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    • 93. 发明授权
    • 유연성을 갖는 태양광 패널 날개 구조
    • 柔性太阳能面板结构
    • KR101275883B1
    • 2013-06-24
    • KR1020110143620
    • 2011-12-27
    • 한국항공우주연구원
    • 박상욱김성준
    • B64C1/00H01L31/042B64D27/02
    • Y02E10/50B64C3/32B64D2211/00B64F5/10H02S10/40
    • PURPOSE: A wing structure with flexible photovoltaic panels is provided to reduce production costs and to increase the mechanical life of the photovoltaic panels. CONSTITUTION: A wing structure comprises wings, panel support parts(110), and photovoltaic panels(120). The panel support parts are coupled to the top of the wings by coupling members. The photovoltaic panels are positioned on the top of the panel support parts to receive energy from the sun. The wing structure is applied to an aircraft. Each panel support part comprises flat portions(111) and curvature portions(112). The photovoltaic panels are attached to the flat portions. The curvature portions are extended from the flat portions and are positioned between the photovoltaic panels.
    • 目的:提供具有柔性光伏面板的机翼结构,以降低生产成本并增加光伏板的机械寿命。 构成:翼结构包括翼,面板支撑部分(110)和光伏面板(120)。 面板支撑部件通过联接构件联接到机翼的顶部。 光伏面板位于面板支撑部分的顶部,以从太阳接收能量。 机翼结构适用于飞机。 每个面板支撑部分包括平坦部分(111)和曲率部分(112)。 光伏面板附着在平坦部分上。 曲率部分从平坦部分延伸并且位于光伏板之间。
    • 97. 发明申请
    • BATTERY ARRANGEMENT
    • 电池安排
    • WO2017207968A1
    • 2017-12-07
    • PCT/GB2017/051485
    • 2017-05-25
    • ELSON SPACE ENGINEERING ESE LIMITED
    • ELSON, Andrew CharlesROBERTS, MikeHAMMOND, Pete
    • H01M10/625B64D27/24H01M10/615H01M10/6571H01M10/48H01M2/10
    • H01M10/615B64D27/24B64D2211/00B64D2221/00H01M2/1077H01M10/486H01M10/625H01M10/6571H01M10/658H01M2220/20
    • A battery arrangement and a method of operating a battery arrangement for a solar powered aerial vehicle. The battery arrangement has a plurality of batteries arranged in a plurality of groups, the groups including a first battery group, a second battery group and a third battery group. Each battery group includes one or more batteries, and the method has the following steps: discharging the first battery group via an electrical heating device, the first battery group being at an operative temperature range, the operative temperature range being at or above zero degrees Celsius; warming the second battery group from a non-operative temperature range, the non-operative temperature range being below zero degrees Celsius, to the operative temperature range using heat energy from the electrical heating device. Whilst the first battery group is being discharged and the second battery group is being warmed, the third battery group remains at the non- operative temperature range.
    • 一种用于太阳能电动飞行器的电池装置和操作电池装置的方法。 电池装置具有以多个组布置的多个电池,这些组包括第一电池组,第二电池组和第三电池组。 每个电池组包括一个或多个电池,并且该方法具有以下步骤:经由电加热设备使第一电池组放电,第一电池组处于操作温度范围,操作温度范围在零摄氏度或零摄氏度以上 ; 使用来自电加热装置的热能将第二电池组从非工作温度范围(非工作温度范围低于零摄氏度)升温至工作温度范围。 在第一电池组正在放电并且第二电池组正在被加热时,第三电池组保持在非工作温度范围。