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    • 6. 发明授权
    • Photovoltaic power generation system free of bypass diodes
    • 光伏发电系统没有旁路二极管
    • US09093586B2
    • 2015-07-28
    • US13543297
    • 2012-07-06
    • Anthony L. LentineMurat OkandanGregory N. Nielson
    • Anthony L. LentineMurat OkandanGregory N. Nielson
    • H01L31/05H02J1/10
    • H01L31/0504Y02E10/50
    • A photovoltaic power generation system that includes a solar panel that is free of bypass diodes is described herein. The solar panel includes a plurality of photovoltaic sub-modules, wherein at least two of photovoltaic sub-modules in the plurality of photovoltaic sub-modules are electrically connected in parallel. A photovoltaic sub-module includes a plurality of groups of electrically connected photovoltaic cells, wherein at least two of the groups are electrically connected in series. A photovoltaic group includes a plurality of strings of photovoltaic cells, wherein a string of photovoltaic cells comprises a plurality of photovoltaic cells electrically connected in series. The strings of photovoltaic cells are electrically connected in parallel, and the photovoltaic cells are microsystem-enabled photovoltaic cells.
    • 本文描述了包括不具有旁路二极管的太阳能电池板的光伏发电系统。 太阳能面板包括多个光伏子模块,其中多个光伏子模块中的至少两个光伏子模块并联电连接。 光伏子模块包括多组电连接的光伏电池,其中至少两个组被串联电连接。 光伏组包括多个光伏电池串,其中一串光伏电池包括串联电连接的多个光伏电池。 光伏电池串并联电连接,并且光伏电池是具有微系统功能的光伏电池。
    • 7. 发明授权
    • Microsystem enabled photovoltaic modules and systems
    • 具有微系统功能的光伏组件和系统
    • US09029681B1
    • 2015-05-12
    • US12914441
    • 2010-10-28
    • Gregory N. NielsonWilliam C. SweattMurat Okandan
    • Gregory N. NielsonWilliam C. SweattMurat Okandan
    • H01L31/042H01L31/00H01L31/054F24J2/06
    • H01L31/0543F24S23/30F24S30/20F24S30/455H01L31/043H01L31/054H01L31/0547H01L31/0549H02S20/32Y02E10/47Y02E10/52
    • A microsystem enabled photovoltaic (MEPV) module including: an absorber layer; a fixed optic layer coupled to the absorber layer; a translatable optic layer; a translation stage coupled between the fixed and translatable optic layers; and a motion processor electrically coupled to the translation stage to controls motion of the translatable optic layer relative to the fixed optic layer. The absorber layer includes an array of photovoltaic (PV) elements. The fixed optic layer includes an array of quasi-collimating (QC) micro-optical elements designed and arranged to couple incident radiation from an intermediate image formed by the translatable optic layer into one of the PV elements such that it is quasi-collimated. The translatable optic layer includes an array of focusing micro-optical elements corresponding to the QC micro-optical element array. Each focusing micro-optical element is designed to produce a quasi-telecentric intermediate image from substantially collimated radiation incident within a predetermined field of view.
    • 一种微系统使能光伏(MEPV)模块,包括:吸收层; 耦合到所述吸收层的固定光学层; 可翻译光学层; 耦合在固定和可平移光学层之间的平移台; 以及运动处理器,其电耦合到所述平移台以控制所述可平移光学层相对于所述固定光学层的运动。 吸收层包括光伏(PV)元件阵列。 固定光学层包括准准直(QC)微光学元件的阵列,其被设计和布置成将来自由可平移光学层形成的中间图像的入射辐射耦合到PV元件之一中,使得其准准。 可平移光学层包括对应于QC微光学元件阵列的聚焦微光学元件阵列。 每个聚焦微光学元件被设计成从在预定视野内入射的基本上准直的辐射产生准远心中间图像。
    • 8. 发明授权
    • Optically transduced MEMS gyro device
    • 光导MEMS陀螺仪
    • US08726730B1
    • 2014-05-20
    • US13325683
    • 2011-12-14
    • Gregory N. NielsonGregory R. BogartEric LangloisMurat Okandan
    • Gregory N. NielsonGregory R. BogartEric LangloisMurat Okandan
    • G01P3/00G01C19/00
    • G01C19/5726G01C19/5733
    • A bulk micromachined vibratory gyro in which a proof mass has a bulk substrate thickness for a large mass and high inertial sensitivity. In embodiments, optical displacement transduction is with multi-layer sub-wavelength gratings for high sensitivity and low cross-talk with non-optical drive elements. In embodiments, the vibratory gyro includes a plurality of multi-layer sub-wavelength gratings and a plurality of drive electrodes to measure motion of the proof mass induced by drive forces and/or moments and induced by the Coriolis Effect when the gyro experiences a rotation. In embodiments, phase is varied across the plurality gratings and a multi-layer grating having the best performance is selected from the plurality.
    • 一种体积微加工的振动陀螺仪,其中质量块具有大的质量和高惯性灵敏度的体积衬底厚度。 在实施例中,光学位移转换是与用于高灵敏度和与非光学驱动元件的低串扰的多层亚波长光栅。 在实施例中,振动陀螺仪包括多个多层亚波长光栅和多个驱动电极,用于测量当陀螺仪经历旋转时由驱动力和/或力矩引起的和由科里奥利效应引起的检测质量的运动 。 在实施例中,在多个光栅之间改变相位,并且从多个光栅中选择具有最佳性能的多层光栅。