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    • 4. 发明申请
    • SOLAR TRACKING FOR TERRESTRIAL SOLAR ARRAYS WITH VARIABLE START AND STOP POSITIONS
    • 太阳跟踪用于具有可变启动和停止位置的太阳能雷达阵列
    • US20130333745A1
    • 2013-12-19
    • US13970235
    • 2013-08-19
    • Suncore Photovoltaics, Inc.
    • James Sherman
    • H01L31/052
    • H01L31/052F24S25/10F24S30/452F24S40/00F24S50/20F24S2201/00H01L31/054H01L31/0543H02S20/10H02S20/23H02S20/32Y02B10/12Y02E10/47Y02E10/52
    • An automated method causes a terrestrial solar cell array to track the sun. The solar cell system includes motors that adjust a position of the array along different respective axes with respect to the sun, wherein a first motor adjusts the inclination angle of the array relative to the surface of the earth and a second motor rotates the array about an axis substantially perpendicular to that surface. The method includes (a) using a software algorithm to predict a position of the sun at a future time; (b) using a computer model to determine respective positions for the motors corresponding to the solar cell array being substantially aligned with the sun at the future time; and (c) activating and operating the motors at respective particular speeds so that at the future time the solar cell array is substantially aligned with the sun. The future time may correspond to any time during operation. An initial future time may correspond to a start up time after sunrise at which point the solar cell is to begin tracking the sun.
    • 一种自动化方法使地面太阳能电池阵列跟踪太阳。 太阳能电池系统包括电动机,其相对于太阳沿不同的相应轴线调整阵列的位置,其中第一电动机相对于地球的表面调节阵列的倾斜角度,而第二电动机绕阵列旋转阵列 基本上垂直于该表面。 该方法包括(a)使用软件算法来预测未来太阳的位置; (b)使用计算机模型来确定对应于太阳能电池阵列的电动机的相应位置在未来时间基本与太阳对准; 和(c)以相应的特定速度激活和操作电动机,使得将来太阳能电池阵列基本上与太阳对准。 未来时间可能对应于运行期间的任何时间。 初始未来时间可以对应于日出之后的启动时间,太阳能电池在哪一点开始跟踪太阳。
    • 7. 发明授权
    • Terrestrial solar tracking photovoltaic array with offset solar cell modules
    • 具有偏移太阳能电池模块的地面太阳能跟踪光伏阵列
    • US08378281B2
    • 2013-02-19
    • US12623134
    • 2009-11-20
    • Mikhail KatsGary Hering
    • Mikhail KatsGary Hering
    • G01C21/02H02N6/00A47G23/04
    • H01L31/0522F24S23/30F24S30/455F24S2030/136H01L31/0543H01L31/0547H02S20/10H02S20/32Y02E10/47Y02E10/52
    • Terrestrial solar tracking photovoltaic arrays that may include a modular design that is sized and weighted to facilitate installation with a small amount of manpower. The array may further be adapted to be adjusted during or after installation to accommodate the necessary power requirements. The terrestrial solar tracking photovoltaic array may include a torque tube that may be constructed of discrete sections. A drive may be connected to the torque tube to rotate the torque tube. A number of solar cell modules may be connected to the torque tube. The modules may be positioned at offsetting angular orientations depending upon their distance away from the drive. This offset positioning compensates for twisting distortion of the torque tube caused by the drive rotating the torque tube. At one point of rotation, each of the solar cell modules may be substantially aligned in a common plane.
    • 地面太阳能跟踪光伏阵列,其可以包括尺寸和加权的模块化设计,以便于少量人力的安装。 该阵列还可以适于在安装期间或之后调整以适应所需的功率要求。 陆地太阳能跟踪光伏阵列可以包括可以由分立部分构成的扭矩管。 驱动器可以连接到扭矩管以旋转扭矩管。 许多太阳能电池模块可以连接到扭矩管。 模块可以根据它们离开驱动器的距离而位于偏移角取向。 该偏移定位补偿由驱动器旋转扭矩管引起的扭矩管的扭曲变形。 在一个旋转点处,每个太阳能电池模块可以在公共平面中基本对齐。
    • 8. 发明授权
    • Solar cell receiver subassembly with a heat shield for use in a concentrating solar system
    • 具有隔热罩的太阳能电池接收器组件,用于集中太阳能系统
    • US09012771B1
    • 2015-04-21
    • US12764657
    • 2010-04-21
    • John NagyvaryJames Foresi
    • John NagyvaryJames Foresi
    • H01L31/024H01L31/052H01L31/054
    • H01L31/054H01L31/02008H01L31/044H01L31/052H01L31/0543H01L31/0547Y02E10/52
    • Solar cell receiver subassemblies for use in a concentrating solar system that concentrates the solar energy onto a solar cell for converting solar energy to electricity. The subassemblies may include an optical element defining an optical channel and forming an optical path. The subassemblies may also include a solar cell receiver comprising a support and a solar cell mounted on the support adjacent to the optical element and in the optical path of the optical channel. The solar cell may include one or more III-V compound semiconductor layers and may be capable of generating in excess of 20 watts of peak DC power. The subassemblies may also include a heat shield mounted over and peripherally adjacent to exterior sides of the optical element to cover and block concentrated light from reaching a surface of the support adjacent to the solar cell.
    • 用于集中太阳能系统的太阳能电池接收器组件,其将太阳能集中到用于将太阳能转换成电的太阳能电池上。 子组件可以包括限定光通道并形成光路的光学元件。 子组件还可以包括太阳能电池接收器,其包括支撑件和安装在与光学元件相邻的支撑件上以及在光学通道的光路中的太阳能电池。 太阳能电池可以包括一个或多个III-V化合物半导体层,并且可以产生超过20瓦的峰值DC功率。 子组件还可以包括安装在光学元件的外侧并且周边地邻近光学元件的热屏蔽,以覆盖和阻挡聚集的光到达与太阳能电池相邻的支撑件的表面。