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    • 3. 发明授权
    • Method of controlling the idling speed of an engine
    • 控制发动机空转速度的方法
    • US4364350A
    • 1982-12-21
    • US292534
    • 1981-08-13
    • Nobuyuki KobayashiHiroshi Itoh
    • Nobuyuki KobayashiHiroshi Itoh
    • F02D31/00F02D11/10
    • F02D31/005F02D2011/102Y10T477/68
    • An engine comprising a main intake passage having a throttle valve therein. A bypass passage is branched off from the main intake passage located upstream of the throttle valve and is connected to the main intake passage located downstream of the throttle valve. A flow control vlave, actuated by a step motor, is arranged in the bypass passage. When the pressure of the lubricating oil of the engine is decreased below a predetermined pressure, the idling speed of the engine is increased to a predetermined speed. In addition, when the temperature of the cooling water of the engine is increased beyond a predetermined temperature, the idling speed of the engine is also increased to a predetermined speed.
    • 一种发动机,包括其中具有节流阀的主进气通道。 旁通通道从位于节流阀上游的主进气通道分支,并连接到位于节流阀下游的主进气通道。 在旁通通道中布置由步进电机致动的流量控制阀。 当发动机的润滑油的压力降低到预定压力以下时,发动机的空转速度增加到预定的速度。 此外,当发动机的冷却水的温度升高超过预定温度时,发动机的空转速度也增加到预定的速度。
    • 7. 发明授权
    • Apparatus for controlling the idling speed of an engine
    • 用于控制发动机的空转速度的装置
    • US4434760A
    • 1984-03-06
    • US440523
    • 1982-11-10
    • Nobuyuki KobayashiHiroshi Itoh
    • Nobuyuki KobayashiHiroshi Itoh
    • F02D31/00F02D11/10
    • F02D31/005F02D2011/102Y10T477/68
    • An engine comprising a main intake passage having a throttle valve therein. A bypass passage is branched off from the main intake passage located upstream of the throttle valve and is connected to the main intake passage located downstream of the throttle valve. A flow control valve, actuated by a step motor, is arranged in the bypass passage. When the pressure of the lubricating oil of the engine is decreased below a predetermined pressure, the idling speed of the engine is increased to a predetermined speed. In addition, when the temperature of the cooling water of the engine is increased beyond a predetermined temperature, the idling speed of the engine is also increased to a predetermined speed.
    • 一种发动机,包括其中具有节流阀的主进气通道。 旁通通道从位于节流阀上游的主进气通道分支,并连接到位于节流阀下游的主进气通道。 由旁通通道设置由步进电动机驱动的流量控制阀。 当发动机的润滑油的压力降低到预定压力以下时,发动机的空转速度增加到预定的速度。 此外,当发动机的冷却水的温度升高超过预定温度时,发动机的空转速度也增加到预定的速度。
    • 9. 发明授权
    • Device of controlling the idling speed of an engine
    • 控制发动机空转速度的装置
    • US4422497A
    • 1983-12-27
    • US327115
    • 1981-12-03
    • Norio KomodaNobuyuki KobayashiHiroshi ItohYozi NishimuraShigenobu Obara
    • Norio KomodaNobuyuki KobayashiHiroshi ItohYozi NishimuraShigenobu Obara
    • F02D41/16B60H1/00F02D31/00F02M3/07B60H3/04F22B21/04
    • F02M3/07B60H1/00828F02D31/005F02D2011/102
    • An engine comprising a main intake passage having a throttle valve therein. A bypass passage is branched off from the main intake passage located upstream of the throttle valve and is connected to the main intake passage located downstream of the throttle valve. A flow control valve, actuated by a step motor, is arranged in the bypass passage. When the engine is operating in an idling state, the step motor is rotated in a rotating direction wherein the engine speed approaches a desired idling speed. An air conditioning device is provided, which comprises an air duct, an evaporator arranged in the air duct, a heat exchanger arranged in the air duct, and an air mixture damper for controlling the flow of air which has passed through the evaporator. The desired engine speed is increased when the temperature of air, which has passed through the evaporator, becomes higher than a predetermined temperature and when the entire air, which has passed through the evaporator, directly flows into the driver's compartment without passing through the evaporator.
    • 一种发动机,包括其中具有节流阀的主进气通道。 旁通通道从位于节流阀上游的主进气通道分支,并连接到位于节流阀下游的主进气通道。 由旁通通道设置由步进电动机驱动的流量控制阀。 当发动机工作在怠速状态时,步进电动机沿着转速方向旋转,其中发动机转速接近所需的空转速度。 提供了一种空调装置,其包括空气管道,布置在空气管道中的蒸发器,布置在空气管道中的热交换器,以及用于控制已经通过蒸发器的空气流动的空气混合阻尼器。 当已经通过蒸发器的空气的温度变得高于预定温度并且已经通过蒸发器的整个空气直接流过驾驶室而不通过蒸发器时,期望的发动机转速增加。
    • 10. 发明授权
    • Radar apparatus
    • 雷达装置
    • US08816902B2
    • 2014-08-26
    • US13473013
    • 2012-05-16
    • Hiroshi Itoh
    • Hiroshi Itoh
    • G01S13/46G01S13/06G01S7/35G01S13/00G01S7/00
    • G01S13/345G01S3/74G01S7/354G01S13/931G01S2013/9321G01S2013/9346G01S2013/9353G01S2013/9357
    • There is provided a radar apparatus for detecting a target. A detection signal generating unit generates detection signals of the target based on transmission and reception waves of antennas. A detection signal processing unit performs frequency analysis on the detection signals to extract signal components of the target, and performs a predetermined process on the signal components to calculate at least one of a distance to the target, a relative speed to the target, and an orientation of the target. The detection signal generating unit includes a filter unit for giving changes to the detection signals in a frequency bandwidth higher than Nyquist frequency which is a half a sampling frequency. The detection signal processing unit acquires the signal components from the detection signals to which the filter unit gives the changes to determine whether the signal components are generated by replication due to the Nyquist frequency.
    • 提供了一种用于检测目标的雷达装置。 检测信号生成部基于天线的发送接收波生成目标的检测信号。 检测信号处理单元对检测信号进行频率分析以提取目标的信号分量,并且对信号分量执行预定处理,以计算与目标的距离,与目标的相对速度和目标的相对速度中的至少一个,以及 目标的方向。 检测信号生成单元包括滤波器单元,用于在高于采样频率的一半的奈奎斯特频率的频带宽度中改变检测信号。 检测信号处理单元从滤波器单元给出改变的检测信号获取信号分量,以确定由于奈奎斯特频率是否由复制产生信号分量。