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    • 1. 发明申请
    • OPTICS WITHIN A CONCENTRATED PHOTOVOLTAIC RECEIVER CONTAINING A CPV CELL
    • 在含有CPV细胞的浓缩光电接收器中的光学
    • US20120227796A1
    • 2012-09-13
    • US13044418
    • 2011-03-09
    • DAVID DOUGHERTYArlie Conner
    • DAVID DOUGHERTYArlie Conner
    • H01L31/06
    • G02B3/08H01L31/0543Y02E10/52
    • A multiple junction photovoltaic cell is optically coupled to the Fresnel lens with teeth. The set of teeth within a given ring of a ringed pattern of teeth on the Fresnel lens may have 1) varying surface angles of different teeth across the lens, 2) varying refractive indexes of the different teeth or 3) a combination of both. The differing surface angles or refractive indexes of different teeth within a given ring of a ringed pattern of teeth establish multiple focal lengths aimed at five or more different axial target focal points within an anticipated zone of operation relative to the multiple junction photovoltaic cell to create a window of averaged intensity of light defined by the five or more different axial target focal points.
    • 多结光伏电池与齿形光耦合到菲涅耳透镜。 在菲涅尔透镜上的环形轮廓的给定环内的齿组可以具有1)穿过透镜的不同齿的不同表面角度,2)改变不同齿的折射率或3)两者的组合。 不同牙齿的不同牙齿在环形图案的环中形成的多个焦距针对相对于多结光伏电池的预期操作区域内的五个或更多个不同的轴向目标焦点,以产生 由五个或更多个不同的轴向目标焦点限定的平均光强度的窗口。
    • 3. 发明申请
    • PHOTOVOLTAIC ARRAY GROUND FAULT DETECTION IN AN UNGROUNDED SOLAR ELECTRIC POWER GENERATING SYSTEM AND TECHNIQUES TO TRANSITION ONTO AND OFF THE UTILITY GRID
    • 无线电太阳能发电系统中的光伏阵列接地故障检测和用于实时传送的实际网格的技术
    • US20120026631A1
    • 2012-02-02
    • US13044423
    • 2011-03-09
    • HOSSEIN KAZEMIVIGGO SELCHAU-HANSEN
    • HOSSEIN KAZEMIVIGGO SELCHAU-HANSEN
    • H02H3/00
    • H02H3/16H02H7/20
    • In an embodiment, inverter circuitry has switching devices that generate three-phase AC voltage that is supplied to a utility power grid interface transformer. A high impedance circuit as well as a ground fault monitoring circuit couple to the inverter circuit. The high impedance circuit is configured to periodically create a path to Earth ground, and thus, completes the Earth ground electrical path back to the ground fault detection circuit. A set of isolation contacts at the AC 3-phase power output connect as well as isolate this particular inverter from the utility grid interface transformer. Control components in the ground fault monitoring circuit control the operation of the isolation contacts based off a presence of a ground fault in ungrounded solar arrays that supply DC power to this ungrounded inverter circuitry when the ground fault is detected by the ground fault monitor circuit for that ungrounded inverter.
    • 在一个实施例中,逆变器电路具有产生提供给公共电网接口变压器的三相AC电压的开关装置。 高阻抗电路以及接地故障监控电路耦合到逆变器电路。 高阻抗电路配置为周期性地创建到接地的路径,从而完成接地故障检测电路的接地电路。 交流三相电源输出端连接一组隔离触点,并将该特定逆变器与公用电网接口变压器隔离。 接地故障监控电路中的控制组件基于在接地故障检测到接地故障时未接地太阳能电池阵列中接地故障的存在而控制隔离触点的操作,该接地故障由接地故障监控电路检测到 不接地逆变器。
    • 4. 发明申请
    • INTEGRATED REMOTELY CONTROLLED PHOTOVOLTAIC SYSTEM
    • 集成远程控制光伏系统
    • US20120004780A1
    • 2012-01-05
    • US13227637
    • 2011-09-08
    • Wayne MillerBrian HinmanRoeland VandeveldeHossein Kazemi
    • Wayne MillerBrian HinmanRoeland VandeveldeHossein Kazemi
    • G06F1/26
    • H01L31/02021F24S30/455F24S50/20H01L31/0543H02S20/32H02S50/00H02S50/10H04L67/12H04W4/70Y02E10/47Y02E10/52
    • Various methods and apparatus are described for an integrated remotely controlled photovoltaic system having a number of components. A central backend server management system is configured to facilitate management of two or more solar arrays at a remote site from a client device connected over a public wide area network (WAN). An integrated electronics housing contains multiple circuits, including power generation inverter circuits and solar array motion control circuits for one or more PhotoVoltaic (PV) solar arrays at the remote site. The multiple circuits cohesively exist in the integrated electronics housing and actually perform better because of the interconnectivity. The communication circuitry within the integrated electronics housing is configured to establish secure communications over the WAN with the central backend server management system. The integrated electronics housing acts as the local system control point for the first solar array.
    • 描述了具有多个部件的集成的远程控制的光伏系统的各种方法和装置。 中央后端服务器管理系统被配置为便于从通过公共广域网(WAN)连接的客户端设备在远程站点处管理两个或更多个太阳能阵列。 集成的电子设备外壳包含多个电路,包括在远程站点的一个或多个光伏伏太阳能电池阵列的发电逆变电路和太阳能阵列运动控制电路。 多重电路内在地存在于集成电路外壳中,并且由于互连性而实际上表现更好。 集成电路外壳内的通信电路被配置为通过中央后端服务器管理系统在WAN上建立安全通信。 集成的电子设备外壳作为第一个太阳能电池阵列的本地系统控制点。
    • 8. 发明申请
    • VARIOUS TRACKING ALGORITHMS AND APPARATUS FOR A TWO AXIS TRACKER ASSEMBLY IN A CONCENTRATED PHOTOVOLTAIC SYSTEM
    • 用于集中光伏系统中的双轴跟踪器组件的各种跟踪算法和装置
    • US20120152313A1
    • 2012-06-21
    • US13227803
    • 2011-09-08
    • Brian HinmanQiang Xie
    • Brian HinmanQiang Xie
    • H01L31/052
    • G01S3/7861F24S30/455F24S50/20F24S2050/25H02S20/10H02S20/32Y02E10/47
    • A hybrid solar tracking algorithm is implemented in a two-axis solar tracker mechanism for a concentrated photovoltaic (CPV) system in order to control the movement of the two-axis solar tracker mechanism. The hybrid solar tracking algorithm uses both 1) an Ephemeris calculation and 2) an offset value from a matrix to determine the angular coordinates for the CPV cells contained in the two-axis solar tracker mechanism to be moved to in order to achieve a highest power out of the CPV cells. The matrix populates with data from periodic calibration measurements of actual power being generated by the solar tracker and the tracking algorithm applies Kalman filtering to those measurements over time of the operation of the solar tracking mechanism to create the offset value being applied to the Ephemeris calculation to determine the angular coordinates for the CPV cells.
    • 在用于集中光伏(CPV)系统的双轴太阳能跟踪器机构中实施混合太阳能跟踪算法,以便控制双轴太阳能跟踪器机构的运动。 混合太阳跟踪算法使用1)星历计算和2)来自矩阵的偏移值来确定包含在要移动到的两轴太阳能跟踪器机构中的CPV单元的角坐标以便实现最高功率 出CPV单元。 矩阵填充有来自太阳跟踪器产生的实际功率的周期性校准测量的数据,并且跟踪算法对于太阳跟踪机构的操作的时间对这些测量应用卡尔曼滤波,以创建应用于星历计算的偏移值 确定CPV单元的角坐标。
    • 10. 发明申请
    • USER INTERFACE FOR A MOBILE COMPUTING DEVICE
    • 用于移动计算设备的用户界面
    • US20120245745A1
    • 2012-09-27
    • US13490084
    • 2012-06-06
    • Roeland VandeveldeWayne Miller
    • Roeland VandeveldeWayne Miller
    • G06F1/26G06F3/048G06F3/041
    • H02S50/00F24S50/00F24S50/20F24S2201/00H04M1/72533
    • An energy-management application may be resident on a mobile computing device to access information and control components associated with one or more solar generation sites. A graphic user interface presents multiple pages to both 1) monitor information regarding the solar generation sites and 2) control components within the solar generation sites from the mobile computing device. The application detects as an input on a currently displayed page from the sequence of multiple pages both a rate and a pattern of finger swipe gestures made on the currently displayed page. The application, in response to detection of both the rate and pattern of the finger gestures on the touch screen display, performs at least one of 1) activation of one or more of the data items, one or more of the links, or one or more of the objects, and 2) navigation to another page in the sequence of pages.
    • 能量管理应用可以驻留在移动计算设备上以访问与一个或多个太阳能发电站点相关联的信息和控制组件。 图形用户界面提供多个页面以便1)监视有关太阳能发电站点的信息,以及2)从移动计算设备控制太阳能发电站内的组件。 该应用程序在当前显示页面上的当前显示的页面上检测作为在当前显示的页面上进行的手指滑动手势的速率和模式的多个页面的输入。 应用程序响应于触摸屏显示器上的手指手势的速率和模式的检测,执行以下中的至少一个:1)激活一个或多个数据项,一个或多个链接,或一个或多个 更多的对象,和2)导航到另一页的页面序列。