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Ultra-Compact Power System for Long-Endurance Small Unmanned Aerial Systems

机译:适用于长寿命小型无人机系统的超紧凑型动力系统

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Air-Launched Small Unmanned Aerial Systems (SUASs) provide critical information to warfighters, but are currently limited by the power and energy available from small electric propulsion systems. This paper describes proof-of-concept testing of a novel power system for SUASs. The power system comprises a compact hydrogen generator and a hydrogen PEM fuel cell. The hydrogen generator uses ammonia borane (AB) as a solid chemical hydrogen storage material and heats the AB to produce hydrogen through thermal decomposition. The innovative ignition and control process generates highly pure hydrogen on-demand from a system that is very compact, lightweight, and rugged. We built a proof-of-concept hydrogen generator and used it to supply hydrogen to a small PEM fuel cell. The proof-of-concept generator used prototypical AB, heat source, control scheme, and purification media to absorb trace amounts of ammonia, borazine, and carbon monoxide (CO). The hydrogen generator operated as expected, producing hydrogen as needed to maintain the supply pressure within specified bounds. The fuel cell produced 4 A/8.6 V for 15 minutes, amounting to 8.6 W-hr of electricity. We measured the fuel cell's current/voltage characteristics before and after the test, and found no measurable change due to operation with AB-generated hydrogen. Based on these data, we scaled up the design of the proof-of-concept unit and produced a design for a 720 W-hr hydrogen generator with a very high hydrogen density (5.6 wt % and 36 g H_2/L). The hydrogen generator is extremely simple and well-suited for operation in an air-launched SUAS. Combined with a compact fuel cell, our system should enable a small power system for SUAS with an overall energy density in the range of 350 to 600 W-hr/kg.
机译:空载小型无人航空系统(SUAS)可为战士提供重要信息,但目前受到小型电力推进系统可提供的功率和能量的限制。本文介绍了一种用于SUAS的新型电源系统的概念验证测试。该动力系统包括紧凑型氢气发生器和氢气PEM燃料电池。氢气发生器使用硼烷氨(AB)作为固体化学储氢材料,并加热AB以通过热分解产生氢气。创新的点火和控制过程从非常紧凑,轻巧且坚固的系统按需产生高纯度氢气。我们建造了概念验证氢气发生器,并用它为小型PEM燃料电池提供氢气。概念验证发生器使用原型AB,热源,控制方案和净化介质来吸收痕量的氨,硼嗪和一氧化碳(CO)。氢气发生器按预期运行,根据需要产生氢气,以将供气压力维持在指定范围内。燃料电池在15分钟内产生4 A / 8.6 V的电能,相当于8.6 W-hr的电量。我们在测试前后测量了燃料电池的电流/电压特性,发现由于使用AB生成的氢气运行,没有发现可测量的变化。基于这些数据,我们扩大了概念验证装置的设计范围,并为具有非常高的氢密度(5.6 wt%和36 g H_2 / L)的720 W-hr氢发生器进行了设计。氢气发生器非常简单,非常适合在空中SUAS中运行。结合紧凑型燃料电池,我们的系统应能为SUAS提供小型动力系统,其总能量密度应在350至600 W-hr / kg的范围内。

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