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Fault Tolerant Control of a Blended Wing Body Aircraft using Priority Weighted Control Allocation and Sliding Modes

机译:使用优先级加权控制分配和滑动模式的混合翼体飞机的容错控制

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With far greater fuel economy and reduced noise, the Blended Wing Body is an efficient alternative to the conventional aircraft layout which, up to this point in time, has dominated commercial aviation. However, the combination of highly coupled effectors, limited control authority, poor intrinsic stability and significant mechanical redundancy results in a complex control problem. This paper proposes a sliding mode controller with priority weighted control allocation to handle the mechanical redundancy and coupling of the controls. Furthermore, in the presence of imprecisely known actuator faults and failures, the controller is designed to reconfigure and reduce degradation in the systems performance. Simulation results from a non-linear 6-DOF model demonstrate the controller's effectiveness in faulty flight conditions.
机译:燃料经济性远远较大,噪音降低,混纺机翼体是传统飞机布局的有效替代方案,这一点达到了这一点,已经主导了商业航空。然而,高耦合效应器,有限的控制权,内在稳定性差和显着的机械冗余的组合导致复杂的控制问题。本文提出了一种具有优先权加权控制分配的滑模控制器,以处理控制的机械冗余和耦合。此外,在不均匀的已知的执行器故障和故障存在下,控制器旨在重新配置和减少系统性能的降低。非线性6-DOF模型的仿真结果展示了控制器在出现错误的飞行条件下的有效性。

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