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    • 1. 发明申请
    • SYSTEM AND METHOD FOR PROVIDING VEHICLE AND FLEET PROFILES AND PRESENTATIONS OF TRENDS
    • 提供车辆和配置文件的系统和方法和趋势展示
    • WO2012138847A2
    • 2012-10-11
    • PCT/US2012/032305
    • 2012-04-05
    • MITCHELL, PeterFLEETMATICS IRL LIMITED
    • MITCHELL, Peter
    • G08G1/123
    • G08G1/127G06Q10/0639G07C5/008G08G1/0104G08G1/20
    • A computer system and products and methods therefor including at least one computer processor and computer readable storage medium or media including computer code and at least one storage device in which is stored GPS data for a plurality of vehicles the system comprising: a memory including GPS event database including GPS event data transmitted from a plurality of GPS devices, each GPS device associated with a vehicle, and stored over a period of time; and the one or more processors programmed at least to: receive GPS event data transmitted from a plurality of GPS devices, each GPS device associated with a vehicle; for each vehicle, store in GPS event database operatively coupled to at least one of the processors, the GPS event data; analyze the GPS event data to derive a plurality of operational metrics for each of a plurality of vehicles; identify, from the analysis, at least one trend for a GPS event history using the GPS event data; and provide, for a graphic user interface, a representation including a representation of the at least one trend.
    • 一种计算机系统及其产品和方法,包括至少一个计算机处理器和包括计算机代码的计算机可读存储介质或介质,以及至少一个存储设备,其中存储用于多个车辆的GPS数据,该系统包括:包括GPS事件的存储器 数据库,其包括从多个GPS装置发送的GPS事件数据,与车辆相关联的每个GPS装置,并在一段时间内存储; 并且所述一个或多个处理器至少编程为:接收从多个GPS设备发送的GPS事件数据,与车辆相关联的每个GPS设备; 对于每个车辆,存储在可操作地耦合到至少一个处理器的GPS事件数据库中,GPS事件数据; 分析GPS事件数据以导出多个车辆中的每一个的多个操作度量; 从分析中识别使用GPS事件数据的GPS事件历史的至少一个趋势; 并且为图形用户界面提供包括所述至少一个趋势的表示的表示。
    • 2. 发明申请
    • A VEHICLE TRACKING SYSTEM
    • 车辆跟踪系统
    • WO2007129287A1
    • 2007-11-15
    • PCT/IE2006/000052
    • 2006-05-09
    • FLEETMATICS PATENTS LIMITEDMITCHELL, PeterDOLGOPOLOV, AndreiWALSH, PaulGOGGIN, John
    • MITCHELL, PeterDOLGOPOLOV, AndreiWALSH, PaulGOGGIN, John
    • H04Q7/22G07C5/00
    • H04L67/125G08G1/123H04L67/18H04W4/02
    • A vehicle tracking system central host (5, 6) comprises a memory cache processor for managing a plurality of memory caches (35) and a storage device (6) linked with the memory cache processor, for receiving messages from the memory caches and writing them to a database. There are n receiver ports (PORTi) each for receiving message packets of an associated protocol from remote vehicle on-board tracker units. There are also n receiver processors (PROCi), each associated with a port and each receiver processor being for: reading message packets received at the associated port, performing initial processing of the message packets including adding headers to provide processed messages, and writing the processed messages to a log dedicated to the receiver processor. There re also n decoders (DECi), each associated with a receiver processor log (LOGi) and being for (a) instantiating (56) a service object for each log, (b) executing each service object to instantiate (59) a message object in which data from a current message is written as attributes of the message object such that instantiation of the message object normalizes the message and the normalized fields include a vehicle identifier field, and (c) executing each service object to repeat step (b) for each successive message in the associated log, and (d) executing the service object to write each message object to one of said memory caches. The ports, the receiver processors, and the decoders operate in parallel.
    • 车辆跟踪系统中央主机(5,6)包括用于管理多个存储器高速缓冲存储器(35)的存储器高速缓存处理器和与存储器高速缓冲存储器处理器连接的存储设备(6),用于从存储器高速缓存接收消息并写入它们 到一个数据库。 有n个接收端口(PORTi),用于从远程车载车载跟踪单元接收相关协议的消息包。 还有n个接收器处理器(PROCi),每个接收器处理器(每个与一个端口相关联),每个接收器处理器用于:读取在相关端口处接收的消息分组,执行消息分组的初始处理,包括添加报头以提供经处理的消息, 消息发送到专用于接收器处理器的日志。 还有n个解码器(DECi),每个解码器(DECi)与接收器处理器日志(LOGi)相关联,并且用于(a)为每个日志实例化(56)服务对象,(b)执行每个服务对象以实例化(59)消息 将来自当前消息的数据写入消息对象的属性的对象,使得消息对象的实例化使消息标准化,并且归一化字段包括车辆标识符字段,以及(c)执行每个服务对象以重复步骤(b) 对于相关日志中的每个连续消息,以及(d)执行服务对象以将每个消息对象写入到所述存储器高速缓存之一。 端口,接收器处理器和解码器并行运行。
    • 8. 发明申请
    • WEIGHT MEASUREMENTS OF LIQUIDS IN FLEXIBLE CONTAINERS
    • 液体在柔性容器中的重量测量
    • WO2008106193A1
    • 2008-09-04
    • PCT/US2008/002639
    • 2008-02-28
    • XCELLEREX, INC.MITCHELL, Peter, A.FISHER, Michael
    • MITCHELL, Peter, A.FISHER, Michael
    • G01F23/14C12M1/00
    • G01F23/14G01F23/18G01F23/20G01G17/04
    • Articles and methods for measuring weight of a liquid in a disposable bag bioreactor are presented. In certain embodiments, bioreactor systems described herein include a supported container (e.g., a flexible bag in a reusable housing) for containing a liquid, and at least two pressure indicating sensors operatively associated with the container. A first pressure indicating sensor can be placed near the bottom of the container to measure the total downward force within the container, including the liquid head in the container and the gas pressure above the liquid. The second pressure indicating sensor can be placed near the top of the container to measure only the pressure at the top of or above the liquid. Signals from the pressure indicating sensors can be directed to a control system that receives the signals and calculates a difference between the signals. This difference can be used to determine a volume or a weight of the liquid in the container. Advantageously, real-time weight measurements can be obtained while the system is in operation and continuous flow processes can be monitored. Moreover, in some embodiments, the pressure indicating sensors are isolated from contact with any fluid (e.g., liquid) in the container and, therefore, do not require cleaning after processing of each batch of reactants. Contamination of the process fluid by contact with the pressure indicating sensors can also be avoided.
    • 提出了一次性袋式生物反应器中液体重量测量的物品和方法。 在某些实施方案中,本文所述的生物反应器系统包括用于容纳液体的支撑容器(例如,可重复使用的壳体中的柔性袋)和与容器可操作地相关联的至少两个压力指示传感器。 第一压力指示传感器可以放置在容器的底部附近,以测量容器内的总的向下的力,包括容器中的液体头和液体上方的气体压力。 第二压力指示传感器可以放置在容器顶部附近,以仅测量液体顶部或上方的压力。 来自压力指示传感器的信号可以被引导到接收信号并计算信号之间的差异的控制系统。 该差异可用于确定容器中液体的体积或重量。 有利的是,可以在系统运行时获得实时重量测量,并且可以监视连续的流程。 此外,在一些实施例中,压力指示传感器与容器中的任何流体(例如液体)接触隔离,因此在处理每批反应物之后不需要清洁。 也可以避免通过与压力指示传感器的接触对工艺流体的污染。