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    • 3. 发明授权
    • Knocking control device for watercraft engine
    • 用于船舶发动机的敲击控制装置
    • US07263971B2
    • 2007-09-04
    • US11237033
    • 2005-09-28
    • Yoshihiro Mizushima
    • Yoshihiro Mizushima
    • F02P5/00F02D41/00
    • F02D37/02F02D35/027F02D41/2451F02P5/1523F02P5/1527Y02T10/46
    • A knocking control device for a watercraft engine includes a knocking learning value renewing section for changing a knocking learning value toward a low octane number ignition timing map when the knock sensor detects a knocking condition. The device changes the knocking learning value toward a high octane number ignition timing map when the knock sensor does not detect a knocking condition. An ignition timing determining section retards or advances an ignition timing based upon the knocking learning value given from the knocking learning value renewing section. The knocking learning value renewing section is constructed not to change the knocking learning value toward the high octane number ignition timing map, when an engine speed is in the vicinity of a full throttle condition.
    • 用于船舶发动机的爆震控制装置包括:爆震学习值更新部分,用于当爆震传感器检测到爆震条件时,将爆震学习值改变为低辛烷值点火正时图。 当爆震传感器未检测到爆震条件时,该装置将爆震学习值改变为高辛烷值点火正时图。 点火正时判定部基于从敲击学习值更新部赋予的爆震学习值,延迟或前进点火正时。 当发动机转速处于全节气门状态附近时,敲击学习值更新部构造成不将高低辛烷值点火正时图的敲击学习值改变。
    • 4. 发明申请
    • Knocking control device for watercraft engine
    • 用于船舶发动机的敲击控制装置
    • US20060137654A1
    • 2006-06-29
    • US11237033
    • 2005-09-28
    • Yoshihiro Mizushima
    • Yoshihiro Mizushima
    • F02P5/152
    • F02D37/02F02D35/027F02D41/2451F02P5/1523F02P5/1527Y02T10/46
    • A knocking control device for a watercraft engine includes a knocking learning value renewing section for changing a knocking learning value toward a low octane number ignition timing map when the knock sensor detects a knocking condition. The device changes the knocking learning value toward a high octane number ignition timing map when the knock sensor does not detect a knocking condition. An ignition timing determining section retards or advances an ignition timing based upon the knocking learning value given from the knocking learning value renewing section. The knocking learning value renewing section is constructed not to change the knocking learning value toward the high octane number ignition timing map, when an engine speed is in the vicinity of a full throttle condition.
    • 用于船舶发动机的爆震控制装置包括:爆震学习值更新部分,用于当爆震传感器检测到爆震条件时,将爆震学习值改变为低辛烷值点火正时图。 当爆震传感器未检测到爆震条件时,该装置将爆震学习值改变为高辛烷值点火正时图。 点火正时判定部基于从敲击学习值更新部赋予的爆震学习值,延迟或前进点火正时。 当发动机转速处于全节气门状态附近时,敲击学习值更新部构造成不将高低辛烷值点火正时图的敲击学习值改变。
    • 6. 发明授权
    • Power supply system for a boat
    • 供电系统为船
    • US09150298B2
    • 2015-10-06
    • US12652050
    • 2010-01-05
    • Yoshihiro Mizushima
    • Yoshihiro Mizushima
    • G06F19/00G06F7/00G06F17/00B63J3/02
    • B63J3/02
    • A power supply system for a boat includes a generator, a rectifier circuit, a main electric system arranged to supply electric power to a control system that controls the boat propulsion system, the main electric system including a main battery, and an auxiliary electric system arranged to supply electric power to auxiliary equipment provided on the boat, the auxiliary electric system including an auxiliary battery. An operation signal supplied to an actuating device connected to the main electric system is detected, and in a case where it is decided, based on the detected signal, to prioritize the main electric system over the auxiliary electric system, current supply to the auxiliary electric system is restricted, to thereby attain a stable operation of the control system of the boat.
    • 一种用于船舶的供电系统包括发电机,整流电路,主电力系统,其被配置为向控制船舶推进系统的控制系统提供电力,所述主电力系统包括主电池和辅助电气系统, 为设在船上的辅助设备供电,辅助电气系统包括辅助电池。 检测供给到连接到主电气系统的致动装置的操作信号,并且在基于检测信号确定主电力系统在辅助电气系统上优先化的情况下,向辅助电力系统供电 系统被限制,从而实现船的控制系统的稳定操作。
    • 8. 发明授权
    • Lumbar support device
    • 腰部支撑装置
    • US5174629A
    • 1992-12-29
    • US794415
    • 1991-11-19
    • Yoshihiro Mizushima
    • Yoshihiro Mizushima
    • A47C7/46
    • A47C7/462
    • A lumbar support device including a generally L-shaped arm member supported rotatably upon a seat frame and a wire member of a torsion bar type, wherein one end of the arm member is operatively coupled to a drive mechanism and another end thereof is connected to one end of the wire member, wherein another end of wire member is provided with a lumbar support plate. Both arm and wire members are moved, without being projected, so that an unpleasant hard or pressing touch is avoided in the seat.
    • 一种腰部支撑装置,其包括可旋转地支撑在座椅框架上的大致L形的臂构件和扭杆型的线构件,其中臂构件的一端可操作地联接到驱动机构,并且另一端连接到一个 线构件的端部,其中线构件的另一端设置有腰部支撑板。 臂和线构件都被移动而不被投射,使得在座椅中避免了令人不快的硬或压触摸。
    • 9. 发明授权
    • Register control processing system
    • 寄存器控制处理系统
    • US4623962A
    • 1986-11-18
    • US509609
    • 1983-06-30
    • Toshio MatsumotoMotokazu KatoKiyosumi SatoYoshihiro MizushimaKatsumi Ohnishi
    • Toshio MatsumotoMotokazu KatoKiyosumi SatoYoshihiro MizushimaKatsumi Ohnishi
    • G06F12/00G06F9/30G06F9/312G06F9/318G06F9/34G06F9/455G06F9/46G06F9/00
    • G06F9/30043G06F9/30101G06F9/30138G06F9/30189G06F9/34
    • This invention relates to a register and more specifically to register control in a data processing system. In general, a number of control registers are theoretically required that is less than the maximum number which can be designated, and only the required number of registers are mounted as hardware. In order to add functions or to provide compatibility with other systems, it is sometimes required to use a register that is not mounted as hardware, or to use the registers mounted as hardware for conflicting purposes. Virtual registers are accordingly provided for at address locations in the memory of the processing system. However, if only the registers to be added are thusly provided for in the memory, the instructions must be executed by distinguishing between register access and memory access, in accordance with register number, etc. Thus, this invention provides a number of virtual registers for instance equal to the number that can be designated. The controls are thereby simplified in accordance with the kind of instruction to be performed. Namely, when an instruction is the LOAD instruction, the same content is loaded into both real an virtual registers from a respective address of the memory, and when it is the STORE instruction, the content from a respective virtual register is stored into the respective address of the memory.
    • 本发明涉及一种寄存器,更具体地涉及数据处理系统中的寄存器控制。 一般来说,理论上要求数量少于可指定的最大数量的控制寄存器,只有所需数量的寄存器作为硬件进行安装。 为了添加功能或提供与其他系统的兼容性,有时需要使用未作为硬件安装的寄存器,或者使用作为硬件安装的寄存器用于冲突的目的。 相应地,在处理系统的存储器中的地址位置提供虚拟寄存器。 然而,如果仅在存储器中提供要添加的寄存器,则必须通过根据寄存器号等区分寄存器访问和存储器访问来执行指令。因此,本发明提供了许多虚拟寄存器,用于 实例等于可以指定的数字。 因此,根据要执行的指令的种类,简化了控制。 也就是说,当指令是LOAD指令时,相同的内容从存储器的相应地址加载到虚拟寄存器两者中,并且当它是存储指令时,来自相应虚拟寄存器的内容被存储到相应的地址 的记忆。