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首页> 外文期刊>IEEE Transactions on Industrial Electronics >Stability-Constraining-Dichotomy-Solution-Based Model Predictive Control to Improve the Stability of Power Conversion System in the MEA
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Stability-Constraining-Dichotomy-Solution-Based Model Predictive Control to Improve the Stability of Power Conversion System in the MEA

机译:基于稳定性约束二分法解决方案的模型预测控制,提高MEA中功率转换系统的稳定性

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摘要

AC cascaded system is one of the basic components of the power conversion system in the modern more-electric aircraft (MEA). However, the ac cascaded system suffers from an instability problem, i.e., even if each subsystem is stable individually, the formed cascaded system may become unstable. Most of the existing stabilization methods are a linear control method, which is based on a small signal model and can only ensure small signal stability near the operation point in theory. Therefore, these existing linear stabilization methods may be ineffective to fix large-signal stability issues. In this paper, a large signal stability constraining dichotomy solution (SCDS)-based model predictive control (MPC) is proposed to improve the stability of the ac cascaded system in the MEA by the Lyapunov criteria. This approach first theoretically presents how to add the system stability item to the MPC cost function in an analytic way instead of using the traditional "experience-based" weight method. Besides, the SCDS-MPC itself is also an improvement to the existing finite control set MPC. It can realize a constant switching frequency and achieve better steady-state/dynamic current control performance. Finally, a 1.5 kW ac cascaded system is fabricated in the laboratory to verify the proposed SCDS-MPC method.
机译:交流级联系统是现代多电飞机(MEA)中电源转换系统的基本组件之一。但是,交流级联系统存在不稳定问题,即,即使每个子系统单独稳定,所形成的级联系统也可能变得不稳定。现有的大多数稳定方法都是基于小信号模型的线性控制方法,从理论上讲只能保证小信号在工作点附近的稳定性。因此,这些现有的线性稳定方法可能无法有效解决大信号稳定性问题。本文提出了一种基于大信号稳定性约束二分法(SCDS)的模型预测控制(MPC),以根据Lyapunov准则提高MEA中的ac级联系统的稳定性。该方法首先从理论上介绍了如何以解析方式将系统稳定性项添加到MPC成本函数,而不是使用传统的“基于经验”的权重方法。此外,SCDS-MPC本身也是对现有有限控制集MPC的改进。它可以实现恒定的开关频率,并获得更好的稳态/动态电流控制性能。最后,在实验室中制造了一个1.5 kW的交流级联系统,以验证所提出的SCDS-MPC方法。

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