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    • 2. 发明授权
    • Estimation of state-of-health in batteries
    • 电池中健康状况的估计
    • US09366732B2
    • 2016-06-14
    • US12876976
    • 2010-09-07
    • Babak FahimiAnahita Banaei
    • Babak FahimiAnahita Banaei
    • G01R31/36G01R31/02
    • G01R31/3679G01R31/025G01R31/3651
    • Estimation of a state-of-health (SOH) in a battery are disclosed. An example technique includes determining if a terminal voltage of the chemical battery differs from a calculated terminal voltage. In response to determining that the terminal voltage of the chemical battery differs from the calculated terminal voltage, calculating a range of voltages by taking the convolution of a terminal current of the chemical battery with a range of impulse responses from a look up table of impulse responses corresponding to different SOH. The technique further includes comparing the terminal voltage of the chemical battery with the range of calculated voltages to determine a second impulse response that corresponds to the case where the terminal voltage matches the calculated voltage. The look up table of impulse responses corresponding to different SOHs is then used to determine the SOH of the chemical battery from the second impulse response.
    • 公布了电池中健康状况(SOH)的估计。 一个示例技术包括确定化学电池的端电压是否与计算的端电压不同。 响应于确定化学电池的端电压与计算的端电压不同,通过将化学电池的端电流与脉冲响应的查询表的脉冲响应范围进行卷积来计算电压范围 对应不同的SOH。 该技术还包括将化学电池的端电压与计算出的电压的范围进行比较,以确定对应于端电压与计算电压相匹配的情况的第二脉冲响应。 然后使用与不同SOH相对应的脉冲响应的查找表从第二脉冲响应确定化学电池的SOH。
    • 3. 发明授权
    • Method and system for automatic interpretation of computer tomography scan data
    • 计算机断层扫描数据自动解释的方法和系统
    • US09247879B2
    • 2016-02-02
    • US14011906
    • 2013-08-28
    • Supratik Kumar Moulik
    • Supratik Kumar Moulik
    • G06K9/00A61B5/00G06T7/00A61B6/00
    • A61B5/0033A61B5/055A61B6/032A61B6/504A61B6/505A61B6/5211A61B6/566G06K9/00G06K2209/051G06T7/0012G06T7/11G06T2207/10081G06T2207/30004
    • Disclosed is a method for interpreting image data that represents variations in density of matter inside a subject. A data processing system may receive image data from a scan of a subject. The data processing system automatically discerns one or more bones, one or more arteries, and one or more organs of the subject, based at least in part on the image data. The data processing system may also automatically identify one or more of the discerned bones, arteries, and organs. The data processing system may also automatically discern an outer or inner margin of a body wall of the subject. The data processing system may also produce output that depicts one or more of the identified bones, one or more of the identified arteries, one or more of the identified organs, and/or or the outer or inner margin of the body wall. Other embodiments are described and claimed.
    • 公开了一种用于解释表示对象内物质密度变化的图像数据的方法。 数据处理系统可以从对象的扫描接收图像数据。 数据处理系统至少部分地基于图像数据自动识别对象的一个​​或多个骨骼,一个或多个动脉和一个或多个器官。 数据处理系统还可以自动识别识别的骨骼,动脉和器官中的一个或多个。 数据处理系统还可以自动辨别对象体壁的外边缘或内边缘。 数据处理系统还可以产生描绘一个或多个所识别的骨头,所识别的一个或多个动脉,一个或多个所识别的器官,和/或体壁的外部或内部边缘的输出。 描述和要求保护其他实施例。
    • 6. 发明授权
    • System and method for modular repair of pipe leaks
    • 管道泄漏模块化修复的系统和方法
    • US09175799B2
    • 2015-11-03
    • US13448109
    • 2012-04-16
    • John W. ClarkJerry Robb
    • John W. ClarkJerry Robb
    • F16L55/16F16L55/179F16L55/172
    • F16L55/179F16L55/172
    • A modular pipe repair enclosure system includes first and second enclosure portions, and an enclosure attachment device. The first and second enclosure portions create an enclosure around the pipe for covering leaks. The enclosure has three openings for accommodating the pipe. The first and second openings are arranged at an angle of 180 degrees with respect to each other, and at an angle of 90 degrees with respect to the third opening, such that a straight line section of pipe may be accommodated by the first and second openings, an elbow section of pipe by the first and third openings, and a T-section of pipe by the first, second, and third openings. The system may further include a blank, for closing one of the openings, for use with a straight or elbow section, and a sleeve, for reducing the inner diameter of an opening, for accommodating pipes of different diameters.
    • 模块化管道修复机壳系统包括第一和第二外壳部分以及外壳附接装置。 第一和第二外壳部分围绕管道创建一个外壳以覆盖泄漏。 外壳具有用于容纳管道的三个开口。 第一和第二开口相对于彼此以180度的角度布置,并且相对于第三开口以90度的角度布置,使得管的直线部分可以由第一和第二开口 ,通过第一和第三开口的管的弯头部分,以及通过第一,第二和第三开口的管的T形截面。 该系统还可以包括用于封闭其中一个开口用于直的或弯头部分的坯件和用于减小开口的内径以用于容纳不同直径的管的套筒。
    • 8. 发明授权
    • Wireless programmable microphone apparatus and system for integrated surveillance system devices
    • 用于集成监控系统设备的无线可编程麦克风设备和系统
    • US09307317B2
    • 2016-04-05
    • US14593956
    • 2015-01-09
    • Coban Technologies, Inc.
    • Hung C ChangTerry Wayne Boykin
    • H04R3/00
    • H04R3/00G06F21/44G06F21/79H04R2420/07
    • A wireless programmable microphone apparatus and related devices are disclosed. The programmable wireless microphone apparatus may be used by a law enforcement agency to collect data that may be used as evidence in a legal proceeding. The wireless programmable microphone apparatus includes one or more internal storage devices that may be secure storage drives and/or be pre-configured to execute one or more related applications in a plug-in fashion. The storage device may contain a suite of applications that are pre-configured to execute without requiring “installation” on a computer system prior to execution. The wireless programmable microphone may have one or more wireless communication and connection interfaces to stream audio and associated metadata to an associated mobile surveillance system. The wireless communication interfaces may also be used for device authentication. Optionally, audio and metadata information may be stored locally and synchronized with other devices at a later time.
    • 公开了一种无线可编程麦克风装置及相关装置。 执行机构可以使用可编程无线麦克风装置来收集在法律诉讼中可以用作证据的数据。 无线可编程麦克风装置包括可以是安全存储驱动器的一个或多个内部存储设备和/或被预配置为以插件方式执行一个或多个相关应用。 存储设备可以包含一组预先配置为执行的应用,而不需要在执行之前在计算机系统上“安装”。 无线可编程麦克风可以具有一个或多个无线通信和连接接口以将音频和相关联的元数据流传输到相关联的移动监视系统。 无线通信接口也可用于设备认证。 可选地,音频和元数据信息可以在本地存储并在稍后的时间与其他设备同步。
    • 9. 发明授权
    • Use of Lamb and SH attenuations to estimate cement Vp and Vs in cased borehole
    • 使用羔羊和SH衰减来估计套管井眼中的水泥Vp和Vs
    • US09273545B2
    • 2016-03-01
    • US13726215
    • 2012-12-23
    • Baker Hughes Incorporated
    • Alexei BolshakovDouglas PattersonEdward Domangue
    • G01V1/50E21B47/00G01V1/28
    • E21B47/0005G01V1/284G01V1/50
    • A method of determining properties of a bonding material disposed outside of a casing in a borehole includes at least two of the following three pairs of operations: (1) inducing an acoustic wave in the casing, and measuring attenuation of the acoustic wave, by pulse-echo or other cement bond logging measurement; (2) inducing an SH wave in the casing, and measuring attenuation of the SH wave; and (3) inducing a Lamb wave in the casing, and measuring attenuation of the Lamb wave. (2) and/or (3) may be performed by an electromagnetic acoustic transducer. The method further includes determining the shear velocity or shear impedance and the compressional velocity or compressional impedance of the bonding material based on appropriate ones of the measurements. The bonding material may be cement.
    • 一种确定钻孔外壳上的接合材料的性质的方法包括以下三对操作中的至少两个:(1)在壳体中引起声波,并通过脉冲测量声波的衰减 -echo或其他水泥粘结测井测量; (2)在壳体内引起SH波,测量SH波的衰减; 和(3)在外壳中诱导兰姆波,并测量兰姆波的衰减。 (2)和/或(3)可以由电磁声换能器来执行。 该方法还包括基于适当的测量结果确定接合材料的剪切速度或剪切阻抗以及压缩速度或压缩阻抗。 接合材料可以是水泥。