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    • 2. 发明申请
    • SOLAR MODULE ARRAY PRE-ASSEMBLY METHOD AND APPARATUS
    • US20170176051A1
    • 2017-06-22
    • US15450597
    • 2017-03-06
    • OpTerra Energy Services, Inc.
    • David S. POTTER
    • F24J2/52H02S30/10B65G49/06F16B2/10F16M11/20
    • F24S25/63B65G49/063B65G49/067B65G49/068F16B2/10F16M11/2085F16M11/42F24S25/10H01L31/02H01L31/048H02S30/10Y02E10/47Y10T29/49826
    • The present invention is directed to an apparatus for pre-assembly of an electrically connected array of solar panels for a solar canopy including a substantially planar base member for resting on a horizontal surface, a substantially planar support member for horizontally aligning side-by-side and horizontally supporting a plurality of solar panels when a photo-voltaic cell side of the solar panels rests against the support member, where a bottom portion of the support member is integral with the base member or fixed attached to the base member, and the support member extends upward from the base member; a track member disposed proximate a bottom portion of the support member attached to or integral with the support member or base member for vertically aligning side-by-side and vertically supporting a plurality of solar panels when a side edge portion of the solar panels rests on the track member; and at least two arm members, each having a free end and an attached end, the attached ends pivotally attached proximate to opposing ends of the base member or support member and each arm members having a longitudinal axis oriented substantially perpendicular to the longitudinal axis of the base member and support member and extending outward from the base member and support member, and configured to pivot in a vertical plane from a position substantially parallel to the ground upward to a position substantially parallel to parallel to the plane of the support member, where upon pivoting in one direction the free end moves closer towards the support member and pivoting in the other direction the free end moves away from the support member, the arm members being configured and adapted for removably attaching at least two solar panel support channels.
    • 3. 发明授权
    • Solar canopy assembly
    • 太阳能罩组装
    • US09093582B2
    • 2015-07-28
    • US13622579
    • 2012-09-19
    • OpTerra Energy Services, Inc.
    • Collin Hamilton
    • H02N6/00H01L31/042H02S30/20
    • H01L31/042F24S25/12F24S25/33F24S25/70F24S2025/012F24S2030/115H02S20/00H02S20/10H02S30/20Y02E10/47Y02E10/50
    • A structure capable of folding into a compact form for transporting, and for simple unfolding for attachment to a base, the structure including: two or more hingably interconnected solar panel arrays each having a two or more of solar panels, a solar panel support channel, and a support beam; wherein the two or more solar panels are attached to top portions of the solar panel support channel, and a bottom portion of the solar panel support channel is attached to a top portion of the support beam, the support beam having a hinged joint for cooperating in folding into mutual, near coplanar juxtaposition; and where the structure, when unfolded includes a solar canopy and is T-shaped viewed on end.
    • 一种能够折叠成紧凑形式用于运输的结构,并且为了简单地展开以附接到基座,该结构包括:两个或多个可铰接的太阳能电池板阵列,每个太阳能电池板阵列具有两个或更多个太阳能电池板,太阳能电池板支撑通道, 和支撑梁; 其中所述两个或多个太阳能电池板连接到所述太阳能电池板支撑通道的顶部,并且所述太阳能电池板支撑通道的底部附接到所述支撑梁的顶部,所述支撑梁具有用于配合的铰链接头 折叠成相互近平面的并置; 并且当展开时的结构包括太阳能罩,并且在结束时观察为T形。
    • 5. 发明申请
    • BRACING ASSEMBLY
    • 制作装配
    • US20160248372A1
    • 2016-08-25
    • US14871104
    • 2015-09-30
    • OpTerra Energy Services, Inc.
    • Collin HAMILTON
    • H02S30/20H02S20/10
    • H02S30/20F16M11/10F16M13/02F16M13/022F24S25/12F24S25/61F24S25/632F24S25/65F24S25/70F24S2025/012F24S2025/013F24S2025/018F24S2030/115F24S2030/16H02S20/00H02S20/10Y02E10/47
    • The invention includes a solar canopy a brace assembly for stabilizing a foldable solar canopy structure including: a first brace clamp comprising a first U-shaped body removable attached to a flat body: a second brace clamp comprising a second U-shaped body removable attached to a flat body, wherein the second brace clamp is adapted to encircle and securely attach to a beam and wherein the first brace clamp is removably attached on one side to the second brace clamp at one side; a third brace clamp comprising a third U-shaped body removable attached to a flat body; and a strut member for attaching the third brace clamp to the second brace claim, removably attached at one end to a side of the third brace clamp at on the opposing end to the side of the second brace clamp opposite the side attached to the first brace clamp, thereby forming a linear assembly.
    • 本发明包括太阳能罩,用于稳定可折叠的太阳能罩结构的支架组件,包括:第一支架夹具,包括可附接到平坦主体的第一U形主体;第二支架夹具,包括可拆卸的第二U形主体, 平坦体,其中所述第二支架夹具适于环绕并牢固地附接到梁上,并且其中所述第一支撑夹具在一侧可移除地附接到所述第二支架夹具; 第三支架夹具,包括可拆卸地连接到平坦体的第三U形体; 以及用于将第三支架夹具附接到第二支架索引的支柱构件,其可拆卸地在一端附接到第三支架夹具的与第二支架夹具的相对于与第一支架相连的侧面的相对端上的一侧 夹紧,从而形成线性组件。
    • 6. 发明申请
    • SOLAR CANOPY SUPPORT SYSTEM
    • 太阳能支持系统
    • US20160233818A1
    • 2016-08-11
    • US14871025
    • 2015-09-30
    • OpTerra Energy Services, Inc.
    • David S. POTTERJeffrey Paul MUNOZ
    • H02S20/10F24J2/52
    • H02S20/10F24S20/67F24S25/12F24S25/617F24S25/63F24S25/634Y02B10/20Y02E10/47Y10T29/49826
    • The solar canopy support system has at least two beam support columns. Each beam support column has a first end connected to a ground surface and extends substantially vertically along a longitudinal axis from the first end to a second end. There is also a “C”-channel support beam connected at the second end of each beam support column. The “C”-channel support beam includes a longitudinal axis within about 0 degrees to about 30 degrees of perpendicular to the longitudinal axis of each beam support column. There are also two or more “C”-channels. Each “C”-channel has a first end connected to an upper portion of one “C”-channel support beam and has a second end connected to an upper portion of another “C”-channel support beam. Each “C”-channel includes a longitudinal axis substantially perpendicular to the longitudinal axis of each “C”-channel support beam; at least one solar power array connected on an upper portion of at least two “C”-channels.
    • 太阳能支架系统具有至少两个梁支撑柱。 每个梁支撑柱具有连接到地面的第一端,并且沿着纵向轴线从第一端基本垂直地延伸到第二端。 还有在每个梁支撑柱的第二端处连接的“C”通道支撑梁。 “C”通道支撑梁包括垂直于每个梁支撑柱的纵向轴线的约0度至约30度的纵向轴线。 还有两个或更多的“C”通道。 每个“C”通道具有连接到一个“C”通道支撑梁的上部的第一端,并且具有连接到另一“C”形通道支撑梁的上部的第二端。 每个“C”通道包括基本上垂直于每个“C”通道支撑梁的纵向轴线的纵向轴线; 至少一个太阳能阵列连接在至少两个“C”通道的上部。
    • 9. 发明授权
    • Systems and methods for regulating an alternative energy source that is decoupled from a power grid
    • 用于调节与电网分离的替代能量源的系统和方法
    • US09568900B2
    • 2017-02-14
    • US13836376
    • 2013-03-15
    • OPTERRA ENERGY SERVICES, INC.
    • David PotterEduardo Alberto AlegriaAaron Mineai
    • G05D7/00G05B15/02H02J3/32H02J3/28H02J3/00
    • G05B15/02H02J3/28H02J3/32H02J2003/007Y02B10/30Y02E60/76Y02P80/21Y04S40/22
    • A method includes: determining a total power load from an electrical power consumption entity configured to receive all or a portion of the total power load from each of (i) an alternative energy source (“AES”), (ii) a power grid, and (iii) a rechargeable energy storage device. The AES and the power grid are connected using a reverse power relay. The method also includes: for a first time period, determining a first power supply from the AES. The first power supply is affected by natural events that are uncontrolled by a user. The method also includes in accordance with a determination that, during the first time period, the power supply from the AES exceeds the power load: storing an excess portion of the power supply in the energy storage device, without releasing electrical power from the AES to the power grid. The excess portion is less than the energy storage device's maximum capacity.
    • 一种方法包括:确定来自被配置为从(i)替代能量源(“AES”),(ii)电力网,电力网,电力系统中的每一个接收总功率负载的全部或一部分的电力消耗实体的总功率负荷; 和(iii)可再充电能量存储装置。 AES和电网使用反向功率继电器连接。 该方法还包括:第一时间段,从AES确定第一电源。 第一个电源受到用户不受控制的自然事件的影响。 该方法还包括根据确定在第一时间段期间,来自AES的电力供应超过功率负载:将电力供应的多余部分存储在能量存储装置中,而不会从AES释放电力到 电网。 剩余部分小于储能装置的最大容量。
    • 10. 发明授权
    • Folding solar canopy assembly
    • 折叠太阳能罩组装
    • US09093583B2
    • 2015-07-28
    • US13622877
    • 2012-09-19
    • OpTerra Energy Services, Inc.
    • Collin Hamilton
    • H01L31/042H02S30/20
    • H01L31/042F24S25/12F24S25/33F24S25/70F24S2025/012F24S2030/115H02S20/00H02S20/10H02S30/20Y02E10/47Y02E10/50
    • A structure capable of folding into a compact form for transporting, and for simple unfolding for attachment to a base, the structure including: two or more hingably interconnected solar panel arrays each having a two or more of solar panels, a solar panel support channel, and a support beam; wherein the two or more solar panels are attached to top portions of the solar panel support channel, and a bottom portion of the solar panel support channel is attached to a top portion of the support beam, the support beam having a hinged joint for cooperating in folding into mutual, near coplanar juxtaposition; and where the structure, when unfolded includes a solar canopy and is L-shaped viewed on end.
    • 一种能够折叠成紧凑形式用于运输的结构,并且为了简单地展开以附接到基座,该结构包括:两个或多个可铰接的太阳能电池板阵列,每个太阳能电池板阵列具有两个或更多个太阳能电池板,太阳能电池板支撑通道, 和支撑梁; 其中所述两个或多个太阳能电池板连接到所述太阳能电池板支撑通道的顶部,并且所述太阳能电池板支撑通道的底部附接到所述支撑梁的顶部,所述支撑梁具有用于配合的铰链接头 折叠成相互近平面的并置; 并且当展开时的结构包括太阳能盖,并且在结束时观察为L形。