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Optimal Control Allocation for Electric Aircraft Taxi Systems: A Preliminary Study

机译:电机出租车系统的最优控制分配:初步研究

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Demonstrators and research projects about electric aircraft taxi systems testify the current interest in low- or zero-emission ground propulsion technologies to lower the overall fuel consumption and emissions of commercial flights. Electric motors fitted in the main landing gears are one of the most promising layouts for these systems especially for narrow-body commercial aircraft. From a control theory point of view, the aircraft on ground becomes an over-actuated plant through adoption of this technology, i.e. a commanded ground trajectory can be reached through different combinations of actuator efforts. A strategy is required to choose the most suitable of these combinations in order to reach the best efficiency. This work aims to investigate a strategy for an optimal control allocation during path-following of prescribed ground trajectories. While the most obvious contributor to the optimizing cost function is energy efficiency, other aspects need to be considered such as the thermal behavior of the electric motors, the availability of energy storage systems resulting in a certain possible amount of regenerative braking, and other technical and normative constraints. Preliminary simulations of trajectory tracking based on the presented concept are shown.
机译:关于电气飞机出租车系统的示威者和研究项目证明了对低排放或零排放地推进技术的目前的兴趣,以降低商业航班的整体燃料消耗和排放。安装在主着陆齿轮中的电动机是这些系统中最有前途的布局之一,特别是对于窄体商用飞机。从控制理论的角度来看,通过采用这项技术,地面上的飞机成为一个过于致动的工厂,即,可以通过不同的执行器努力的不同组合来达到指挥的地面轨迹。需要一种策略来选择最适合这些组合,以达到最佳效率。这项工作旨在调查在规定地面轨迹的路径跟踪期间的最佳控制分配的策略。虽然优化成本函数的最明显的贡献者是能效,但需要考虑其他方面,例如电动机的热行为,能量存储系统的可用性导致某种可能的再生制动量和其他技术和其他技术和其他技术和其他技术规范制约因素。显示了基于所提出的概念的轨迹跟踪的初步模拟。

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