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The multiple flying sidekicks traveling salesman problem with variable drone speeds

机译:多次飞行的侧面行推销推销员问题可变无人机速度

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This research considers unmanned aerial vehicles (UAVs) that may travel at varying speeds in a last-mile delivery system involving a single truck and a fleet of UAVs. In existing truck-and-UAV delivery models that assume constant or unlimited UAV endurance, the natural conclusion is that operating UAVs at higher speeds will either decrease, or have no adverse effect on, total delivery times. However, in reality, UAV power consumption is a nonlinear function of both speed and parcel weight; flying at high speeds can dramatically reduce flight ranges, thus limiting the effectiveness of these logistics systems. This paper addresses the tradeoffs between speed and range in a new variant of the combined truck/UAV delivery problem in which UAV speeds are treated as decision variables. A three-phased algorithm is provided that dynamically adjusts UAV speeds to achieve superior performance, with the goal of minimizing the total delivery time (or makespan). Results indicate that significant time savings can be achieved by operating UAVs at variable speeds. Furthermore, under certain conditions, optimizing UAV speeds also results in shorter truck travel distances, reduced UAV energy consumption per trip, and less UAV loitering while waiting to rendezvous with the truck.
机译:本研究考虑了无人驾驶车辆(无人机),可能在涉及单一卡车和一支无人机队伍的最后一英里的交付系统中以不同的速度旅行。在现有的卡车和UAV交付模型中,假设常量或无限的UAV耐力,自然结论是在更高速度下操作无人机将减少,或者对总交付时间没有不利影响。然而,实际上,UAV功耗是速度和包裹体重的非线性函数;高速飞行可以大大减少飞行范围,从而限制了这些物流系统的有效性。本文涉及速度和范围之间的权衡,在新的卡车/ UAV交付问题的新变种中,其中UAV速度被视为决策变量。提供了一种三相算法,可动态调整UAV速度以实现优越的性能,目标是最小化总递送时间(或MEPESPHAN)。结果表明,可以通过以可变速度操作无人机来实现显着的时间。此外,在某些条件下,优化的无人机速度也会导致较短的卡车行程距离,减少了每次旅行的无人机能量消耗,并且在等待与卡车的结合时减少无人机游荡。

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