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首页> 外文期刊>Transactions of the Institute of Measurement and Control >A Min-Max selector controller for turbofan engines with improvement of limit management and low computational burden
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A Min-Max selector controller for turbofan engines with improvement of limit management and low computational burden

机译:用于涡轮机发动机的MIN-MAX选择器控制器,提高了极限管理和低计算负担

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Recent studies show that there is no guarantee for conventional Min-Max structure containing linear compensators to keep engine limitations in transient state, while limit violation can make dangerous events. Careful analysis indicates that despite the design of limitation loops overshoot-free to reduce the possibility of limit violation, exceeding the limits can occur for some variables affected by engine acceleration or deceleration, when other loop controllers are active. In this study, the limit values of these variables are taken into account in controller design of other loops using state feedback techniques and convex optimization problems, and their dynamic compensators are removed from the Min-Max structure. Thus, in addition to improvement of Min-Max limit protection, computational burden also decreases owing to loop reduction. The condition for limit protection in steady state and thrust tracking assurance is also specified. Simulations carried out with linear and nonlinear turbofan engine model show efficient performance of the proposed methodology in comparison with traditional Min-Max and Min-Max/sliding mode control (SMC) approaches.
机译:最近的研究表明,没有保证包含线性补偿器的传统最小结构,以保持瞬态状态下的发动机限制,而限制违规可能会产生危险事件。仔细分析表明,尽管在无自由过度的限制循环设计的情况下,但是由于发动机加速或减速的一些变量,可能发生超过限制的可能性,当其他环路控制器处于活动状态时,可能会出现超出限制。在本研究中,使用状态反馈技术和凸优化问题的其他环路控制器设计中,考虑了这些变量的极限值,并且它们的动态补偿器从最小最大结构中移除。因此,除了改善最小极限保护之外,由于环路降低,计算负担也会降低。还指定了稳态保护的限制保护条件和推力跟踪保证。使用线性和非线性涡轮机发动机模型进行的模拟显示了与传统的MIN-MAX和MIN-MAX /滑动模式控制(SMC)方法相比,所提出的方法的有效性能。

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