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Hierarchical switching for active disturbance attenuation with fine controller tuning

机译:通过精细的控制器调整进行分级切换,以主动衰减干扰

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摘要

In this paper, a novel adaptive disturbance attenuation algorithm is proposed combining switching and tuning. A two-level hierarchical switching logic is developed, which first selects in a short time the potentially best controller among a finite pre-designed family and then performs a local refinement of its attenuation capability. Thanks to the controller fine tuning, the proposed technique is able to provide a substantial performance improvement in terms of attenuation level as compared with a pure adaptive switching control scheme; at the same time, it retains the positive features of switching-based approaches, in particular, concerning the possibility of rapidly achieving a satisfactory behavior. Further, an arbitrary attenuation level is ensured in the presence of particular classes of disturbances and provided that it is compatible with robust stability requirement. Simulation results are shown to underline the potential of the approach as a solution to the problem. Copyright (c) 2016 John Wiley & Sons, Ltd.
机译:本文提出了一种结合切换和调谐的新型自适应干扰衰减算法。开发了一种两级分层切换逻辑,该逻辑首先在短时间内从有限的预先设计的系列中选择可能最佳的控制器,然后对其衰减能力进行局部优化。由于控制器的微调,与纯自适应开关控制方案相比,所提出的技术能够在衰减水平方面提供实质性的性能改进;同时,它保留了基于切换的方法的积极特性,特别是关于快速实现令人满意的行为的可能性。此外,在存在特定类别的干扰的情况下,可以确保任意衰减水平,并且该衰减水平应符合鲁棒的稳定性要求。仿真结果表明,该方法可以解决该问题。版权所有(c)2016 John Wiley&Sons,Ltd.

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