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    • 41. 发明授权
    • Vehicle idle-speed warning system and idle-speed detection method
    • 车辆怠速预警系统和怠速检测方法
    • US09291115B2
    • 2016-03-22
    • US13594615
    • 2012-08-24
    • Chun-Ming HuangChih-Chyau YangChun-Yu ChenChien-Ming Wu
    • Chun-Ming HuangChih-Chyau YangChun-Yu ChenChien-Ming Wu
    • G06G7/70G06G7/78F02D41/08G01C21/16F02D41/24F02D41/22
    • F02D41/08F02D41/2403F02D2041/228F02D2200/501F02D2200/701G01C21/16
    • A vehicle idle-speed warning system and vehicle idle-speed detection method thereof are provided. It is non-invasive, that is, there is no need to change or modify any part of the constructing parts in the engine compartment. The present invention can be adopted stand-alone, or be applied to existing popular apparatuses, such as GPS, driving recorders, smart handheld devices, and vehicle electronic equipments. With the composing elements of a motion information module, an input module, an output module, a timer module and an information processing module, the present invention can accurately determine whether the vehicle under surveillance is in idle state and for how long it is in the idle state, and send an alarm signal automatically. With the implementation of the present invention, drivers can always be alarmed with the vehicle idling situations to prevent possible dangers or coming tickets due to the violation of traffic regulations in certain countries.
    • 提供了一种车辆怠速预警系统和车辆怠速检测方法。 这是非侵入性的,也就是说,不需要更改或修改发动机舱中构造部件的任何部分。 本发明可以单独使用,也可以应用于GPS,驾驶记录器,智能手持装置,车载电子设备等现有的流行装置。 利用运动信息模块,输入模块,输出模块,定时器模块和信息处理模块的组成元件,本发明可以准确地确定被监视的车辆是否处于空闲状态以及在多长时间内 空闲状态,并自动发送报警信号。 随着本发明的实施,驾驶员总是可以用车辆空转情况来警惕,以防止在某些国家因违反交通规则而导致的可能的危险或来车。
    • 42. 发明授权
    • Gas engine control device
    • 燃气发动机控制装置
    • US09261034B2
    • 2016-02-16
    • US14000708
    • 2011-03-31
    • Michiyasu IshidaMinoru Esaki
    • Michiyasu IshidaMinoru Esaki
    • F02D41/00F02D41/08F02D19/02F02D41/06F02D31/00
    • F02D41/08F02D19/021F02D19/029F02D31/007F02D41/0027F02D41/062F02D2200/101Y02T10/32
    • It is an object of the invention to achieve a stable idling revolution speed in a short time and to prevent easily the occurrence of abnormal combustion, misfire, or the like by effectively controlling a gas flow rate adjustment valve even in a case where a fuel gas which tends to fluctuate in fuel gas concentration, as represented by a coal mine gas, is used. The invention includes a revolution speed detection part 5 detecting the revolution speed of a gas engine 1, a gas concentration detection unit 7 detecting the gas concentration of a fuel gas, a gas flow rate adjustment valve 4 disposed in a fuel gas pipeline 3 supplying a fuel gas to the gas engine 1, a governor actuator 21 for operating the gas flow rate adjustment valve 4, and an operation amount computation part 15 computing the operation amount of the governor actuator 21 according to the gas concentration of the fuel gas detected by the gas concentration detection unit 7; and a governor controller 10 operating the governor actuator 21 based on the operation amount computed by the operation amount computation part 15 is further provided.
    • 本发明的目的是通过有效地控制气体流量调节阀,即使在燃料气体的情况下也能够在短时间内实现稳定的怠速转速并且容易地防止异常燃烧,失火等的发生 使用煤矿瓦斯表示的燃料气体浓度趋于波动。 本发明包括检测燃气发动机1的转速的转速检测部5,检测燃料气体的气体浓度的气体浓度检测部7,设置在供给燃料气体的燃料气体配管3的气体流量调节阀4 燃气发动机1的燃料气体,用于操作气体流量调节阀4的调速器致动器21以及操作量计算部15,根据由该气体发生器1检测到的燃料气体的气体浓度,计算调速器致动器21的运转量 气体浓度检测单元7; 并且还提供了基于由操作量计算部件15计算的操作量来操作调速器致动器21的调速器控制器10。
    • 48. 发明授权
    • Malfunction diagnosis device and malfunction diagnosis method for knock sensor
    • 爆震传感器故障诊断装置及故障诊断方法
    • US09163577B2
    • 2015-10-20
    • US14355336
    • 2012-09-07
    • Yosuke SakayoriSatoshi Sekine
    • Yosuke SakayoriSatoshi Sekine
    • G06F19/00F02D41/22F02D41/12F02D35/02F02D41/08F02D41/00F02D41/04F02N11/08
    • F02D41/222F02D35/027F02D41/009F02D41/042F02D41/08F02D41/123F02D2041/228F02D2200/602F02N11/0814
    • To enable, with a simple control, a malfunction of a type wherein the output from a knock sensor becomes excessively large to be detected, a knock-sensor malfunction diagnosis device includes a control section configured to determine that knocking has occurred when the magnitude of a knocking vibration frequency component derived from an output signal from a knock sensor exceeds a first threshold value, and diagnose the knock sensor as malfunctioning when a prescribed diagnostic condition wherein knocking cannot occur is satisfied and the magnitude of the knocking vibration frequency component derived from the output signal from the knock sensor exceeds a second threshold value. The control section is further configured to determine that the diagnostic condition is satisfied for a time interval from a time when a predetermined time period has expired after fuel-cutoff has started to a time when the fuel-cutoff ends, during execution of the fuel-cutoff.
    • 为了能够通过简单的控制使得其中来自爆震传感器的输出变得过大以检测的类型的故障,爆震传感器故障诊断装置包括:控制部分,被配置为确定当爆震传感器的大小为 从爆震传感器的输出信号导出的爆震振动频率分量超过第一阈值,并且当满足不能发生爆震的规定诊断条件和从输出导出的爆震振动频率分量的大小时,将爆震传感器诊断为故障 来自爆震传感器的信号超过第二阈值。 所述控制部进一步构成为,在燃料切断开始到燃料切断结束时到达所述燃料切断结束之后的期间,从所述燃料切断结束时的预定时间段到期之后的时间间隔确定所述诊断条件, 隔断。