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    • 3. 发明授权
    • Method and system for compensating for degraded pre-catalyst oxygen sensor in a two-bank exhaust system
    • 用于补偿双排排气系统中劣化的预催化剂氧传感器的方法和系统
    • US06282888B1
    • 2001-09-04
    • US09488418
    • 2000-01-20
    • Brent Edward SealyKenneth John BehrRichard Andrew Booth
    • Brent Edward SealyKenneth John BehrRichard Andrew Booth
    • F01N300
    • F02D41/1443F02D41/1441F02D41/1495
    • A method and system for controlling the air/fuel ratio in an internal combustion engine having first and second groups of cylinders coupled to first and second exhaust banks, respectively. Each exhaust bank has a catalyst, a pre-catalyst oxygen sensor and a post-catalyst oxygen sensor, wherein the oxygen sensors monitor the air/fuel ratio in their respective exhaust banks and provide corresponding feedback signals to a controller. The controller uses the feedback signals to control the air/fuel ratio in the engine cylinders. When it is detected that one or the other of the pre-catalyst oxygen sensors has degraded, the controller calculates A/F values for the group of cylinders corresponding to the exhaust bank having a degraded EGO sensor based on feedback signals from the three still-functional oxygen sensors.
    • 一种用于控制内燃机中的空燃比的方法和系统,所述内燃机分别具有联接到第一和第二排气组的第一和第二组气缸。 每个排气组具有催化剂,预催化剂氧传感器和催化后氧传感器,其中氧传感器监测其各自排气组中的空气/燃料比,并向控制器提供相应的反馈信号。 控制器使用反馈信号来控制发动机气缸中的空燃比。 当检测到催化剂中的氧传感器中的一个或另一个已经劣化时,控制器基于来自三个静止电极的反馈信号来计算与具有劣化的EGO传感器的排气组对应的气缸组的A / F值, 功能氧传感器。
    • 5. 发明授权
    • Method and system for controlling air/fuel level for internal combustion engine with two exhaust banks
    • 用于控制具有两个排气管的内燃机的空气/燃料水平的方法和系统
    • US06301880B1
    • 2001-10-16
    • US09488664
    • 2000-01-20
    • Michael John CullenBrent Edward SealyKenneth John BehrRichard Andrew Booth
    • Michael John CullenBrent Edward SealyKenneth John BehrRichard Andrew Booth
    • F01N300
    • F02D41/1477F02D41/1443
    • A method and system for controlling the air/fuel ratio in an internal combustion engine having first and second groups of cylinders coupled to first and second exhaust banks, respectively. The first exhaust bank includes a catalyst and at least a pre-catalyst oxygen sensor. The second exhaust bank includes a catalyst and no more than one post-catalyst oxygen sensor. The oxygen sensors monitor the oxygen content of the exhaust gases in their corresponding exhaust banks and provide feedback signals to a controller. The controller uses the feedback signal from the pre-catalyst oxygen sensor (in the first bank) to calculate desired A/F values in the first group of cylinders. The controller uses both the feedback signal from the pre-catalyst oxygen sensor (in the first bank) and the feedback signal from the post-catalyst oxygen sensor (in the second bank) to calculate desired A/F values for the second group of cylinders.
    • 一种用于控制内燃机中的空燃比的方法和系统,所述内燃机分别具有联接到第一和第二排气组的第一和第二组气缸。 第一排气组包括催化剂和至少一种预催化剂氧传感器。 第二排气组包括催化剂和不超过一个催化后氧传感器。 氧传感器监测其相应排气组中废气的氧含量,并向控制器提供反馈信号。 控制器使用来自预催化剂氧传感器(在第一组中)的反馈信号来计算第一组气缸中的所需A / F值。 控制器使用来自预催化剂氧传感器(在第一组中)的反馈信号和来自催化后氧传感器(在第二组中)的反馈信号来计算第二组气缸的期望A / F值 。
    • 8. 发明授权
    • Diagnostic system for detecting catalyst failure using switch ratio
    • 使用开关比检测催化剂故障的诊断系统
    • US06467254B1
    • 2002-10-22
    • US09488932
    • 2000-01-20
    • Michael John CullenBrent Edward SealyKenneth John BehrRichard Andrew Booth
    • Michael John CullenBrent Edward SealyKenneth John BehrRichard Andrew Booth
    • F01N300
    • F01N11/007F01N2550/02F01N2900/0421Y02T10/47
    • A method and system for diagnosing catalyst operation in an internal combustion engine having a two-bank, three EGO sensor structure includes monitoring when the EGO sensors switch states between rich and lean and determining the ratio between a switch count of the post-catalyst EGO sensor signal and a switch count of a pre-catalyst EGO sensor signal over a selected time period. If the exhaust bank is a one-sensor bank having only a post-catalyst EGO sensor and not a pre-catalyst EGO sensor, the system uses the switch count from the pre-catalyst EGO sensor in the two-sensor bank to calculate the switch ratio, thereby allowing calculation of two switch ratios without two matched pairs of EGO sensors. The switch ratio indicates the efficiency of the catalyst and may be compared with later-generated ratios to monitor converter efficiency over time.
    • 用于诊断具有两岸三EGO传感器结构的内燃机中的催化剂操作的方法和系统包括监测EGO传感器何时切换富和贫之间的状态,并确定催化剂后EGO传感器的开关计数之间的比率 信号和催化剂前EGO传感器信号的开关计数。 如果排气组是仅具有催化后EGO传感器且不是催化剂前EGO传感器的单传感器组,则系统使用来自双传感器组中的催化剂前EGO传感器的开关计数来计算开关 比例,从而允许计算两个开关比,而没有两个匹配的EGO传感器对。 开关比表示催化剂的效率,并且可以与后来产生的比率进行比较,以监测转换器随时间的效率。
    • 10. 发明授权
    • Method for controlling air/fuel mixture in an internal combustion engine
    • 用于控制内燃机中空气/燃料混合物的方法
    • US06276129B1
    • 2001-08-21
    • US09488417
    • 2000-01-20
    • Richard Andrew BoothBrent Edward SealyKenneth John BehrMichael John Cullen
    • Richard Andrew BoothBrent Edward SealyKenneth John BehrMichael John Cullen
    • F01N300
    • F02D41/1443F02D41/2454F02D41/248
    • A method and system for controlling the air/fuel ratio in an internal combustion engine having a first group of cylinders and a second group of cylinders. The first group of cylinders is coupled to a catalyst and at least one oxygen sensor, which provides a first feedback signal. The second group of cylinders is coupled to a catalyst and a post-catalyst oxygen sensor, which provides a second feedback signal. A controller uses the first and second feedback signals to calculate a short-term air/fuel bias value for the second group of cylinders. The controller also calculates a new long-term air/fuel bias value corresponding to the current engine speed and engine. The new long-term air/fuel bias value is based on a previously-calculated long-term air/fuel bias value calculated for the same engine load and speed. A total air/fuel bias value is calculated based on the short-term air/fuel bias value and the long-term air/fuel bias value. The new long-term air/fuel bias value is stored for future calculations.
    • 一种用于控制具有第一组气缸和第二组气缸的内燃机中的空燃比的方法和系统。 第一组气缸耦合到催化剂和至少一个氧传感器,其提供第一反馈信号。 第二组汽缸耦合到催化剂和催化后氧传感器,其提供第二反馈信号。 控制器使用第一和第二反馈信号来计算第二组气缸的短期空气/燃料偏置值。 控制器还计算与当前发动机转速和发动机相对应的新的长期空气/燃料偏置值。 新的长期空气/燃料偏差值基于以前计算的相同发动机负载和速度的长期空气/燃料偏差值。 基于短期空气/燃料偏差值和长期空气/燃料偏差值计算总空气/燃料偏差值。 新的长期空气/燃料偏差值被存储用于将来的计算。