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Flying batteries: In-flight battery switching to increase multirotor flight time

机译:飞行电池:飞行中电池切换可增加多旋翼飞行时间

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We present a novel approach to increase the flight time of a multirotor via mid-air docking and in-flight battery switching. A main quadcopter flying using a primary battery has a docking platform attached to it. A ‘flying battery’ – a small quadcopter carrying a secondary battery – is equipped with docking legs that can mate with the main quadcopter’s platform. Connectors between the legs and the platform establish electrical contact on docking, and enable power transfer from the secondary battery to the main quadcopter. A custom-designed circuit allows arbitrary switching between the primary battery and secondary battery. We demonstrate the concept in a flight experiment involving repeated docking, battery switching, and undocking. This is shown in the video attachment. The experiment increases the flight time of the main quadcopter by a factor of 4.7× compared to solo flight, and 2.2× a theoretical limit for that given multirotor. Importantly, this increase in flight time is not associated with a large increase in overall vehicle mass or size, leaving the main quadcopter in fundamentally the same safety class.
机译:我们提出了一种新颖的方法来通过中空对接和飞行中电池切换来增加多电机的飞行时间。使用主电池的主要Quadcopter飞行有一个连接平台。 “飞行电池” - 携带二次电池的小型Quadcopter - 配备了对接腿,可以与主Quadcopter的平台配合。腿部和平台之间的连接器建立了对接的电接触,并使电力从二次电池传输到主Quadcopter。定制设计的电路允许在初级电池和二次电池之间任意切换。我们展示了涉及重复对接,电池切换和脱机的飞行实验中的概念。这在视频附件中显示。实验将主Quadcopter的飞行时间增加到4.7倍,与独奏飞行相比,给定多陆的理论限制为2.2倍。重要的是,这种飞行时间的增加与整体车辆质量或尺寸的大幅增加无关,从根本上留下主要的Quadcopter。

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