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    • 6. 发明申请
    • DOUBLE-DECK COVERED ROADWAY
    • DOUBLE-DECK涵盖道路
    • WO2008150317A1
    • 2008-12-11
    • PCT/US2008/002881
    • 2008-03-05
    • SING, Robert, L.
    • SING, Robert, L.
    • E01F9/00G08G1/00
    • E01C1/002Y02A30/68
    • The double-deck covered roadway (5) has an upper road (30) for light vehicle traffic and a lower road (25) for heavy, industrial vehicle traffic. The roadway is an intelligent system, having an access control computer (ACC) (55) limiting access of the roadways to the appropriate vehicles. Signal emitters, receivers and/or repeaters (40) for microwave, cell phones short-range radio, or the like may be provided. The roadway is covered, and has a slanted roof structure (7). Solar panels (10) are disposed atop the slanted roof structure (7). Spindles (8) may be provided that can pull off or pull on an optional protective cover for the solar panels (10). An indoor services module (50) houses the ACC (55) and other service systems. The underside of the upper roadway (30) can provide attached or embedded monitoring systems, road lighting, signal light boards (60) to communicate with drivers, etc.
    • 双层覆盖道路(5)具有用于轻型车辆交通的上路(30)和用于重型工业车辆交通的较低路(25)。 道路是智能系统,具有访问控制计算机(ACC)(55),用于限制道路进入适当的车辆。 可以提供用于微波,手机短距离无线电等的信号发射器,接收器和/或中继器(40)。 道路被覆盖,并具有倾斜的屋顶结构(7)。 太阳能电池板(10)设置在倾斜屋顶结构(7)的顶部。 可以提供主轴(8),其可以拉出或拉动用于太阳能电池板(10)的可选保护盖。 室内服务模块(50)容纳ACC(55)和其他服务系统。 上部道路(30)的下侧可以提供连接或嵌入的监控系统,道路照明,信号灯板(60)以与驾驶员进行通信等。
    • 8. 发明申请
    • SELF-SUSTAINING DRONE AIRCRAFT FREIGHT AND OBSERVATION SYSTEM
    • 自主持续飞机飞行和观察系统
    • WO2012173632A1
    • 2012-12-20
    • PCT/US2011/040981
    • 2011-06-17
    • SING, Robert, L.
    • SING, Robert, L.
    • B64F1/22B64D9/00B64F1/28B64D45/00B64C13/18
    • B64D9/00B64C39/024B64C2201/021B64C2201/048B64C2201/084B64C2201/104B64C2201/128B64C2201/145B64C2201/187
    • The self-sustaining drone aircraft freight and observation system (5) comprises a fleet of jet-powered drone aircraft (10) designed to carry freight (12) only. The drones (10) operate from a separate airfield in outlying areas to decrease land costs and to avoid disturbing residential and business areas. Navigation is automated using guidance from GPS satellites (16), and the aircraft (10) can be assisted by a hydraulic catapult (13) during takeoff to reduce the fuel payload. The observation component (18) includes sensors that can observe weather conditions and emergency signals from boats, ships and other sources. The system (5) may include a large-scale energy production center and multi-acre vegetable, herb and flower production center (26). The energy production center includes solar panels (30), fuel cells (38), and batteries (44). Thus, the system (5) does not need to be connected to the public utility electrical grid.
    • 自维持无人机飞机运输和观察系统(5)包括一个仅用于运输(12)的喷气式无人机(10架)舰队。 无人机(10)从外围地区的独立机场运营,以降低土地成本,避免住宅和商业区域的不安。 导航使用GPS卫星(16)的指导进行自动化,飞机(10)可在起飞期间由液压弹射器(13)辅助以减少燃料有效载荷。 观察部件(18)包括能够观察船舶,船舶和其他来源的天气状况和紧急信号的传感器。 系统(5)可以包括一个大型能源生产中心和多英亩蔬菜,草药花卉生产中心(26)。 能源生产中心包括太阳能电池板(30),燃料电池(38)和电池(44)。 因此,系统(5)不需要连接到公共事业电网。