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An Analytical Design-Optimization Method for Electric Propulsion Systems of Multicopter UAVs With Desired Hovering Endurance

机译:期望悬停力的多直升机无人机电力推进系统的分析优化设计方法

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摘要

Multicopters are becoming increasingly important both in civil and military fields. Currently, most multicopter propulsion systems are designed by experience and trial-and-error experiments, which are costly and ineffective. This paper proposes a simple and practical method to help designers find the optimal propulsion system according to the given design requirements. First, the modeling methods for four basic components of the propulsion system including propellers, motors, electric speed controls, and batteries are studied, respectively. Second, the whole optimization design problem is simplified and decoupled into several subproblems. By solving these subproblems, the optimal parameters of each component can be obtained, respectively. Finally, based on the obtained optimal component parameters, the optimal product of each component can be quickly located and determined from the corresponding database. Experiments and statistical analyses demonstrate the effectiveness of the proposed method. The proposed method is so fast and practical that it has been successfully applied to a web server to provide online optimization design service for users.
机译:多直升机在民用和军事领域都变得越来越重要。当前,大多数多旋翼推进系统是通过经验和反复试验设计的,它们既昂贵又无效。本文提出了一种简单实用的方法,以帮助设计人员根据给定的设计要求找到最佳的推进系统。首先,分别研究了推进系统的四个基本组成部分的建模方法,包括螺旋桨,电动机,电调速器和电池。第二,简化了整个优化设计问题,并将其分解为几个子问题。通过解决这些子问题,可以分别获得每个组件的最佳参数。最后,基于获得的最佳组件参数,可以快速找到每个组件的最佳产品并从相应的数据库中确定。实验和统计分析证明了该方法的有效性。该方法快速实用,已成功应用于Web服务器,为用户提供在线优化设计服务。

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