLD, “slight lean” control is performed, while if it becomes larger than the corresponding allowable upper limit ULU or ULD, “slight rich” control is performed.
    • 上游侧催化剂布置在排气通道中,下游侧催化剂设置在上游侧催化剂下游的排气通道中。 安装有用于检测上游侧催化剂和下游侧催化剂之间的排气通路中的空燃比的空燃比传感器。 根据发动机的控制状态是否为“轻微的”控制,“轻微的”控制,燃料增加校正或发动机燃料切断以及代表性的下游侧储存的氧气来计算代表性的上游侧储存氧值OXU 基于发动机控制状态和空燃比传感器的输出来计算值OXD。 如果代表性的上游侧存储的氧值OXU或代表性的下游侧存储的氧值OXD变得小于相应的允许下限LLU或LLD,则执行“轻微偏润”控制,而如果其变得大于相应的允许上限 限制ULU或ULD,执行“轻微丰富”控制。
    • 68. 发明授权
    • Diagnostic apparatus for fuel vapor purge system
    • 燃油蒸气清洗系统诊断装置
    • US06474148B2
    • 2002-11-05
    • US09782052
    • 2001-02-14
    • Naoya TakagiMamoru YoshiokaYoshihiko Hyoudou
    • Naoya TakagiMamoru YoshiokaYoshihiko Hyoudou
    • G01M1500
    • F02M25/0818
    • A diagnostic apparatus for a fuel vapor purge system is provided which includes a pressure sensor that measures a pressure in a fuel tank, and which conducts leak diagnosis of a purge path based on a change in the pressure in the fuel tank and an amount of fuel vapor generated in the fuel tank. The change in the pressure is measured after sealing the purge path while providing a difference between inside pressure and outside pressure of the purge path, and the amount of fuel vapor is measured after applying an atmospheric pressure to the purge path and sealing the purge path. The diagnostic apparatus further detects a predetermined state after starting application of the atmospheric pressure to the purge path, and determines that the purge path has reached an atmospheric pressure state upon. detection of the predetermined state. The amount of fuel vapor generated in the fuel tank is measured when it is determined that the purge path has reached the atmospheric pressure state.
    • 提供了一种用于燃料蒸气吹扫系统的诊断装置,其包括测量燃料箱中的压力的​​压力传感器,并且基于燃料箱中的压力变化和燃料量进行吹扫路径的泄漏诊断 在燃料箱中产生的蒸气。 在密封吹扫路径同时提供吹扫路径的内部压力和外部压力之间的差异来测量压力的变化,并且在向吹扫通道施加大气压力并密封吹扫路径之后测量燃料蒸气的量。 诊断装置在开始向吹扫路径施加大气压之后进一步检测出规定的状态,并且判定为清除通路已达到大气压状态。 检测预定状态。 当确定净化路径已经达到大气压力状态时,测量在燃料箱中产生的燃料蒸汽的量。
    • 70. 发明授权
    • Valve timing control device for an internal combustion engine
    • 内燃机气门正时控制装置
    • US5482012A
    • 1996-01-09
    • US312586
    • 1994-09-27
    • Mamoru Yoshioka
    • Mamoru Yoshioka
    • F01L13/00F01L1/344F02D13/02F02D41/04F02D41/06F01L1/34
    • F02D13/0234F01L1/34406F02D13/0261F01L2201/00F02D2013/0292F02D2041/001F02D2041/002Y02T10/18
    • A valve timing control device for an internal combustion engine. The device comprises first determination means for determining a first optimal value of the valve overlap period in the current engine operating condition, on the basis of the current engine speed and load, second determination means for determining a second optimal value of the valve overlap period in the current engine operating condition by reducing the first optimal value when the engine has not warmed up, and valve overlap period control means for controlling a valve overlap period using the first optimal value, or such that it varies gradually from the second optimal value to the first optimal value, when the current degree of opening of the throttle valve is larger than a predetermined value, even if the engine has not warmed up. A back-flow of exhaust gas does not occur when the degree of the throttle valve is relatively large so that the valve overlap period at this time is made larger and a higher engine torque can be obtained to increase the trapping efficiency and the scavenging efficiency, even if the engine has not warmed up.
    • 一种用于内燃机的气门正时控制装置。 该设备包括:第一确定装置,用于根据当前发动机转速和负载确定当前发动机工作状态下的气门重叠周期的第一最佳值;第二确定装置,用于确定阀重叠周期的第二最佳值, 当发动机未加热时通过减小第一最优值的当前发动机运转状态和使用第一最优值控制气门重叠周期的气门重叠时段控制装置,或者使其从第二最佳值逐渐变化到 当第一最佳值时,当节气门的当前开度大于预定值时,即使发动机未加热。 当节流阀的程度相对较大时,不会发生废气的回流,从而使得此时的阀重叠时间更大,并且可以获得更高的发动机转矩以提高捕集效率和清除效率, 即使发动机没有升温。