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    • 1. 发明授权
    • Vehicle cruise control
    • 车辆巡航控制
    • US07530345B1
    • 2009-05-12
    • US11627797
    • 2007-01-26
    • Renald PlanteDominic DagenaisJean Daunais
    • Renald PlanteDominic DagenaisJean Daunais
    • F02D41/00F02D1/00
    • B63B35/731B60K31/00F02D41/0002F02D2011/102F02D2200/501F02D2200/602
    • A vehicle having a vehicle body, a seat, an engine, a throttle body, a throttle valve, a throttle valve actuator, a throttle operator, a throttle operator position sensor, a cruise control switch, and a vehicle speed sensor. An ECU controls operation of the engine in one of a normal operation mode and a cruise control operation mode. When in the normal operation mode, the ECU sends a first control signal to the throttle valve actuator based on the throttle operator position signal. When the cruise control switch engages the cruise control operation mode, the ECU sends a second control signal to the throttle valve actuator based on the vehicle speed signal such that the vehicle speed is maintained at a vehicle cruising speed. The ECU returns to the normal operation mode when the throttle operator position becomes less than or equal to a reference throttle operator position.
    • 具有车身,座椅,发动机,节气门体,节流阀,节气门致动器,节气门操作器,节气门操作者位置传感器,巡航控制开关和车速传感器的车辆。 ECU在正常操作模式和巡航控制操作模式之一中控制发动机的操作。 当处于正常运行模式时,ECU基于节气门操作器位置信号向节气门致动器发送第一控制信号。 当巡航控制开关接合巡航控制操作模式时,ECU基于车速信号向节气门致动器发送第二控制信号,使得车速保持在车辆巡航速度。 当节气门操作员位置变为小于或等于参考节气门操作员位置时,ECU返回正常操作模式。
    • 2. 发明授权
    • Watercraft with steer-responsive reverse gate
    • 船舶与转向反向门
    • US08202136B2
    • 2012-06-19
    • US12491368
    • 2009-06-25
    • Dominic DagenaisRenald PlanteAndre Denis
    • Dominic DagenaisRenald PlanteAndre Denis
    • B63H11/107
    • B63H11/08B63H11/107B63H21/22
    • A method of operating a watercraft is disclosed. The watercraft includes an engine, a jet propulsion system operatively connected to the engine, the jet propulsion system includes a reverse gate, and a steering assembly for steering the watercraft. The method comprises: determining if the steering assembly is turned; sensing an operating parameter of the watercraft, the operating parameter being related to a thrust generated by the propulsion system; determining if the operating parameter of the watercraft is within a predetermined range; and moving the reverse gate to a lowered position when the steering assembly is turned and the operating parameter of the watercraft is within the predetermined range. A watercraft capable of performing the method is also disclosed.
    • 公开了一种操作船只的方法。 船舶包括发动机,可操作地连接到发动机的喷气式推进系统,喷射推进系统包括反向门和用于转向船只的转向组件。 该方法包括:确定转向组件是否转动; 感测所述船只的操作参数,所述操作参数与所述推进系统产生的推力相关; 确定所述船只的操作参数是否在预定范围内; 并且当转向组件转动并且船只的操作参数在预定范围内时,将反向门移动到降低位置。 还公开了能执行该方法的船只。
    • 3. 发明授权
    • Watercraft reverse gate operation
    • 船舶反向门操作
    • US07708609B2
    • 2010-05-04
    • US11961650
    • 2007-12-20
    • Renald PlanteAndre DenisDominic Dagenais
    • Renald PlanteAndre DenisDominic Dagenais
    • B63H11/11B63H21/22B63H23/00B63H11/00B63H11/107
    • B63H25/48B63H11/11
    • A method of controlling a watercraft comprises actuating a lever, controlling a speed of rotation of an engine to be at or below a reverse gate actuation speed in response to the actuation of the lever, moving the reverse gate in response to the actuation of the lever without further driver intervention once the speed of rotation of the engine is at or below the reverse gate actuation speed, and controlling the speed of rotation of the engine in order to decelerate the watercraft in response to the actuation of the lever and the reverse gate moving without further driver intervention. A watercraft and a method of controlling the watercraft based at least in part on an angle of a helm assembly are also disclosed.
    • 一种控制船舶的方法包括致动杆,响应于杆的致动,将发动机的旋转速度控制在等于或低于反向闸门致动速度的速度,响应于杆的致动而移动反向门 一旦发动机的旋转速度处于或低于反向闸门致动速度,并且控制发动机的旋转速度以便响应于杆的致动和反向门移动而使船舶减速,则无需进一步的驾驶员干预 没有进一步的司机干预。 还公开了一种船体和至少部分地基于舵组件的角度来控制船舶的方法。
    • 7. 发明授权
    • Watercraft suspension
    • 船只悬挂
    • US06892666B1
    • 2005-05-17
    • US10370573
    • 2003-02-24
    • Renald PlanteYves Berthiaume
    • Renald PlanteYves Berthiaume
    • B63B35/73B63B39/00B63B17/00B63H23/00
    • B63B39/005B63B35/731
    • A watercraft has a pivoting, shock absorbing component that absorbs forces applied to its hull. The watercraft includes a hull, a deck coupled to the hull, an engine, and a jet propulsion system movably coupled to the engine. In one embodiment, a forward hull portion couples to the deck and a rearward hull portion movably couples to the deck and/or the forward hull portion. The jet propulsion system mounts to the rearward hull portion, while the engine mounts to the deck. A suspension element is disposed between the hull rear portion and either the deck or the hull forward portion. In another embodiment, the hull and deck are movably coupled to each other.
    • 船舶具有枢转的减震部件,其吸收施加到其船体上的力。 船舶包括船体,联接到船体的甲板,发动机和可移动地联接到发动机的喷气推进系统。 在一个实施例中,前船体部分联接到甲板和可移动地联接到甲板和/或前部船体部分的后部船体部分。 喷气推进系统安装在后船体部分,而发动机安装在甲板上。 悬架元件设置在船体后部和甲板或船体前部之间。 在另一个实施例中,船体和甲板彼此可移动地联接。