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    • 2. 发明授权
    • Exhaust gas purifying system for internal combustion engine
    • 内燃机排气净化系统
    • US06497846B1
    • 2002-12-24
    • US09370885
    • 1999-08-10
    • Keiji OkadaKazuhiko KanetoshiHirofumi TsuchidaAkira Tayama
    • Keiji OkadaKazuhiko KanetoshiHirofumi TsuchidaAkira Tayama
    • F01N300
    • F01N3/0835B01D53/944B01D53/9495F01N3/0814F01N3/0871F01N3/2828F02B2075/125F02D41/0255F02D41/402F02D41/405F02D2041/389F02D2200/0802Y02T10/123Y02T10/26Y02T10/44
    • An exhaust gas purifying system for a cylinder direct internal combustion engine having a fuel injector valve for directly injecting fuel into a combustion chamber of the engine. The exhaust gas purifying system comprises an adsorbent catalytic converter disposed in an exhaust gas passageway of the engine. The adsorbent catalytic converter including a catalytic element having an adsorption layer. The adsorption layer contains an adsorbent for adsorbing HC (hydrocarbons) of exhaust gas in a first temperature range and to release the adsorbed HC in a second temperature range which is high relative to the first temperature range, and a catalyst component for promoting reaction for oxidizing HC which is released from the adsorbent. A control unit is provided to be programmed to carry out (a) judging that a temperature of the adsorption layer has reaches a releasing level relating to the second temperature range, so as to make a first judgment result; (b) judging that a temperature of exhaust gas flown into the adsorbent catalytic converter will rise upon injection of an additional fuel from the fuel injector valve into the combustion chamber during a time period including an expansion stroke and an exhaust stroke of the engine, so as to make a second judgment result; and (c) causing the fuel injector valve to controllably inject the additional fuel during the time period including the expansion stroke and the exhaust stroke of the engine upon making both the first and second judgment results.
    • 一种用于汽缸直接内燃机的排气净化系统,其具有用于将燃料直接喷射到发动机的燃烧室中的燃料喷射阀。 排气净化系统包括设置在发动机的排气通道中的吸附催化转化器。 该吸附剂催化转化器包括具有吸附层的催化元件。 吸附层含有用于在第一温度范围内吸附废气的HC(烃)的吸附剂,并且在相对于第一温度范围高的第二温度范围内释放吸附的HC,以及用于促进氧化反应的催化剂组分 HC从吸附剂中释放出来。 提供控制单元进行编程以执行(a)判断吸附层的温度达到与第二温度范围有关的释放水平,以便作出第一判断结果; (b)判断在包括发动机的膨胀冲程和排气冲程在内的时间段期间,从燃料喷射阀向燃烧室喷射附加燃料时,判断流入吸附剂催化转化器的废气的温度升高,因此 作出第二判断结果; 以及(c)在进行第一和第二判断结果的同时,在包括发动机的膨胀冲程和排气冲程的时间段期间使燃料喷射阀可控制地喷射附加燃料。
    • 4. 发明授权
    • Engine control apparatus
    • 发动机控制装置
    • US08267076B2
    • 2012-09-18
    • US12826367
    • 2010-06-29
    • Shinji NakagawaKazuhiko KanetoshiKouzou KatogiTakanobu IchiharaMinoru Ohsuga
    • Shinji NakagawaKazuhiko KanetoshiKouzou KatogiTakanobu IchiharaMinoru Ohsuga
    • F02D41/10
    • F02D41/0085F02D37/02F02D41/1454F02D41/1497F02D2200/1012
    • The present invention performs correction appropriately according to errors in the fuel system and air system respectively and corrects both variations in the air-fuel ratio and torque. When the difference between a target air-fuel ratio and a real air-fuel ratio is equal to or below a predetermined value when feedback control based on the air-fuel ratio of an exhaust manifold 10A is in progress, the air-fuel ratio of a cylinder cyl—1 having the largest variation of angular acceleration is corrected to the rich side, for example, by increasing the amount of fuel. Angular acceleration per cylinder is then detected again and when the variation in angular acceleration among cylinders is not eliminated, it is judged that there is an error in the amount of air control of the cylinder having the largest variation and the amount of air, amount of fuel, ignition timing or the like are corrected.
    • 本发明分别根据燃料系统和空气系统中的误差适当地进行校正,并且校正空燃比和扭矩的变化。 当在进行基于排气歧管10A的空燃比的反馈控制的情况下,当目标空燃比与实际空燃比之间的差等于或低于预定值时,空燃比 具有最大的角加速度变化的气缸cyl-1例如通过增加燃料量被校正到浓侧。 再次检测每缸的角加速度,当不消除气缸之间角加速度的变化时,判断为具有最大变化量和空气量的气缸的空气控制量存在误差, 燃料,点火正时等。
    • 9. 发明申请
    • EGR Flow Rate Control Apparatus of Internal Combustion Engine
    • 内燃机EGR流量控制装置
    • US20110017179A1
    • 2011-01-27
    • US12829080
    • 2010-07-01
    • Takanobu ICHIHARAKazuhiko KanetoshiKouzou KatogiHiroaki Hoshika
    • Takanobu ICHIHARAKazuhiko KanetoshiKouzou KatogiHiroaki Hoshika
    • F02B47/08
    • F02D41/0072F02D41/28F02D2041/0075F02D2041/141F02D2041/1432F02M26/05F02M26/40F02M26/47Y02T10/47
    • An EGR flow rate control apparatus of an internal combustion engine is provided that can correct with high accuracy an EGR gas flow rate measured by a gas flow rate measurement apparatus in an EGR passage and control with high accuracy a gas flow rate regulating valve to reduce discharge amounts of PM and NOx in exhaust gases. An EGR flow rate control apparatus 10 of an internal combustion engine includes EGR flow channels 16, 20 that communicate exhaust pipe 11 with intake pipe 7, gas flow rate regulating valve 17 installed in EGR flow channels 26, 20 that regulates an EGR gas flow rate, and gas flow rate measurement apparatus 18 that is installed on an intake pipe 7 side with respect to the flow rate regulating valve 17 of EGR flow channels 16 and 20 and that measures an EGR gas flow rate flowing through the EGR flow channels 16 and 20. The EGR flow rate control apparatus 10 includes gas flow rate correction means 45 that corrects the EGR gas flow rate based on a first operating state parameter relating to pressure fluctuations of the intake pipe or exhaust pipe of the internal combustion engine and a second operating state parameter relating to a flow channel resistance of the EGR flow channel.
    • 提供一种内燃机的EGR流量控制装置,其能够高精度地校正由EGR通路中的气体流量测量装置测量的EGR气体流量,并且以高精度控制气体流量调节阀以减少放电 废气中的PM和NOx的量。 内燃机的EGR流量控制装置10包括将排气管11与进气管7连通的EGR流路16,20,安装在EGR流路26,20中的气体流量调节阀17,其调节EGR气体流量 ,以及相对于EGR流路16,20的流量调节阀17安装在进气管7侧并测量流过EGR流路16,20的EGR气体流量的气体流量测量装置18 EGR流量控制装置10包括气体流量校正装置45,其根据与内燃机的进气管或排气管的压力波动相关的第一运转状态参数和第二运转状态来修正EGR气体流量 与EGR流路的流路阻力有关的参数。