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    • 1. 发明申请
    • ELECTRONIC DEVICE WITH MAGNETIC ANTENNA MOUNTING
    • 带磁性天线安装的电子设备
    • WO2013006344A8
    • 2013-07-25
    • PCT/US2012044433
    • 2012-06-27
    • APPLE INCPASCOLINI MATTIAGUTERMAN JERZYHAYLOCK JONATHANZHU JIANGJEZIOREK PETER
    • PASCOLINI MATTIAGUTERMAN JERZYHAYLOCK JONATHANZHU JIANGJEZIOREK PETER
    • H01Q1/22
    • H01Q1/2258H01Q1/2266
    • An electronic device may have magnetically mounted antenna structures. The electronic device may have a dielectric member against which one or more antennas are mounted. The dielectric member may be a cover glass layer that covers a display in the electronic device, a dielectric antenna window, or other dielectric structure. Each antenna may have an antenna support structure. Conductive antenna structures for the antenna may be mounted to the antenna support structure. The antennas may be cavity-backed planar inverted-F antennas. Portions of each antenna support structure may be configured to receive magnets. The magnets may be attracted towards ferromagnetic structures mounted on the dielectric member. As the magnets are attracted towards the ferromagnetic structure, the antennas may be held in place against the dielectric member.
    • 电子设备可以具有磁安装天线结构。 电子设备可以具有电介质构件,一个或多个天线安装在该电介质构件上。 电介质构件可以是覆盖电子设备中的显示器的盖玻璃层,电介质天线窗或其他电介质结构。 每个天线可以具有天线支撑结构。 用于天线的导电天线结构可以安装到天线支撑结构。 天线可以是背腔式平面倒F天线。 每个天线支撑结构的部分可以被配置为接收磁体。 磁体可以被吸引到安装在电介质构件上的铁磁结构。 当磁体被吸引向铁磁结构时,天线可以抵靠电介质构件保持就位。
    • 2. 发明专利
    • EARTHQUAKE PREDICTION AND ALERT SYSTEM BASED ON UNDERGROUND ULTRASOUND MONITORING AND ANALYSIS
    • AU2016100644A4
    • 2016-09-29
    • AU2016100644
    • 2016-05-18
    • ZHU JIANG
    • ZHU JIANGXIE YONG
    • G01V1/00G01V1/28
    • Abstract The present invention discloses an earth's crust source based on ultrasonic wave monitoring and analysis of earthquake forecasting and early warning system, including signal acquisition system, signal processing system and forecasting and early warning system; wherein said the signal acquisition system, the signal processing system and the forecasting and early warning systems are connected in turn. The signal acquisition system includes a signal capture unit and regional signal acquisition server, wherein said the signal acquisition unit and regional signal acquisition server are connected in turn, signal capture unit is used to collect ultrasonic wave signal of earth's crust source and convert it into electrical signal, the electrical signal input regional signal acquisition server, regional signal acquisition server input electrical signal filtered into the signal processing system. The present invention has advantages and effects are as follows: the system can provide the more abundant earthquake forecast warning response time; and realize a real-time ultrasonic wave into the human audible sound wave, thus established a directly perception approach of human to earth's crust source ultrasonic wave; strong data correlation, high reliability, predictive conclusion strong acceptability. -- signal acquisition system signal capare uam t gtnaI sga i Cquiint on setver data @enters total d D at C e ------------ dasabasS 1 Slte -tor'ecasr mna wanna system Fternm IG.
    • 7. 发明申请
    • METHOD AND DEVICE FOR MONITORING BASE STATION POWER CONSUMPTION
    • 监测基站消耗电力的方法和装置
    • WO2011144056A3
    • 2012-04-26
    • PCT/CN2011074390
    • 2011-05-20
    • HUAWEI TECH CO LTDLI JINFENGZHU JIANGZHANG QIANYING
    • LI JINFENGZHU JIANGZHANG QIANYING
    • H04W52/00
    • H04W52/0206Y02D70/00
    • Embodiments of the present invention relate to a method and device for monitoring base station power consumption, in which the method for monitoring base station power consumption comprises: determining an amount of power consumption units in a first power consumption group and obtaining power consumption values of the power consumption units, wherein the power consumption units are the power consumption units whose power consumption is stable; determining an amount of power consumption units in a second power consumption group and obtaining power consumption values of the power consumption units, or monitoring a first relevant parameter of the power consumption units and obtaining, according to power consumption variation rule, corresponding power consumption values, wherein the power consumption units are the power consumption units whose power consumption variation is regular; determining an amount of power consumption units in a third power consumption group and obtaining power consumption values of the power consumption units, or monitoring a second relevant parameter of the power consumption units in the third power consumption group and obtaining power consumption values after calculation, wherein the power consumption units are the power consumption units whose power consumption variation is irregular; and obtaining a power consumption value of a base station according to amounts and power consumption values of total power consumption units. The monitoring accuracy of base station power consumption is improved by dividing the power consumption units of a base station into power consumption groups.
    • 本发明的实施例涉及一种用于监视基站功耗的方法和装置,其中用于监视基站功耗的方法包括:确定第一功耗组中的功耗单元的数量,并获得第 功耗单元,其中功耗单元是其功耗稳定的功耗单元; 确定第二功耗组中的功耗单元的数量并获得功耗单元的功耗值,或者监视功耗单元的第一相关参数,并根据功耗变化规则获得相应的功耗值, 其特征在于,所述功耗单元是功耗变化规律的功耗单元; 确定第三功耗组中的功耗单元的数量并获得功耗单元的功耗值,或者监视第三功耗组中的功耗单元的第二相关参数,并获得计算后的功耗值,其中 功耗单位是功耗变化不规则的功耗单位; 并且根据总功耗单位的量和功耗值获得基站的功耗值。 通过将基站的功耗单位分为功耗组,提高基站功耗的监控精度。