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    • 4. 发明授权
    • Fuel injection quantity control device
    • 燃油喷射量控制装置
    • US06786196B2
    • 2004-09-07
    • US10757811
    • 2004-01-15
    • Futoshi NakanoKoichiro YomogidaYuji Sasaki
    • Futoshi NakanoKoichiro YomogidaYuji Sasaki
    • F02M700
    • F02D41/1402F02D31/007F02D2041/1409F02D2041/1422F02D2041/2048
    • A fuel injection quantity control device for controlling an actual revolution speed En of an engine to a target revolution speed Eo, comprises difference computation unit for subtracting the actual revolution speed En from the target revolution speed Eo and finding the difference e therebetween; proportional term computation unit for multiplying the aforesaid difference e by the prescribed proportionality constant Kp and finding a proportional term output value Qp; integral term computation means for finding an integral term output value Qi which is obtained by integrating the product of the aforesaid difference e and the prescribed integration constant Ki; differential term computation unit for finding a differential term output value Qd which is obtained by multiplying the value obtained by differentiating the aforesaid difference e by the prescribed differentiation constant Kd; and injection quantity computation unit for adding up the proportional term output value Qp and the integral term output value Qi and determining the injection quantity.
    • 用于将发动机的实际转速En控制为目标转速Eo的燃料喷射量控制装置包括:差分计算单元,用于从目标转速Eo中减去实际转速En,并求出其间的差e; 比例项计算单元,用于将上述差e乘以规定的比例常数Kp,并求出比例项输出值Qp; 积分项计算装置,用于求出通过将上述差值e的积与规定的积分常数Ki进行积分而得到的积分项输出值Qi; 差分项计算单元,用于找到通过将通过将上述差值e区分所得到的值乘以规定的微分常数Kd而获得的微分项输出值Qd; 以及喷射量计算单元,用于将比例项输出值Qp和积分项输出值Qi相加,并确定喷射量。
    • 6. 发明授权
    • Control device and method for internal combustion engine
    • 内燃机控制装置及方法
    • US07066144B2
    • 2006-06-27
    • US10903327
    • 2004-07-30
    • Toshiaki HarunariKoichiro YomogidaFutoshi NakanoNobutaka IshiiKazuya Tomikawa
    • Toshiaki HarunariKoichiro YomogidaFutoshi NakanoNobutaka IshiiKazuya Tomikawa
    • F02D9/00
    • F02D11/105F02D35/0007F02D41/0052F02D41/18F02D2041/0017Y02T10/47
    • A control device for an internal combustion engine comprising an EGR passage (22) for connecting an intake passage (17) and an exhaust passage (18) with each other, an EGR valve (24) provided in the EGR passage (22), and an intake throttle valve (19) provided in the intake passage (17) at an upstream side of the connection part with the EGR passage (22). The control device comprises operational state detection means for detecting an operational state of the internal combustion engine, first control means for controlling opening and closing of the intake throttle valve (19) and the EGR valve (24) to adjust intake air volume if the operational state detection means detects a normal operational state, and second control means for controlling the intake throttle valve (19) at a predetermined constant opening degree and for controlling opening and closing of the EGR valve (24) to adjust an intake air volume if the operational state detection means detects a predetermined operational state.
    • 一种用于内燃机的控制装置,包括用于将进气通道(17)和排气通道(18)彼此连接的EGR通道(22),设置在EGR通道(22)中的EGR阀(24),以及 在与EGR通路(22)的连接部分的上游侧设置在进气通道(17)中的进气节流阀(19)。 控制装置包括用于检测内燃机的运行状态的操作状态检测装置,用于控制进气节流阀(19)和EGR阀(24)的打开和关闭的第一控制装置,以调节进气量 状态检测装置检测正常操作状态;以及第二控制装置,用于以预定的恒定开度控制进气节流阀(19),并且用于控制EGR阀(24)的打开和关闭以调节进气量,如果操作 状态检测装置检测预定的操作状态。
    • 8. 发明授权
    • Fuel injection control device
    • 燃油喷射控制装置
    • US07021045B2
    • 2006-04-04
    • US10721133
    • 2003-11-25
    • Koichiro YomogidaAkira HirataFutoshi Nakano
    • Koichiro YomogidaAkira HirataFutoshi Nakano
    • F01N3/00
    • F02D41/0245F02D41/029F02D41/40F02D41/403F02D2200/0802F02D2200/1006Y02T10/26Y02T10/44
    • A fuel injection control device includes an exhaust purification device for purifying an exhaust gas by catalytic action, an exhaust gas-temperature detection unit for detecting exhaust gas temperature, and a determination unit for determining the amount of the basic fuel injection and basic fuel injection timing from the operational status of a combustion engine, and a control unit for controlling the amount of the fuel injection and fuel injection timing. The control unit retards the fuel injection timing from the basic fuel injection timing when the exhaust gas temperature is lower than the temperature required for the catalytic activation of the exhaust purification device. The control unit also increases the amount of the fuel injection compared to the amount of the basic fuel injection to compensate for the loss of the torque output caused by the retarded fuel injection timing.
    • 一种燃料喷射控制装置,包括:通过催化作用净化排气的排气净化装置,检测废气温度的排气温度检测单元,以及用于确定基本燃料喷射量和基本燃料喷射正时量的判定单元 从内燃机的运转状态,以及控制燃料喷射量和燃料喷射正时量的控制单元。 当排气温度低于排气净化装置的催化活化所需的温度时,控制单元从基本燃料喷射正时延迟燃料喷射正时。 控制单元还增加与基本燃料喷射量相比的燃料喷射量,以补偿由延迟燃料喷射正时引起的扭矩输出的损失。
    • 9. 发明授权
    • Fuel injection control device
    • 燃油喷射控制装置
    • US06898508B2
    • 2005-05-24
    • US10741287
    • 2003-12-18
    • Futoshi NakanoAkira HirataKoichiro Yomogida
    • Futoshi NakanoAkira HirataKoichiro Yomogida
    • F02D45/00F01N3/023F01N3/035F01N3/20F01N3/24F01N13/02F02D41/02F02D41/04F02D41/40G06F17/00
    • F02D41/029F01N3/023F01N3/035F01N13/009F01N2430/085F02D41/1446F02D41/405F02D2041/1409Y02T10/44
    • A fuel injection control device includes an after treatment device for purifying exhaust gas by the action of a catalyst, an exhaust gas temperature detector for detecting the exhaust gas temperature, and a controller for controlling the fuel injection quantity and fuel injection timing. The controller executes an exhaust gas temperature increase control by post-injection when the exhaust gas temperature detected by exhaust gas temperature detection means is less than the activity temperature of the catalyst in the after treatment device. When executing the exhaust gas temperature increase control, the controller determines the target injection quantity of post-injection based on the difference between the exhaust gas temperature considered as a target and the actual exhaust gas temperature detected by the exhaust gas temperature detector and also determines the upper limit value of injection quantity of post-injection based on the actual exhaust gas temperature detected by the exhaust gas temperature detector, conducts control such that the actual injection quantity of post-injection becomes the upper limit value when the target injection quantity is equal to the upper limit value or higher, and conducts control such that the actual injection quantity of post-injection becomes the target injection quantity when the target injection quantity is less than the upper limit value.
    • 燃料喷射控制装置包括通过催化剂的作用净化废气的后处理装置,用于检测废气温度的排气温度检测器,以及用于控制燃料喷射量和燃料喷射正时的控制器。 当由废气温度检测装置检测的废气温度小于后处理装置中的催化剂的活性温度时,控制器通过后喷射执行废气升温控制。 当执行排气温度升高控制时,控制器基于被认为是目标的废气温度与由排气温度检测器检测出的实际废气温度之差来确定后喷射的目标喷射量, 基于由排气温度检测器检测出的实际废气温度的后喷射喷射量的上限值进行控制,使得喷射后的实际喷射量成为目标喷射量的上限值 上限值以上,并且进行控制,使得当目标喷射量小于上限值时,后喷射的实际喷射量成为目标喷射量。
    • 10. 发明授权
    • Fuel injection quantity control device
    • 燃油喷射量控制装置
    • US06934620B2
    • 2005-08-23
    • US10764912
    • 2004-01-26
    • Futoshi NakanoAkira HirataKoichiro Yomogida
    • Futoshi NakanoAkira HirataKoichiro Yomogida
    • F02D45/00B60K31/04F02D29/00F02D29/02F02D31/00F02D41/02F02D41/10F02D41/14B60K41/04
    • B60K31/04B60W2520/105B60W2540/16B60W2710/0616B60W2720/106F02D31/009F02D41/0225F02D41/10F02D2200/501Y10T477/68
    • A fuel injection quantity control device includes: vehicle speed detection unit; gear position detection unit; engine revolution speed detection unit; accelerator opening degree detection unit; target acceleration value computation unit for finding a basic target acceleration value corresponding to the difference between the set limit vehicle speed and an actual vehicle speed and an upper limit value and lower limit value of the basic target acceleration value for each gear position in a map, limiting the basic target acceleration value with the upper limit value and lower limit value, and determining a target acceleration value; basic fuel injection quantity for vehicle speed limit computation unit for determining a basic fuel injection quantity for vehicle speed limit by feedback computation from the difference between the determined target acceleration value and the actual acceleration value; an accelerator required injection quantity computation unit for computing an accelerator required injection quantity from the engine revolution speed and accelerator opening degree; and vehicle speed limit injection quantity computation unit for selecting the smaller of the basic fuel injection quantity for vehicle speed limit and accelerator required injection quantity and setting it as a fuel injection quantity for vehicle speed limit.
    • 燃料喷射量控制装置包括:车速检测单元; 档位检测单元; 发动机转速检测单元; 加速器开度检测单元; 目标加速度值计算单元,用于求出对应于设定的极限车速与实际车速之间的差的基本目标加速度值以及地图中各档位的基本目标加速度值的上限值和下限值, 用上限值和下限值限制基本目标加速度值,确定目标加速度值; 用于根据所确定的目标加速度值和实际加速度值之间的差异,通过反馈计算确定车辆速度限制的基本燃料喷射量的车辆速度限制运算单元的基本燃料喷射量; 用于从发动机转速和加速器开度计算加速器所需喷射量的加速器所需喷射量计算单元; 以及车速极限喷射量计算单元,用于选择车辆速度限制和加速器所需喷射量的基本燃料喷射量的较小者,并将其设定为车辆速度限制的燃料喷射量。