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Energy Management for Electric Aircraft via Optimal Control: Cruise Phase

机译:电气飞机通过最优控制的能源管理:巡航阶段

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The demand for energy savings and reducing environmental and noise impact has lead to an unprecedented interest and rapid development of electric aircraft technology. In order to improve the efficiency of an All-Electric Aircraft (AEA) during the cruise phase, this paper formulates the corresponding energy optimization as an optimal control problem (OCP). The OCP is formulated around minimizing the so-called Direct Operating Cost (DOC), a combination of time-related and battery charge costs. It is shown that this OCP leads to a singular control structure when the thrust is taken as the control input. We then proceed to derive the analytical solution on the singular arc using the Pontryagin's Minimum Principle (PMP); moreover, the control structure and "junction" points are obtained through the numerical solver Tomlab. One of the main contributions of this work is considering the impact of the battery dynamics on the overall operating cost. In particular, by implementing the so-called Empirical Circuit Model (ECM) for the battery in our problem setup, we provide a comparative analysis on the effect of the battery modeling on the resulting optimal thrust profile.
机译:节能和降低环境和噪声影响的需求导致电气飞机技术的前所未有的兴趣和快速发展。为了提高巡航阶段期间全电机(AEA)的效率,本文将相应的能量优化配制为最佳控制问题(OCP)。在最小化所谓的直接运营成本(DOC)的情况下,可以组建OCP,与时间相关和电池充电成本的组合。结果表明,当推力被视为控制输入时,该OCP导致奇异控制结构。然后,我们使用Pontryagin的最低原理(PMP)导致奇异弧上的分析解决方案;此外,通过数值求解器Tomlab获得控制结构和“结”点。这项工作的主要贡献之一是考虑电池动力学对整体运营成本的影响。特别地,通过在我们的问题设置中实现用于电池的所谓的经验电路模型(ECM),我们为电池造型对所得最佳推力谱的影响提供了比较分析。

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