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    • 2. 发明授权
    • Vehicle fuel gas supply system
    • 车辆燃气供应系统
    • US06390075B1
    • 2002-05-21
    • US09523308
    • 2000-03-10
    • Hideharu YamazakiShusuke AkazakiAkifumi OtakaHiroyuki Goto
    • Hideharu YamazakiShusuke AkazakiAkifumi OtakaHiroyuki Goto
    • F02M2102
    • F02D19/027B60K15/013F02D19/025F02M21/0221F02M21/0233F02M21/0242F02M21/029F17C2265/065F17C2270/0139Y02T10/32
    • A vehicle fuel gas supply system includes a fuel line supplying a fuel gas to a gas engine, a shut-off valve and a pressure sensor disposed on said fuel line, and a control section. The pressure sensor is disposed closer to said gas engine in comparison with said shut-off valve. The control section closes the shut-off valve being opened, starts to count the time of a shut-off valve closing timer. Then, the control section opens the shut-off vale when the shut-off valve closing timer counts up, simultaneously therewith measures a pressure by the pressure sensor to store the pressure as an initial pressure, and starting to count the time of a diagnostic timer. Further, the control section measures a second pressure by the pressure sensor when the diagnostic timer counts up to store the second pressure as a final pressure value, and judges that the shut-off value is in a failure state when a pressure increase rate obtained from the initial pressure value and the final pressure value is smaller than a predetermined pressure increase rate threshold value.
    • 车辆燃料气体供给系统包括向燃气发动机供给燃料气体的燃料管路,切断阀和设置在所述燃料管路上的压力传感器,以及控制部。 与所述截止阀相比,压力传感器设置成更靠近所述燃气发动机。 控制部分关闭截止阀打开,开始计数截止阀关闭定时器的时间。 然后,当关闭阀关闭定时器向上计数时,控制部分打开关闭阀,同时测量压力传感器的压力以将压力存储为初始压力,并开始计数诊断定时器的时间 。 此外,当诊断定时器向上计数以存储第二压力作为最终压力值时,控制部分通过压力传感器测量第二压力,并且当从...获得的压力增加率判断为截止值为失败状态时 初始压力值和最终压力值小于预定的压力增加率阈值。
    • 5. 发明授权
    • Vehicle body slip angle-estimating device and method and engine control unit
    • 车体滑角估算装置及方法及发动机控制装置
    • US08255119B2
    • 2012-08-28
    • US12081550
    • 2008-04-17
    • Takafumi KomoriShusuke AkazakiTakahide Mizuno
    • Takafumi KomoriShusuke AkazakiTakahide Mizuno
    • B60G17/016
    • B60T8/172B60T8/174B60T2230/02B60W40/103B60W2050/0037B60W2520/14B60W2540/10
    • A vehicle body slip angle-estimating device which, in estimating a vehicle body slip angle with an algorithm using a nonlinear model, is capable of accurately estimating a vehicle body slip angle irrespective of whether the frequency of occurrence of a state during traveling of the vehicle. A basic value-calculating section calculates a basic value of a vehicle body slip angle with an algorithm using a neural network model. A turning state-determining section determines whether the vehicle is in a predetermined limit turning traveling state. A correction value-calculating section calculates a correction value with an algorithm using a predetermined linear model when the vehicle is in the predetermined state. In the other cases, the correction value is set to 0. A straight traveling-determining section sets the angle to the sum of the basic value and the correction value when the vehicle is in a turning traveling state.
    • 一种车体滑移角估计装置,其在使用非线性模型的算法估计车体滑移角时能够精确地估计车体滑移角,而与车辆行驶中的状态的发生频率无关 。 基本值计算部使用神经网络模型来算出车体滑移角的基本值。 转动状态判定部判定车辆是否处于规定的转弯行驶状态。 当车辆处于预定状态时,校正值计算部分使用预定线性模型的算法来计算校正值。 在其他情况下,校正值被设定为0.直行驶确定部分在车辆处于转弯行驶状态时将角度设置为基本值和校正值之和。
    • 10. 发明授权
    • Control system for internal combustion engine
    • 内燃机控制系统
    • US06550449B2
    • 2003-04-22
    • US09741837
    • 2000-12-22
    • Shusuke AkazakiYoshihisa IwakiMasaki Ueno
    • Shusuke AkazakiYoshihisa IwakiMasaki Ueno
    • F02D4116
    • F02D41/0245F02D37/02F02P5/1506Y02T10/26Y02T10/46
    • A control system for an internal combustion engine having a catalyst arranged in the exhaust system is disclosed. In the control system, catalyst temperature rise accelerating control is executed by increasing the intake air amount immediately after starting of the engine and retarding the ignition timing to make the rotational speed of the engine coincide with a target rotational speed. The air-fuel ratio of an air-fuel mixture supplied to the engine is controlled to a lean region with respect to the stoichiometric ratio immediately after starting of the engine. The degree of making the air-fuel ratio leaner is suppressed when the retard amount of the ignition timing during the execution of the catalyst temperature rise accelerating control is less than a predetermined retard amount.
    • 公开了一种具有布置在排气系统中的催化剂的内燃机的控制系统。 在控制系统中,催化剂升温加速控制是通过增加发动机起动后立即进气量而延迟点火正时,使发动机的转速与目标转速一致。 提供给发动机的空气燃料混合物的空燃比被控制为相对于发动机起动之后的化学计量比的稀薄区域。 当执行催化剂温度升高加速控制期间的点火正时的延迟量小于预定的延迟量时,抑制使空燃比更稀的程度。