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    • 2. 发明申请
    • System and Method For Online Virtual Fitting Room
    • 在线虚拟装配室的系统和方法
    • US20150154691A1
    • 2015-06-04
    • US14558715
    • 2014-12-02
    • Scott William CurryLuis Antonio Sosa
    • Scott William CurryLuis Antonio Sosa
    • G06Q30/06
    • G06Q30/0643G06F17/5018G06Q30/0631G06T13/40
    • A system and method for virtually fitting an article of clothing on an accurate representation of a user's body obtained by 3D scanning of the user in minimal clothing and in standard garments of known properties. A graphical user interface allows the user to access a database of garments and accessories available for selection for the virtual fitting simulation for which each garment's physical and material properties are known. A finite element analysis is applied to determine the shape of the combined user body and garment and a an accurate visual representation of the selected garment or accessory on the proportional model of the user's body based on the analysis is generated. Means are also provided for the user to solicit custom garments or accessories from a participating designer or retailer, purchase selected garments or accessories from the participating designer or retailer, and communicate his or her preferences with participating designers, retailers, or other users.
    • 一种系统和方法,用于以最小的衣物和已知特性的标准服装通过用户的3D扫描获得的用户身体的精确表示上虚拟地装配衣服。 图形用户界面允许用户访问可用于虚拟拟合模拟的服装和附件的数据库,每个服装的物理和材料属性都是已知的。 应用有限元分析来确定组合的用户身体和服装的形状,并且基于分析生成所选服装或配件在用户身体的比例模型上的精确视觉表示。 还提供了用于从参与的设计者或零售商那里购买定制服装或配件的手段,从参与设计者或零售商处购买选定的服装或配件,以及将他或她的偏好与参与设计者,零售商或其他用户进行交流。
    • 3. 发明申请
    • Automatic Tracking of Faults by Slope Decomposition
    • 通过坡度分解自动跟踪故障
    • US20150117151A1
    • 2015-04-30
    • US14486881
    • 2014-09-15
    • William CurryEthan NowakFuxian Song
    • William CurryEthan NowakFuxian Song
    • G01V1/30
    • G01V1/30G01V1/301G01V2210/60
    • Method for locating fault lines or surfaces in 2-D or 3-D seismic data based on the fact that fault discontinuities in the space domain span a wide range in a local slowness (slope) domain, whereas other dipping events in the space domain data, such as noise, tend to be coherent, and hence will appear focused in the slowness dimension. Therefore, the method comprises decomposing the seismic data (102) by a transformation to the local slowness domain, preferably using Gaussian slowness period packets as the local slowness or slope decomposition technique, thereby avoiding problems with the data stationary assumption. In the local slowness domain, faults may be identified (104) using the principle mentioned above, i.e. that faults are represented as a truncation in the space domain data, hence they will appear broadband in the slowness dimension.
    • 基于空间域中的故障不连续性在局部慢度(斜率)域中跨越宽范围的事实来定位二维或三维地震数据中的断层线或曲面的方法,而空间域数据中的其他浸渍事件 ,如噪音,往往是一致的,因此将出现在缓慢的维度上。 因此,该方法包括:将地震数据(102)通过变换分解为局部慢域,优选使用高斯慢周期分组作为局部慢度或斜率分解技术,从而避免数据平稳假设的问题。 在局部慢域中,可以使用上述原理来确定故障(104),即故障在空间域数据中被表示为截断,因此它们将在慢度维度中出现宽带。
    • 8. 发明申请
    • Indoor photovoltaic energy system
    • 室内光伏能源系统
    • US20050274407A1
    • 2005-12-15
    • US10864711
    • 2004-06-09
    • William Curry
    • William Curry
    • H01L31/00
    • H02S99/00F21S9/032H02S10/00Y02B10/12Y02E10/50
    • An indoor photovoltaic energy system to provide a renewable energy source for buildings located in urban areas or other locations where there is insufficient land or roof area for mounting a sufficient number of photovoltaic panels to general a significant amount of electric energy. This concept is especially beneficial for multi-story buildings with a low ratio of roof space or available ground space per square foot of building space. This system uses standard indoor electric lighting fixtures as well as any available natural light through windows, skylights or other building openings for the light source that is converted to electric power. The direct current electric power generated by the photovoltaic panels is converted to more usable alternating current electric power by an inverter.
    • 一种室内光伏能源系统,为位于城市地区或其他不足的地面或屋顶区域的建筑物的建筑物提供可再生能源,以便安装足够数量的光伏电池板以达到大量的电能。 这个概念对于每平方英尺建筑面积的屋顶空间比率或可用的地面空间比例低的多层建筑特别有益。 该系统使用标准的室内电气照明设备以及任何可用的自然光通过窗户,天窗或其他建筑开口,用于转换为电力的光源。 由光伏面板产生的直流电力由逆变器转换成更可用的交流电力。
    • 9. 发明授权
    • System for protecting telecommunications equipment from transient voltages
    • 保护电信设备免受瞬态电压的系统
    • US06298134B1
    • 2001-10-02
    • US09395955
    • 1999-09-14
    • William Curry
    • William Curry
    • H04N100
    • H04M3/18H02H9/042H02H9/06H04M1/745
    • A system that protects telecommunications equipment from AC power faults and voltage transients comprising (1) a high-energy foldback device between the current-carrying lines of a telephone system and ground; (2) a voltage clamping device between the current-carrying lines; (3) a foldback device between the current-carrying lines and ground; (4) a first overcurrent protection device connected in series with the above foldback device; and (5) a second overcurrent protection device in the lines between the high-energy foldback device and the above mentioned serially connected foldback device and first overcurrent protection device. The system may be used, for example, with standard telephone lines, PBX out-of-building lines, special service lines such as carrier, pair-gain, and high speed data, and dedicated voice-band services such as pay phones and traffic-control communication lines.
    • 一种保护电信设备免受交流电源故障和电压瞬变的系统,包括(1)电话系统和地面的载流线之间的高能量折返装置; (2)载流线路之间的电压钳位装置; (3)载流线与地之间的折返装置; (4)与上述折返装置串联连接的第一过电流保护装置; 以及(5)高能量折返装置与上述串联连接的折返装置和第一过电流保护装置之间的线路中的第二过电流保护装置。 该系统可以用于例如标准电话线路,PBX建筑外线路,诸如载波,对增益和高速数据的特殊业务线以及诸如付费电话和业务的专用语音业务 控制通信线路。