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    • 2. 发明申请
    • PROGRAMMING SYSTEM AND THREAD SYNCHRONIZATION MECHANISMS FOR THE DEVELOPMENT OF SELECTIVELY SEQUENTIAL AND MULTITHREADED COMPUTER PROGRAMS
    • 用于开发选择性顺序和多计算机程序的编程系统和线程同步机制
    • WO0036491A2
    • 2000-06-22
    • PCT/US9930274
    • 1999-12-15
    • CALIFORNIA INST OF TECHNTHORNLEY JOHNCHANDY K MANIISHII HIROSHI
    • THORNLEY JOHNCHANDY K MANIISHII HIROSHI
    • G06F9/46G06F9/48G06F
    • G06F9/4843G06F9/52
    • A structured multithreaded programming system is described for integrated use with existing and new programming languages and systems. The structured multithreaded programming system enables programs to be developed which include both multithreaded and multithreadable code constructs. The multithreaded code constructs require explicitly concurrent execution. The multithreadable code constructs can be executed either sequentially or concurrently, at the selection of the programmer or computer user. When executed concurrently, the different threads of execution in a multithreaded program developed with this system can be synchronized using innovative synchronization objects. One type of synchronization object is a special type of counter, which can be constrained to be monotonically increasing in value. Another related type of synchronization object is a special type of flag, which can be constrained to have its value set monotonically.
    • 描述了一种结构化的多线程编程系统,用于与现有和新的编程语言和系统集成使用。 结构化的多线程编程系统使得可以开发包括多线程和多线程代码结构的程序。 多线程代码结构需要显式并发执行。 在编程器或计算机用户的选择时,可以顺序地或同时地执行多线程代码结构。 当同时执行时,可以使用创新的同步对象来同步使用该系统开发的多线程程序中的不同执行线程。 一种类型的同步对象是一种特殊类型的计数器,它可以被限制为单调递增的值。 另一种相关类型的同步对象是一种特殊类型的标志,可以被限制为将其值单调设置。
    • 5. 发明申请
    • PROGRAMMING SYSTEM AND THREAD SYNCHRONIZATION MECHANISMS FOR THE DEVELOPMENT OF SELECTIVELY SEQUENTIAL AND MULTITHREADED COMPUTER PROGRAMS
    • 编程系统和线程同步机制,用于开发选择性的连续和多计算机程序
    • WO0036491A9
    • 2001-09-13
    • PCT/US9930274
    • 1999-12-15
    • CALIFORNIA INST OF TECHNTHORNLEY JOHNCHANDY K MANIISHII HIROSHI
    • THORNLEY JOHNCHANDY K MANIISHII HIROSHI
    • G06F9/46G06F9/48G06F9/45
    • G06F9/4843G06F9/52
    • A structured multithreaded programming system is described for integrated use with existing and new programming languages and systems. The structured multithreaded programming system enables programs to be developed which include both multithreaded and multithreadable code constructs. The multithreaded code constructs require explicitly concurrent execution. The multithreadable code constructs can be executed either sequentially or concurrently, at the selection of the programmer or computer user (401). When executed concurrently, the different threads of execution in a multithreaded program developed with this system can be synchronized using innovative synchronization objects (404). One type of synchronization object is a special type of counter (400), which can be constrained to be monotonically increasing in value. Another related type of synchronization object is a special type of flag, which can be constrained to have its value set monotonically.
    • 描述了一种结构化的多线程编程系统,用于与现有和新的编程语言和系统集成使用。 结构化的多线程编程系统使得可以开发包括多线程和多线程代码结构的程序。 多线程代码结构需要显式并发执行。 在编程器或计算机用户的选择(401)中,可以顺序地或同时地执行多线程代码结构。 同时执行时,使用该系统开发的多线程程序中的不同执行线程可以使用创新的同步对象进行同步(404)。 一种类型的同步对象是一种特殊类型的计数器(400),其可以被限制为单调增加值。 另一种相关类型的同步对象是一种特殊类型的标志,可以被限制为使其值单调设置。
    • 6. 发明申请
    • FUEL INJECTION DEVICE
    • 燃油喷射装置
    • WO1991012421A1
    • 1991-08-22
    • PCT/JP1991000148
    • 1991-02-07
    • MITSUBISHI JIDOSHA KOGYO KABUSHIKI KAISHASHIMADA, TaizohYOKOYAMA, MasakuzuISHII, HiroshiYAMADA, Kiyoharu
    • MITSUBISHI JIDOSHA KOGYO KABUSHIKI KAISHA
    • F02D01/02
    • F02M59/366F02B3/06F02D41/402F02D41/403F02D41/408F02M41/047F02M41/121F02M41/128F02M55/02Y02T10/44
    • The present invention relates to a fuel injection device, wherein a solenoid valve (6) is provided at a position closer to a fuel injection nozzle (3) and in the intermediate portion of an injection pipe (4) for allowing a fuel injection pump (1) having a plunger (1A) facing a pressurizing chamber (1D) and actuated by a cam (2) to communicate with the fuel injection nozzle (3), for on-off controlling the solenoid valve (6) through a controller (C) provided with a spark advance angle setting map and an injection timing setting map designed in accordance with an engine rotary speed (9) and a load (10), to thereby control the supply conditions of the fuel delivered under pressure from the fuel injection pump (1) to the fuel injection nozzle (3). Furthermore, in the fuel injection device according to the present invention, the provision of the solenoid valve (6) at the position closer to the fuel injection nozzle (3) makes it possible to minimize the dripping of the fuel at the time of completing the injection, occurence of HC is suppressed to a low degree, and fuel economy is improved. Further, in the fuel injection device according to the present invention, the control of the on-off timing of the solenoid valve (6) through the controller (C) makes it possible to obtain the best fuel injection pattern, decrease the noise level and reduce the occurence of NOx.
    • 燃料喷射装置技术领域本发明涉及一种燃料喷射装置,其中在靠近燃料喷射喷嘴(3)的位置和在喷射管(4)的中间部分设置有电磁阀(6),用于允许燃料喷射泵 1)具有面对加压室(1D)并由凸轮(2)驱动以与燃料喷嘴(3)连通的活塞(1A),用于通过控制器(C)对电磁阀(6)进行开关控制 ),其设置有根据发动机转速(9)和负载(10)设计的火花提前角设定图和喷射正时设定图,从而控制来自燃料喷射泵的压力下输送的燃料的供给条件 (1)连接到燃料喷嘴(3)。 此外,在本发明的燃料喷射装置中,在靠近燃料喷射喷嘴(3)的位置设置电磁阀(6),能够使完成燃料喷射时的燃料滴下 注入时,HC的发生被抑制到低程度,并且提高了燃料经济性。 此外,在本发明的燃料喷射装置中,通过控制器(C)对电磁阀(6)的开关定时的控制使得可以获得最佳的燃料喷射模式,降低噪声水平和 减少NOx的发生。