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公开(公告)号:US08842878B2
公开(公告)日:2014-09-23
申请号:US13139986
申请日:2009-12-16
Applicant: Dmitry Dimov , Mark Alan Goldman
Inventor: Dmitry Dimov , Mark Alan Goldman
CPC classification number: H04N7/183 , F24S40/00 , F24S2201/00 , G01W1/12 , G06K9/00771 , G06K9/22 , G06K9/3216 , G06K2009/3225 , H02S50/00 , Y02B10/12 , Y02B10/20 , Y02E10/52
Abstract: A device for performing solar shade analysis combines a spherical reflective dome and a ball compass mounted on a platform, with a compass alignment mark and four dots in the corners of the platform. A user may place the device on a surface of a roof, or in another location where solar shading analysis is required. A user, while standing above the device can take a photo of the device. The photographs can then be used in order to evaluate solar capacity and perform shade analysis for potential sites for solar photovoltaic systems. By using the device in conjunction with a mobile device having a camera, photographs may be taken and uploaded, to be analyzed and processed to determine a shading percentage. For example, the solar shade analysis system may calculate the percentage of time that the solar photovoltaic system might be shaded for each month of the year. These measurements and data, or similar measurements and data, may be valuable when applying for solar rebates or solar installation permits.
Abstract translation: 用于执行太阳能阴影分析的装置结合了球面反射圆顶和安装在平台上的球形罗盘,在平台的角部具有罗盘对准标记和四个点。 用户可以将设备放置在屋顶的表面上,或在需要太阳阴影分析的另一位置。 用户在设备上方可以拍摄设备的照片。 然后可以使用照片来评估太阳能容量并对太阳能光伏系统的潜在场所进行阴影分析。 通过将该设备与具有相机的移动设备结合使用,可以拍摄和上传照片以进行分析和处理,以确定遮蔽百分比。 例如,太阳能阴影分析系统可以计算太阳能光伏系统每年可能被遮蔽的时间百分比。 这些测量和数据,或类似的测量和数据在申请太阳能回收或太阳能安装许可证时可能是有价值的。
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公开(公告)号:US20120121125A1
公开(公告)日:2012-05-17
申请号:US13139986
申请日:2009-12-16
Applicant: Dmitry Dimov
Inventor: Dmitry Dimov
CPC classification number: H04N7/183 , F24S40/00 , F24S2201/00 , G01W1/12 , G06K9/00771 , G06K9/22 , G06K9/3216 , G06K2009/3225 , H02S50/00 , Y02B10/12 , Y02B10/20 , Y02E10/52
Abstract: A device for performing solar shade analysis combines a spherical reflective dome and a ball compass mounted on a platform, with a compass alignment mark and four dots in the corners of the platform. A user may place the device on a surface of a roof, or in another location where solar shading analysis is required. A user, while standing above the device can take a photo of the device. The photographs can then be used in order to evaluate solar capacity and perform shade analysis for potential sites for solar photovoltaic systems. By using the device in conjunction with a mobile device having a camera, photographs may be taken and uploaded, to be analyzed and processed to determine a shading percentage. For example, the solar shade analysis system may calculate the percentage of time that the solar photovoltaic system might be shaded for each month of the year. These measurements and data, or similar measurements and data, may be valuable when applying for solar rebates or solar installation permits.
Abstract translation: 用于执行太阳能阴影分析的装置结合了球面反射圆顶和安装在平台上的球形罗盘,在平台的角部具有罗盘对准标记和四个点。 用户可以将设备放置在屋顶的表面上,或在需要太阳阴影分析的另一位置。 用户在设备上方可以拍摄设备的照片。 然后可以使用照片来评估太阳能容量并对太阳能光伏系统的潜在场所进行阴影分析。 通过将该设备与具有相机的移动设备结合使用,可以拍摄和上传照片以进行分析和处理,以确定遮蔽百分比。 例如,太阳能阴影分析系统可以计算太阳能光伏系统每年可能被遮蔽的时间百分比。 这些测量和数据,或类似的测量和数据在申请太阳能回收或太阳能安装许可证时可能是有价值的。
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公开(公告)号:US20120031470A1
公开(公告)日:2012-02-09
申请号:US13133634
申请日:2010-06-17
Applicant: Dmitry Dimov , Julian Sweet , Mark Goldman , Theo Mann , Christine M. Kurjan , Anne Elizabeth
Inventor: Dmitry Dimov , Julian Sweet , Mark Goldman , Theo Mann , Christine M. Kurjan , Anne Elizabeth
IPC: H01L31/048 , H01L23/12 , H01L31/18
CPC classification number: H02S20/23 , F24S25/12 , F24S25/50 , F24S25/61 , F24S25/613 , F24S25/65 , F24S2020/10 , Y02B10/12 , Y02B10/20 , Y02E10/47 , Y10T29/49355
Abstract: The invention provides solar panel systems, which may be applied to surfaces such as residential rooftops. The invention also provides methods of installing solar panel systems. A solar panel system may comprise one or more module, which may comprise one or more solar panels and a rack. A solar panel may comprise a polymer, and may not comprise glass or a metal frame. The rack may include three footings and a plurality of adjustable fasteners that may enable the module to reside on an uneven surface. The rack may also include integrated electronic components and a microinverter. A module may yield a desired power output, and may generate performance monitoring data.
Abstract translation: 本发明提供太阳能面板系统,其可以应用于诸如住宅屋顶的表面。 本发明还提供了安装太阳能电池板系统的方法。 太阳能面板系统可以包括一个或多个模块,其可以包括一个或多个太阳能电池板和机架。 太阳能电池板可以包括聚合物,并且可以不包括玻璃或金属框架。 机架可以包括三个脚和多个可调节紧固件,其可以使得模块能够驻留在不平坦的表面上。 机架还可以包括集成电子部件和微转换器。 模块可以产生期望的功率输出,并且可以产生性能监视数据。
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公开(公告)号:USD600200S1
公开(公告)日:2009-09-15
申请号:US29313157
申请日:2008-12-10
Applicant: Dmitry Dimov , Julian Sweet , Mark Goldman , Theo Mann , Jon H. Lefors , Timothy J. Prachar , David Coale , Artit Wangperawong
Designer: Dmitry Dimov , Julian Sweet , Mark Goldman , Theo Mann , Jon H. Lefors , Timothy J. Prachar , David Coale , Artit Wangperawong
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公开(公告)号:US20120247530A1
公开(公告)日:2012-10-04
申请号:US13506232
申请日:2012-04-04
Applicant: Dmitry Dimov , Steven Weston Frehn , Denis Shcheglov , Mark Alan Goldman
Inventor: Dmitry Dimov , Steven Weston Frehn , Denis Shcheglov , Mark Alan Goldman
IPC: H01L31/05
CPC classification number: H01L31/0508 , Y02E10/50
Abstract: The device described relates to a strain reliving electric coupler used to connect solar cells in solar panels, particularly solar panels made from polymer materials and lightweight metals. These couplers can withstand high levels of thermal expansion and contraction during manufacturing and over years of outdoor exposure.
Abstract translation: 所描述的装置涉及用于连接太阳能电池板中的太阳能电池的应变再生电耦合器,特别是由聚合物材料和轻质金属制成的太阳能电池板。 这些耦合器可以在制造过程中以及多年的户外曝光时承受高水平的热膨胀和收缩。
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