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    • 26. 发明申请
    • Systems, Methods and Devices for Generating Alternate Itineraries
    • 用于生成备用行程的系统,方法和设备
    • US20130117057A1
    • 2013-05-09
    • US13655116
    • 2012-10-18
    • Peter Van MoltkeJohn GrantNenad MihajlovicMatthew WatertonRob Shaw
    • Peter Van MoltkeJohn GrantNenad MihajlovicMatthew WatertonRob Shaw
    • G06Q10/06
    • G06Q10/06311G01C21/3415G01C21/3423G06Q10/025
    • Systems, methods and devices for generating one or more alternate itineraries for an entity for accommodation upon one or more disruptions of one or more predetermined itineraries for the entity for accommodation, each of the predetermined and alternate itineraries consisting of one or more segments, wherein the one or more segments of the predetermined itinerary are affected by the one or more disruptions and none of the one or more segments of the alternative itineraries are affected by the one or more disruptions, the system comprising a data storage component, configured to store information relating to segments and disruptions; and a data services component configured to (a) receive information relating to disruptions and segments; (b) communicate the information from (a) to the data storage component for storage of same; (c) determine whether predetermined itineraries will be affected by disruptions and, if so, generate alternative itineraries.
    • 用于为实体生成一个或多个替代行程的系统,方法和装置,用于在用于所述实体的一个或多个预定行程的一个或多个中断时进行调节以进行调节,每个预定和替代行程由一个或多个段组成,其中, 预定行程的一个或多个段受到一个或多个中断的影响,并且替代行程的一个或多个段中的一个都不受该一个或多个中断的影响,该系统包括数据存储组件,用于存储相关的信息 分段和中断; 以及数据服务组件,被配置为(a)接收与中断和分段有关的信息; (b)将信息从(a)传送到数据存储部件以存储; (c)确定预定的行程是否会受到中断的影响,如果有的话,会生成其他行程。
    • 27. 发明申请
    • Methods and Systems for Detecting Baghouse Filter Leaks
    • 检测袋式过滤器泄漏的方法和系统
    • US20070084339A1
    • 2007-04-19
    • US11163095
    • 2005-10-05
    • John GrantDonald Pegelow
    • John GrantDonald Pegelow
    • B01D46/46
    • B01D46/02B01D46/42B01D46/46G01N21/59
    • A method of detecting leaks in the filter bags of a baghouse filter chamber that includes determining when the filter bags have been cleaned and, during a post-cleaning period after the cleaning of the filter bags, determining whether the opacity level of the exhaust of the baghouse filter chamber exceeds a predefined opacity limit. The determining whether the opacity level of the exhaust of the baghouse filter chamber exceeds a predefined opacity limit may include monitoring the opacity level of the exhaust of the baghouse filter chamber with an opacity sensor during the post-cleaning period and comparing the opacity readings during the post-cleaning period with the value of the predefined opacity limit.
    • 一种检测袋式过滤室的过滤袋中的泄漏的方法,包括确定过滤袋何时被清洁,并且在清洁过滤袋之后的后清洁期间,确定过滤袋的排气的不透明度是否为 袋式过滤室超过预定义的不透明度限制。 确定袋式过滤室的排气的不透明度水平是否超过预定的不透明度限度可以包括在后清洁期间用不透明度传感器监测袋式过滤室的排气的不透明度水平,并比较在 后期清洁周期与预定义的不透明度限制的值。
    • 28. 发明申请
    • SYSTEM AND METHOD FOR DETERMINING AN ANGULAR POSITION OF A ROTOR AND A RADIAL POSITION OF THE ROTOR
    • 用于确定转子的角位置和转子的径向位置的系统和方法
    • US20060100819A1
    • 2006-05-11
    • US10904258
    • 2004-11-01
    • John GrantJames SchmidCraig Foster
    • John GrantJames SchmidCraig Foster
    • G01C19/00
    • G01D5/202
    • A system and a method for determining an angular position of a rotor and a radial position of the rotor are provided. The rotor has either a slot or a protrusion on the rotor. The rotor is centered about a center point. The method includes generating a first signal utilizing a first sensor disposed proximate the slot or protrusion of the rotor. The method further includes determining a first angular position of the rotor by identifying a first corrupted portion of the first signal. The method further includes removing the first corrupted portion of the first signal to obtain a second non-corrupted position signal. The method further includes determining a first radial coordinate of the center point of the rotor based on the second non-corrupted position signal.
    • 提供了用于确定转子的角位置和转子的径向位置的系统和方法。 转子具有转子上的槽或突起。 转子以中心点为中心。 该方法包括使用靠近转子的槽或突出部设置的第一传感器产生第一信号。 该方法还包括通过识别第一信号的第一损坏部分来确定转子的第一角位置。 该方法还包括移除第一信号的第一损坏部分以获得第二未损坏位置信号。 该方法还包括基于第二未损坏位置信号来确定转子的中心点的第一径向坐标。