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    • 10. 发明授权
    • Engine
    • 发动机
    • US08857176B2
    • 2014-10-14
    • US13123126
    • 2009-09-17
    • Takeshi TakahashiHidenori NomuraKazuki MaetaniTerumitsu TakahataTakao KawabeKazuhiro Takenaka
    • Takeshi TakahashiHidenori NomuraKazuki MaetaniTerumitsu TakahataTakao KawabeKazuhiro Takenaka
    • F02B37/12F02B37/00F02D41/00F02B37/22F02B37/007F02B37/24F02B37/18F02D23/00
    • F02D23/00F02B37/001F02B37/007F02B37/18F02B37/22F02B37/24F02B2037/122F02D41/0007F02D2200/0406Y02T10/144
    • An engine provided with a variable parallel supercharging system (9) comprising a first supercharger (10) which is driven by exhaust gas which flows in a first exhaust gas route (41) and which pressurizes intake air which flows in a first intake air route (3) and also comprising a second supercharger (20) which is driven by exhaust gas which flows in a second exhaust gas route (42) and which pressurizes intake air which flows in a second intake air route (4), a supercharging pressure sensor (63) for detecting the pressure of the pressurized intake air, a first supercharger rotation sensor (61) for detecting the rotational speed of the first supercharger (10), a second supercharger rotation sensor (62) for detecting the rotational speed of the second supercharger (20), a first variable actuator (14) for adjusting the capacity of the first supercharger (10), a second variable actuator (24) for adjusting the capacity of the second supercharger (20), and a control device for controlling each of the variable actuators (14, 24). The control device controls the first variable actuator (14) based on detection signals from the supercharging pressure sensor (63) and the first supercharger rotation sensor (61) and controls the second variable actuator (24) based on detection signals from the supercharging pressure sensor (63) and the second supercharger rotation sensor (62).
    • 一种具有可变并联增压系统(9)的发动机,包括:第一增压器(10),其由在第一排气路径(41)中流动的排气驱动,并且对在第一进气路径中流动的进气加压 3),并且还包括由在第二排气路径(42)中流动并且在第二进气路径(4)中流动的进气加压的排气驱动的第二增压器(20),增压压力传感器 63),用于检测加压吸入空气的压力的第一增压器旋转传感器(61),用于检测第一增压器(10)的转速的第一增压器旋转传感器(61),用于检测第二增压器 (20),用于调节第一增压器(10)的容量的第一可变致动器(14),用于调节第二增压器(20)的容量的第二可变致动器(24),以及用于控制第二增压器 ch的可变致动器(14,24)。 控制装置基于来自增压压力传感器(63)和第一增压器旋转传感器(61)的检测信号来控制第一可变致动器(14),并且基于来自增压压力传感器的检测信号来控制第二可变致动器(24) (63)和第二增压器旋转传感器(62)。