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    • 5. 发明授权
    • Control apparatus for internal combustion engine including engine stop control
    • 包括发动机停止控制的内燃机控制装置
    • US09020737B2
    • 2015-04-28
    • US13382080
    • 2010-06-22
    • Eiji Murase
    • Eiji Murase
    • F02D41/04F02D41/00F02N11/08
    • F02D41/047F02D41/0025F02D41/042F02D2250/11F02N11/0829F02N2200/023Y02T10/48
    • A control apparatus for an internal combustion engine includes a fuel injection portion that carries out fuel injection for the internal combustion engine, a recirculation portion that recirculates to an intake system evaporative gas of injected fuel that has been mixed with lubricating oil for the internal combustion engine, a parameter acquisition portion that acquires a fuel mixture parameter corresponding to an amount of fuel that has been mixed with the lubricating oil, an engine stop portion that performs engine stop control to temporarily stop the internal combustion engine when a predetermined stop condition is fulfilled, and a stop condition correction portion that corrects a stop condition of the engine stop control on the basis of at least the fuel mixture parameter.
    • 一种用于内燃机的控制装置,包括对内燃机执行燃料喷射的燃料喷射部分,再循环到进气系统中,所述进气系统与已经与用于内燃机的润滑油混合的喷射燃料的蒸发气体 获取与所述润滑油混合的燃料量对应的燃料混合物参数的参数获取部,当满足规定的停止条件时执行发动机停止控制以暂时停止所述内燃机的发动机停止部, 以及停止条件校正部,其基于至少所述燃料混合参数来校正所述发动机停止控制的停止状态。
    • 6. 发明申请
    • PARTICULATE MATTER PROCESSING APPARATUS
    • 颗粒物加工设备
    • US20140007650A1
    • 2014-01-09
    • US13519021
    • 2011-03-16
    • Shinichi MitaniHiroshi NomuraEiji Murase
    • Shinichi MitaniHiroshi NomuraEiji Murase
    • G01N27/04
    • G01N27/04B03C3/0175B03C3/41B03C3/68B03C2201/24B03C2201/30F01N11/00F01N11/007F01N2560/05F01N2560/12F01N2900/1606G01N15/0606Y02T10/47
    • An amount of aggregation of particulate matter is estimated with a high degree of accuracy. A particulate matter processing apparatus in which a processing part with an electrode installed therein is arranged in an exhaust passage of an internal combustion engine, wherein particulate matter is caused to aggregate by generating a potential difference between the electrode and the processing part, is provided with a power supply that is connected to the electrode and applies a voltage thereto, a current detection device that detects an electric current which passes through the electrode, an estimation device that estimates an amount of aggregation of the particulate matter based on the electric current detected at the time when the voltage is applied to the electrode, an air fuel ratio detection device that detects or estimates an air fuel ratio of an exhaust gas which flows through the exhaust passage, and a prohibition device which prohibits an estimation by the estimation device in the case of a rich air fuel ratio.
    • 以高精度估计颗粒物质的聚集量。 在其中安装有电极的处理部件的颗粒物处理装置设置在内燃机的排气通道中,其中通过在电极和处理部件之间产生电位差而使颗粒物质聚集, 与电极连接并对其施加电压的电源,检测通过电极的电流的电流检测装置,基于在电极上检测到的电流来估计颗粒物的聚集量的估计装置, 对电极施加电压的时间,检测或估计通过排气通路的排气的空燃比的空燃比检测装置,以及禁止在估计装置中进行的估计的禁止装置 超大空燃比的情况。
    • 8. 发明授权
    • Control apparatus for internal combustion engine
    • 内燃机控制装置
    • US09057297B2
    • 2015-06-16
    • US13699693
    • 2010-05-25
    • Eiji Murase
    • Eiji Murase
    • F01N3/00F01N3/01F01N9/00
    • F01N3/01F01N9/00F01N2240/28F01N2560/025F01N2900/08F01N2900/14F01N2900/1402Y02T10/20Y02T10/47
    • An object of this invention is to appropriately control the state of a corona discharge in accordance with an exhaust air-fuel ratio, and always purify particulate matter (PM) in exhaust gas efficiently. An engine is equipped with a corona discharge-type exhaust emission control device. The exhaust emission control device purifies PM in exhaust gas by generating a corona discharge between a center electrode and an earth electrode. When the air-fuel ratio is in a rich region, an ECU controls an applied voltage that is applied between the electrodes. It is thereby possible to obtain a maximum PM purification rate while preventing an arc discharge. When the air-fuel ratio is in a lean region, a discharge current flowing between the electrodes is controlled. It is thereby possible to suppress power consumption while compensating for a decrease in the PM purification rate caused by a reduction in the PM amount in the exhaust gas.
    • 本发明的目的是根据排气空燃比适当地控制电晕放电的状态,并且有效地净化废气中的颗粒物质(PM)。 发动机配备有电晕放电型废气排放控制装置。 废气排放控制装置通过在中心电极和接地电极之间产生电晕放电来净化废气中的PM。 当空燃比处于浓区域时,ECU控制施加在电极之间的施加电压。 从而可以在防止电弧放电的同时获得最大的PM净化率。 当空燃比处于稀薄区域时,控制在电极之间流动的放电电流。 由此,能够抑制由废气中的PM量的降低引起的PM净化率的降低的同时抑制功率消耗。
    • 10. 发明申请
    • CONTROL DEVICE FOR INTERNAL COMBUSTION ENGINE
    • 内燃机控制装置
    • US20140318501A1
    • 2014-10-30
    • US14363167
    • 2011-12-08
    • Shinichi MitaniEiji MuraseTakahiro TsukagoshiKazuhisa Matsuda
    • Shinichi MitaniEiji MuraseTakahiro TsukagoshiKazuhisa Matsuda
    • F02D41/30
    • F02D41/30F02D19/061F02D19/0689F02D19/0692F02D19/084F02D19/087F02D41/0025F02D41/008F02D41/047F02D41/3094F02D2200/0611Y02T10/36
    • An objective of the present invention is to stabilize the fuel injection amount for each cylinder and to execute fuel injection control accurately in a single-pressure-feed dual-injection type alcohol fuel injection system. An engine includes two injection valves and and a single-pressure-feed dual-injection type fuel supply system. The fuel supply system is configured such that fuel is injected sequentially in two cylinders during the pressure-feed-interval period from the execution of one fuel pressure-feed operation to the execution of the next fuel pressure-feed operation. If the alcohol concentration in the fuel is higher than a predetermined determination value γ at a startup operation time, an ECU executes only a cylinder injection for the first of the two cylinders described above, and executes both an intake passage injection and a cylinder injection for the second cylinder. Thus, even if the fuel pressure decreases due to the fuel injection for the first cylinder, the required fuel injection amount can be reserved for the second cylinder.
    • 本发明的目的是稳定每个气缸的燃料喷射量,并且在单压进料双注射型酒精燃料喷射系统中精确地执行燃料喷射控制。 发动机包括两个喷射阀和一个单进料双注射型燃料供应系统。 燃料供给系统被构造成使得在从执行一个燃料加压操作到执行下一次燃料加压操作的压力进给间隔期间,将燃料依次注入两个气缸中。 如果燃料中的酒精浓度高于启动操作时间的预定判定值γ,则ECU仅执行上述两个气缸中的第一个气缸的气缸喷射,并且执行进气通道喷射和气缸喷射 第二缸。 因此,即使燃料压力由于第一气缸的燃料喷射而降低,也可以为第二气缸保留所需的燃料喷射量。