论文标题

分阶段能源延长多电动无人机的飞行时间

Staging energy sources to extend flight time of a multirotor UAV

论文作者

Jain, Karan P., Tang, Jerry, Sreenath, Koushil, Mueller, Mark W.

论文摘要

与基于燃烧的燃料不同,消耗后电池等能源的质量不会减少。我们提出了分期能源的概念,即在阶段消耗能量和弹出阶段,以逐步减少飞机上的质量,从而减少功耗,从而增加飞行时间。提出了飞行时间与储能质量分析,以表明分期对多轨道的耐力优势。我们考虑了离散分期的两个特定问题 - 在一定数量的能源下,最佳分期顺序,以及将给定能量存储量预算的最佳分区分为给定数量的阶段。然后,我们得出了两个连续上演的案例的结果 - 内燃机驾驶螺旋桨和火箭发动机。值得注意的是,我们表明,由内燃烧驱动的多功能器对可实现的飞行时间独立于可用的燃油量具有上限,但是火箭推进没有这种限制。最后,我们通过自定义的两阶段电池驱动的四轮驱动器上的飞行实验来验证分析。该四轮驱动器可以使用自定义设计的机制在消耗飞行后弹出电池阶段,并继续使用下一阶段悬停。实验飞行时间与我们车辆分析所预测的飞行时间非常匹配。与单个阶段相比,使用电池在两个阶段使用电池的飞行时间增加了19%。

Energy sources such as batteries do not decrease in mass after consumption, unlike combustion-based fuels. We present the concept of staging energy sources, i.e. consuming energy in stages and ejecting used stages, to progressively reduce the mass of aerial vehicles in-flight which reduces power consumption, and consequently increases flight time. A flight time vs. energy storage mass analysis is presented to show the endurance benefit of staging to multirotors. We consider two specific problems in discrete staging -- optimal order of staging given a certain number of energy sources, and optimal partitioning of a given energy storage mass budget into a given number of stages. We then derive results for two continuously staged cases -- an internal combustion engine driving propellers and a rocket engine. Notably, we show that a multicopter powered by internal combustion has an upper limit on achievable flight time independent of the available fuel mass, but no such limit exists for rocket propulsion. Lastly, we validate the analysis with flight experiments on a custom two-stage battery-powered quadcopter. This quadcopter can eject a battery stage after consumption in-flight using a custom-designed mechanism, and continue hovering using the next stage. The experimental flight times match well with those predicted from the analysis for our vehicle. We achieve a 19% increase in flight time using the batteries in two stages as compared to a single stage.

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