MOVING BODY CONTROL DEVICE, MOVING BODY CONTROL METHOD, AND COMPUTER READABLE RECORDING MEDIUM

    公开(公告)号:US20210208584A1

    公开(公告)日:2021-07-08

    申请号:US17112062

    申请日:2020-12-04

    Abstract: A moving body control device includes a processor including hardware, the processor being configured to: acquire spatial information of at least one of an outside and inside of a moving body; generate a virtual image including the information of the at least one of the outside and inside of the moving body based on the spatial information; output the generated virtual image to a display unit visually recognizable by a user who rides on the moving body; acquire a detection result of a predetermined action of the user when the user performs an action; update and output the virtual image based on the action of the user in the detection result; and output a control signal for the moving body, the control signal being based on the detection result.

    EXHAUST PURIFICATION SYSTEM FOR INTERNAL COMBUSTION ENGINE
    2.
    发明申请
    EXHAUST PURIFICATION SYSTEM FOR INTERNAL COMBUSTION ENGINE 有权
    内燃机排气净化系统

    公开(公告)号:US20160298511A1

    公开(公告)日:2016-10-13

    申请号:US15036540

    申请日:2014-09-26

    Abstract: The risk of a particulate filter from being damaged is reduced while an increase in pressure loss of the particulate filter due to ash is suppressed. Micropore zones are defined at upstream sides of partition walls of a particulate filter and macropore zones are defined at downstream sides of partition walls. The pore size of the partition walls at the micropore zones is set so that the particulate matter and the ash can be trapped by the partition walls at the micropore zones, while the pore size of the partition walls at the macropore zones is set so that the ash can pass through the partition walls at the macropore zones. When the difference dQPM between the quantity of the particulate matter which is trapped at the micropore zones and the quantity of particulate matter which is trapped at the macropore zones exceeds a predetermined threshold value, PM removal control is executed.

    Abstract translation: 颗粒过滤器被损坏的风险降低,同时由于灰分导致的颗粒过滤器的压力损失的增加被抑制。 微孔区限定在颗粒过滤器的隔壁的上游侧,大孔区限定在隔墙的下游侧。 微孔区域的隔壁的孔径被设定为使得微孔区域中的分隔壁可以捕获颗粒物质和灰分,同时将大孔区域的隔壁的孔径设定为使得 灰分可以穿过大孔区域的隔墙。 当在微孔区域捕获的颗粒物质的量与在大孔区域被捕获的颗粒物质的量之间的差dQPM超过预定阈值时,执行PM去除控制。

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