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    • 41. 发明申请
    • APPARATUS FOR TESTING ELECTRONIC POWER SYSTEMS
    • 用于测试电子系统的装置
    • US20130060503A1
    • 2013-03-07
    • US13224888
    • 2011-09-02
    • Lance Palatini
    • Lance Palatini
    • G06F19/00
    • H01M10/4285G01R31/386G01R31/40H01M8/04298
    • A transistorized load system for testing electronic power systems devices includes at least one field effect transistor that is microprocessor-controlled for simulating the current drawn by a specific product on an electronic power source. The transistorized load system is capable of accepting command information either manually or from a personal computer derived source, and determining the exact value of current drawn from the electrical power system under test. The transistorized load may accept values for a desired resistance value in ohms, and/or a desired capacitance value in farads. Once voltage is applied across the positive and negative terminals of the transistorized load, the microprocessor controls the current drawn from the device under test.
    • 用于测试电子电力系统装置的晶体管负载系统包括至少一个场效应晶体管,其由微处理器控制,用于模拟由电子电源上的特定产品吸取的电流。 晶体管负载系统能够手动或从个人计算机派生源接收命令信息,并且确定从被测电力系统得到的电流的确切值。 晶体管负载可以以欧姆为单位接受期望电阻值的值,和/或以法拉达为单位的期望电容值。 一旦电压施加在晶体管负载的正极和负极端子之间,微处理器就控制从被测器件中抽出的电流。
    • 44. 发明申请
    • Method and apparatus for performing automated power plant battery backup capacity measurement
    • 执行自动电厂电池备用容量测量的方法和装置
    • US20070080692A1
    • 2007-04-12
    • US11224172
    • 2005-09-12
    • Glen Evans
    • Glen Evans
    • G01N27/416
    • G01R31/392G01R31/3835G01R31/386
    • A method and apparatus for automatically performing a measurement of a power plant's battery backup capacity. The process comprises reducing an output voltage of a rectifier and identifying a time when said output voltage has been so reduced, measuring the voltage (e.g., at the output of the battery) to determine when the battery has been discharged and identifying a time when the battery has been determined to be discharged, calculating the period of time for the battery to discharge based on the two identified times, restoring the output voltage of the rectifier, and comparing the calculated period of time for the battery to discharge to a predetermined minimum acceptable period of time for the battery to discharge. Advantageously, this process is performed automatically at predetermined intervals or in accordance with a predetermined scheduling algorithm, and is advantageously performed during known “off-peak” time periods (e.g., during the overnight hours).
    • 一种用于自动执行发电厂电池备用能力测量的方法和装置。 该过程包括降低整流器的输出电压并识别所述输出电压如此减小的时间,测量电压(例如,在电池的输出端),以确定电池何时已经放电,并且识别当 电池被确定放电,根据两个识别时间计算电池放电的时间,恢复整流器的输出电压,并将计算出的电池的时间段与放电的计算时间进行比较,使之达到预定的最小可接受 电池放电的一段时间。 有利地,该过程以预定的间隔或根据预定的调度算法自动执行,并且有利地在已知的“非高峰”时间段(例如,在隔夜时间)期间执行。
    • 46. 发明申请
    • Battery monitoring
    • 电池监控
    • US20040036475A1
    • 2004-02-26
    • US10363626
    • 2003-08-06
    • Phillip Enwood PascoePhillip Mark HunterAdnan Al-Anbuky
    • G01N027/42G01N027/416
    • G01R31/3648G01R31/374G01R31/379G01R31/386
    • An architecture for organising information in a battery monitoring system, the architecture having a hierarchy of levels including a first level containing information relating to battery variables; a second level containing information relating to analysis of real-time or trend behaviour of the battery variables, and a third level containing user information relating to user and/or maintenance parameters, the user information being derived from the first and/or second level information. A method of estimating the condition of one or more cells, the method including periodically measuring the capacity of the cells, wherein the type of measurement and/or the period between measurements is dependent upon the state of health of the cell or cells and/or the result of a previous test.
    • 一种用于在电池监视系统中组织信息的架构,所述架构具有包括与电池变量有关的信息的第一级的电平层级; 第二级别,其包含与电池变量的实时或趋势行为的分析相关的信息,以及包含与用户和/或维护参数相关的用户信息的第三级,所述用户信息从第一和/或第二级别信息 。 一种估计一个或多个细胞的状况的方法,所述方法包括周期性地测量细胞的容量,其中测量类型和/或测量之间的周期取决于细胞或细胞的健康状态和/或 以前的测试结果。