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DEVELOPMENT OF A FIBER-OPTIC HYBRID DAY-LIGHTING SYSTEM FOR MOBILE SHELTER APPLICATIONS

机译:用于移动避难所的光纤混合日光系统的开发

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This paper discusses a Fiber-Optic Hybrid Day-Lighting system that can cut energy consumed by buildings for lighting significantly. This system is designed for mobile applications such as military shelters. The system is comprised of two primary components: the solar collector and the Solar Hybrid Lighting Fixture. The first component, the solar collector, consists of a housing, structural stand, a dual axis tracking system, Fresnel Lenses, secondary optics, and fiber-optic cables. The collector is integrated into a dual-axis tracker, which is then mounted on a tripod. The tripod can be staked into the ground and weighed down to protect the system from any wind loading and the collector height can be adjusted so that there is no shading of the collector by nearby structures. The collector with an aluminum housing holds eight 10-inch diameter Fresnel Lenses that focus sunlight onto eight secondary optics based on TIR (total internal reflection) which filter UV/IR and deliver uniform light to the fiber-optic cables. The secondary optic is coupled to the fiber-optic cable with index matching gel so that Fresnel reflection losses are minimized. The solar collector tracks the sun's movement through the day with a dual-axis tracker (azimuth/tilt), ensuring the light is concentrated into the fiber-optic cables. The optics has been designed to have a high half-acceptance of 1.75° and can accommodate a tracking accuracy of 1.50° or better. The opposite end of the fiber-optic cable attaches to the second part of the Day-Lighting system, the Solar Hybrid Light Fixture (SHLF). The SHLF comprises of two lighting systems: 1) a solar fiber-optic system and 2) an LED system. The fiberoptic cable is coupled to an acrylic light diffusing rod that evenly delivers the light into the room. During sunny periods, depending on the length of the cable, solar fiber-optic lighting could provide full illumination of the space. In order to keep lighting uniform even during fluctuations of the light output from the sun during cloudy periods, the LED portion of the light will allow for constant lighting at a lower power consumption. The LED lighting has dimming capabilities due to a photosensor that regulates the light output of the LEDs based on how much solar light is delivered by the fiber-optic cables. On a typical sunny day with an overall concentration factor of ~400 from the Fresnel Lens system to the optical fiber, it is possible to generate an output of 2,000 lumens with a 20-foot cable, with each fiberoptic cable experiencing a 1% loss of light per foot of cable. The LED portion of the hybrid light fixture produces about 1,800 lumens as well.
机译:本文讨论了一种光纤混合日间照明系统,该系统可以显着减少建筑物用于照明的能耗。该系统设计用于军事避难所等移动应用。该系统由两个主要组件组成:太阳能收集器和太阳能混合照明灯具。第一个组件是太阳能收集器,它由外壳,结构支架,双轴跟踪系统,菲涅尔透镜,二次光学器件和光纤电缆组成。收集器集成到双轴跟踪器中,然后将其安装在三脚架上。可以将三脚架放到地下并称重,以保护系统不受任何风的影响,并且可以调节收集器的高度,以使附近的结构不会对收集器造成阴影。具有铝制外壳的收集器可容纳八个直径为10英寸的菲涅耳透镜,这些透镜可将太阳光聚焦到基于TIR(全内反射)的八个二次光学元件上,该二次光学元件可过滤UV / IR并将均匀的光传输到光纤。辅助光学元件通过折射率匹配凝胶耦合到光缆,从而使菲涅耳反射损失最小。太阳能收集器使用双轴跟踪器(方位角/倾斜角)跟踪太阳在一天中的运动,从而确保光线集中到光缆中。光学器件被设计为具有1.75°的高半接受度,并且可以适应1.50°或更高的跟踪精度。光纤的另一端连接到日间照明系统的第二部分,即太阳能混合灯具(SHLF)。 SHLF包含两个照明系统:1)太阳能光纤系统和2)LED系统。光纤耦合到丙烯酸光扩散棒,该棒将光均匀地传输到房间中。在晴天期间,取决于电缆的长度,太阳能光纤照明可以提供整个空间的照明。为了即使在阴天期间从太阳输出的光的波动期间也保持照明均匀,光的LED部分将允许以较低的功耗进行恒定的照明。由于光电传感器根据光缆传输的太阳光量来调节LED的光输出,因此LED照明具有调光功能。在典型的晴天中,从菲涅尔透镜系统到光纤的总集中度约为400,使用20英尺电缆可以产生2,000流明的输出,而每条光缆的损耗为1%。每英尺电缆轻。混合照明设备的LED部分也产生约1,800流明。

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