论文标题
综合监督自适应控制量更多的电动飞机
Integrated Supervised Adaptive Control for the More Electric Aircraft
论文作者
论文摘要
电飞机的创新概念是一个涉及不同控制目标的具有挑战性的话题。例如,通过在某些操作阶段使用电池作为辅助发电机,可以减少发电机的大小和重量。但是,具有不同目标的控制策略可能是矛盾的,它们可能会产生不良影响,甚至不稳定。因此,需要一种集成的设计方法,在任何配置中都可以保证稳定性。换句话说,监督控制器的设计必须与低级控制器的设计相结合。此外,不确定性和嘈杂的信号需要强大的控制技术以及在控制算法中使用适应性。在本文中,解决了旨在充电电池并使用电池来承受发电机过载的航空应用程序。为任何控制配置提供了详细且严格的稳定性证明,包括不同控制目标之间的切换阶段。通过使用详细的模拟器(包括转换电子组件),显示了提出策略的有效性。
The innovative concept of Electric Aircraft is a challenging topic involving different control objectives. For instance, it becomes possible to reduce the size and the weight of the generator by using the battery as an auxiliary generator in some operation phases. However, control strategies with different objectives can be conflicting and they can produce undesirable effects, even instability. For this reason an integrated design approach is needed, where stability can be guaranteed in any configuration. In other words, the design of the supervisory controller must be interlaced with that of low-level controllers. Moreover, uncertainties and noisy signals require robust control techniques and the use of adaptiveness in the control algorithm. In this paper, an aeronautic application aiming at recharging batteries and to use the battery to withstand generator overloads is addressed. Detailed and rigorous stability proofs are given for any control configuration, including the switching phases among different control objectives. Effectiveness of the proposed strategies is shown by using a detailed simulator including switching electronic components.