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    • 8. 发明授权
    • Adaptive control strategy
    • 自适应控制策略
    • US08701390B2
    • 2014-04-22
    • US12953325
    • 2010-11-23
    • Christian Thomas ChimnerHanlong Yang
    • Christian Thomas ChimnerHanlong Yang
    • F01N3/00
    • F01N3/0814F01N3/021F01N3/0842F01N3/0871F01N3/2066F01N9/00F01N13/0097F01N2240/30F01N2900/1612F01N2900/1614Y02A50/2325Y02T10/47
    • A vehicle has an exhaust aftertreatment system including an LNT. The vehicle operates through a series of ignition cycles, deNOX cycles, and deSOX cycles. DeNOX operations begin when the LNT reaches a loading threshold. The applicable threshold depends on operating conditions, such as mean LNT temperature and mean exhaust flow rate. The thresholds are adapted based on NOX removal efficiency data. The data is compared to target values. The target values depend on the operating condition range, but remain fixed while the thresholds are adapted. NOX removal efficiency is measured over intervals corresponding to entire deNOX cycles. The data is sorted into bins according to operating conditions. The adaptations are only made if a bin has several data points accumulated over a minimum interval that is at least one ignition or deSOX cycle, preferably several. The method provides stable adaptations that compensate for aging.
    • 车辆具有包括LNT的排气后处理系统。 车辆通过一系列点火循环,脱硝循环和脱硫循环进行操作。 当LNT达到加载阈值时,DeNOX操作开始。 适用的阈值取决于操作条件,如平均LNT温度和平均排气流量。 基于NOX去除效率数据调整阈值。 数据与目标值进行比较。 目标值取决于操作条件范围,但在修改阈值时保持固定。 在对应于整个deNOX循环的间隔上测量NO x去除效率。 根据操作条件将数据分类到箱中。 仅当箱体具有在至少一个点火或脱硫循环(最好几个)的最小间隔上积累的几个数据点时才进行调整。 该方法提供稳定的适应性,以补偿老化。
    • 9. 发明申请
    • Adaptive Control Strategy
    • 自适应控制策略
    • US20120124967A1
    • 2012-05-24
    • US12953325
    • 2010-11-23
    • Hanlong YangChristian Thomas Chimner
    • Hanlong YangChristian Thomas Chimner
    • F01N3/18
    • F01N3/0814F01N3/021F01N3/0842F01N3/0871F01N3/2066F01N9/00F01N13/0097F01N2240/30F01N2900/1612F01N2900/1614Y02A50/2325Y02T10/47
    • A vehicle has an exhaust aftertreatment system including an LNT. The vehicle operates through a series of ignition cycles, deNOX cycles, and deSOX cycles. DeNOX operations begin when the LNT reaches a loading threshold. The applicable threshold depends on operating conditions, such as mean LNT temperature and mean exhaust flow rate. The thresholds are adapted based on NOX removal efficiency data. The data is compared to target values. The target values depend on the operating condition range, but remain fixed while the thresholds are adapted. NOX removal efficiency is measured over intervals corresponding to entire deNOX cycles. The data is sorted into bins according to operating conditions. The adaptations are only made if a bin has several data points accumulated over a minimum interval that is at least one ignition or deSOX cycle, preferably several. The method provides stable adaptations that compensate for aging.
    • 车辆具有包括LNT的排气后处理系统。 车辆通过一系列点火循环,脱硝循环和脱硫循环进行操作。 当LNT达到加载阈值时,DeNOX操作开始。 适用的阈值取决于操作条件,如平均LNT温度和平均排气流量。 基于NOX去除效率数据来调整阈值。 数据与目标值进行比较。 目标值取决于操作条件范围,但在修改阈值时保持固定。 在对应于整个deNOX循环的间隔上测量NO x去除效率。 根据操作条件将数据分类到箱中。 仅当箱体具有在至少一个点火或脱硫循环(最好几个)的最小间隔上积累的几个数据点时进行调整。 该方法提供稳定的适应性,以补偿老化。