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    • 1. 发明申请
    • Exhaust Gas Analysis Method and Exhaust Gas Analysis Apparatus
    • 废气分析方法和废气分析装置
    • US20090164138A1
    • 2009-06-25
    • US12083521
    • 2006-12-15
    • Katsutoshi GotoMasahiro YamakageTomoyasu IwaseTokio OkanoYoshihiro DeguchiMasanobu MizoguchiAtushi TakitaNorihiro Fukuda
    • Katsutoshi GotoMasahiro YamakageTomoyasu IwaseTokio OkanoYoshihiro DeguchiMasanobu MizoguchiAtushi TakitaNorihiro Fukuda
    • G01N21/31G06F19/00
    • G01N21/3504G01N21/031G01N21/314
    • An exhaust gas analysis method comprises applying a laser beam to the exhaust gas discharged from an internal combustion engine, receiving the laser beam that has passed through the exhaust gas, and measuring the concentration of any of the components contained in the exhaust gas based on the received laser beam. The exhaust gas analysis method further comprises detecting the absorption spectrum of the laser beam absorbed in the exhaust gas by using the received laser beam (S1), calculating the concentration of the specific gas component by using the absorption spectrum (S2), calculating the temperature of the exhaust gas by using the absorption spectrum (S3), calculating the pressure of the exhaust gas by using the absorption spectrum (S4 to S6), correcting the calculated concentration of the component contained in the exhaust gas by using the calculated temperature (S7), correcting the concentration by using the calculated pressure (S8), and outputting the true concentration value (S9). Accordingly, the exhaust gas analysis method is substantially insensitive to variation in pressure and temperature of the exhaust gas and capable of calculating and analyzing the concentration of any of the components contained in the exhaust gas in an accurate, realtime manner.
    • 排气分析方法包括对从内燃机排出的排气施加激光,接收通过废气的激光束,并且基于该废气测定废气中含有的任何成分的浓度 接收激光束。 废气分析方法还包括通过使用接收的激光束(S1)检测吸收在废气中的激光束的吸收光谱,通过使用吸收光谱(S2)计算特定气体成分的浓度,计算温度 通过使用吸收光谱(S3)来计算排气的压力,通过使用吸收光谱(S4〜S6)计算废气的压力,通过使用计算出的温度来校正计算出的废气中成分的成分浓度(S7 ),通过使用计算出的压力来校正浓度(S8),并输出真浓度值(S9)。 因此,排气分析方法对废气的压力和温度的变化基本上不敏感,并且能够以准确的实时方式计算和分析废气中包含的任何组分的浓度。
    • 3. 发明申请
    • Facilities control system and method of controlling facilities
    • 设施控制系统和控制设施的方法
    • US20050010460A1
    • 2005-01-13
    • US10914191
    • 2004-08-10
    • Masanobu MizoguchiShintaro Kumano
    • Masanobu MizoguchiShintaro Kumano
    • G06F19/00G06Q50/00G06Q50/30G06F17/60
    • G06Q10/06
    • In an aspect of the present invention, a facilities control system includes a simulation section which carries out a simulation of a time change of a status of an object of a target based on a status data showing the target status in the facilities by using a facilities model; and a display section which displays a simulation result. The facilities model includes a plurality of nodes, in each of which a process is carried out the target based on a first condition, which is set to the node to determine a throughput of the process in the node. A plurality of links, each of which connects between two of the plurality of nodes, and in each of which a process is carried out the target based on a second condition, which is set to the link to determine a throughput of the process in the link.
    • 在本发明的一个方面中,一种设备控制系统包括:仿真部,其通过使用设备,根据表示设备中的目标状态的状态数据,对目标物体的状态的时间变化进行模拟 模型; 以及显示模拟结果的显示部。 设施模型包括多个节点,其中每个节点基于第一条件来执行进程,该第一条件被设置为节点以确定节点中的进程的吞吐量。 多个链接,每个链接中的每一个在多个节点中的两个节点之间连接,并且在每个链接中,基于第二条件执行进程,该第二条件被设置为链接,以确定该进程的吞吐量 链接。