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    • 3. 发明授权
    • Techniques for analyzing performance of solar panels and solar cells using infrared diagnostics
    • 使用红外诊断技术分析太阳能电池板和太阳能电池的性能
    • US08373758B2
    • 2013-02-12
    • US12616683
    • 2009-11-11
    • Supratik GuhaYves C. MartinRobert L. SandstromTheodore Gerard van Kessel
    • Supratik GuhaYves C. MartinRobert L. SandstromTheodore Gerard van Kessel
    • H04N5/33
    • G06T7/0004G06T2207/10048
    • Techniques for analyzing performance of solar panels and/or cells are provided. In one aspect, a method for analyzing an infrared thermal image taken using an infrared camera is provided. The method includes the following steps. The infrared thermal image is converted to temperature data. Individual elements are isolated in the infrared thermal image. The temperature data for each isolated element is tabulated. A performance status of each isolated element is determined based on the tabulated temperature data. The individual elements can include solar panels and/or solar cells. In another aspect, an infrared diagnostic system is provided. The infrared diagnostic system includes an infrared camera which can be remotely positioned relative to one or more elements to be imaged; and a computer configured to receive thermal images from the infrared camera, via a communication link, and analyze the thermal images.
    • 提供了用于分析太阳能电池板和/或电池的性能的技术。 一方面,提供了一种用于分析使用红外线照相机拍摄的红外热像的方法。 该方法包括以下步骤。 红外热像被转换为​​温度数据。 单个元件在红外热图像中被隔离。 列出每个隔离元件的温度数据。 基于列表的温度数据确定每个隔离元件的性能状态。 各个元件可以包括太阳能电池板和/或太阳能电池。 另一方面,提供红外诊断系统。 红外线诊断系统包括可以相对于要成像的一个或多个元件远程定位的红外相机; 以及计算机,被配置为经由通信链路从红外相机接收热图像,并分析热图像。
    • 5. 发明申请
    • Method and Apparatus for In Situ Solar Flat Panel Diagnostics
    • 用于现场太阳能平板诊断的方法和装置
    • US20110109740A1
    • 2011-05-12
    • US12616683
    • 2009-11-11
    • Supratik GuhaYves C. MartinRobert L. SandstromTheodore Gerard van Kessel
    • Supratik GuhaYves C. MartinRobert L. SandstromTheodore Gerard van Kessel
    • H04N7/18G06K9/62
    • G06T7/0004G06T2207/10048
    • Techniques for analyzing performance of solar panels and/or cells are provided. In one aspect, a method for analyzing an infrared thermal image taken using an infrared camera is provided. The method includes the following steps. The infrared thermal image is converted to temperature data. Individual elements are isolated in the infrared thermal image. The temperature data for each isolated element is tabulated. A performance status of each isolated element is determined based on the tabulated temperature data. The individual elements can include solar panels and/or solar cells. In another aspect, an infrared diagnostic system is provided. The infrared diagnostic system includes an infrared camera which can be remotely positioned relative to one or more elements to be imaged; and a computer configured to receive thermal images from the infrared camera, via a communication link, and analyze the thermal images.
    • 提供了用于分析太阳能电池板和/或电池的性能的技术。 一方面,提供了一种用于分析使用红外线照相机拍摄的红外热像的方法。 该方法包括以下步骤。 红外热像被转换为​​温度数据。 单个元件在红外热图像中被隔离。 列出每个隔离元件的温度数据。 基于列表的温度数据确定每个隔离元件的性能状态。 各个元件可以包括太阳能电池板和/或太阳能电池。 另一方面,提供红外诊断系统。 红外线诊断系统包括可以相对于要成像的一个或多个元件远程定位的红外相机; 以及计算机,被配置为经由通信链路从红外相机接收热图像,并分析热图像。
    • 10. 发明申请
    • TRANSPORTABLE PHOTOVOLTAIC SYSTEM
    • 运输光伏系统
    • US20130199594A1
    • 2013-08-08
    • US13365301
    • 2012-02-03
    • Supratik GuhaYves C. MartinDavid B. MitziRobert L. SandstromTheodore G. van Kessel
    • Supratik GuhaYves C. MartinDavid B. MitziRobert L. SandstromTheodore G. van Kessel
    • H01L31/052H01L31/18
    • H02S20/30H01L31/042H01L31/0547H02S10/40H02S20/32H02S30/20Y02E10/52Y10T29/49355
    • A transportable photovoltaic system includes a plurality of photovoltaic devices, a composite frame to which the plurality of photovoltaic devices are affixed, and a base structure to which the composite frame is movably attached through at least one variable-angle mount structure. The orientation of the frame and the light concentrating elements relative to the base structure can be altered employing the at least one variable-angle mount structure. The frame and the plurality of photovoltaic devices can be assembled prior to shipping, and the base structure can be manufactured on site. The transportable photovoltaic system is not affixed to ground or other fixture, but can be picked up at any time during the operational lifetime. The transportable photovoltaic system can be rapidly deployed with little or no site preparation requirement other than generally level ground, and can be retracted to a lower exposure position to avoid storm and/or hazardous conditions.
    • 可移动光伏系统包括多个光伏器件,固定多个光伏器件的复合框架,以及基础结构,复合框架通过至少一个可变角度安装结构可移动地附接到该基座结构。 可以使用至少一个可变角度安装结构来改变框架和光聚集元件相对于基部结构的取向。 框架和多个光伏器件可以在运输之前组装,并且可以现场制造基座结构。 可运输光伏系统不固定在地面或其他灯具上,但可以在使用寿命期间的任何时间进行拾取。 可运输的光伏系统可以很快地部署,除了一般水平地面之外很少或没有现场准备要求,并且可以缩回到较低的暴露位置以避免暴风雨和/或危险状况。