由IMs和pmsm驱动的气体压缩机连续回路的平面度控制

IF 3.2 3区 计算机科学 Q2 AUTOMATION & CONTROL SYSTEMS
Gerasimos Rigatos, Pierluigi Siano, Bilal Sari, Mohammed AL-Numay, Masoud Abbaszadeh, Gennaro Cuccurullo
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引用次数: 0

摘要

针对三相感应电动机和三相永磁同步电动机驱动的离心式气体压缩机的控制问题,提出了一种新的基于平面度的连续回路控制方案。通过重新排列状态变量,并将im驱动的气体压缩机和pmsm驱动的气体压缩机的状态向量适当地拆分为子系统,可以得到三角形(严格反馈)形式的相关状态空间模型。对于后一种状态空间描述,可以使用链式控制回路来解决控制和稳定问题。将im驱动的气压机和pmsm驱动的气压机的状态空间模型分解为满足微分平面性的级联子系统。对于这些子系统,计算虚拟控制输入,能够反转它们的动力学并消除相关的跟踪误差。从链式状态空间描述的最后一个子系统计算控制输入,实际应用于im驱动气体压缩机和pmsm驱动气体压缩机的完整非线性形式。这些控制输入以递归的方式合并了从初始状态空间方程中包含的各个子系统计算出来的所有虚拟控制输入。通过回溯链式状态空间模型的子系统,在控制算法的每次迭代中获得了用于非线性系统的控制输入,以保证所有状态向量元素收敛于期望的设定点。该方法被证明具有全局稳定性,并确保通过im驱动的气体压缩机和pmsm驱动的气体压缩机的状态变量快速准确地跟踪参考设定点。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Flatness-Based Control in Successive Loops for Gas-Compressors Actuated by IMs and PMSMs

The article proposes a novel solution to the control problem of centrifugal gas compressors, which are driven by three-phase induction motors (IMs) and three-phase permanent magnet synchronous motors (PMSMs), through a novel flatness-based control scheme which is implemented in successive loops. By rearranging state variables and splitting suitably the state vector of the IM-driven gas-compressor and the PMSM-driven gas compressor into subsystems, one arrives at writing the associated state-space models in the triangular (strict feedback) form. For the latter state-space description, it is possible to solve the control and stabilization problem using chained control loops. The state-space model of the IM-driven gas-compressor and the PMSM-driven gas-compressor is decomposed into cascading subsystems that satisfy differential flatness properties. For these subsystems, virtual control inputs are computed, capable of inverting their dynamics and eliminating the associated tracking error. The control inputs, which are actually applied to the complete nonlinear form of the IM-actuated gas-compressor and the PMSM-actuated gas compressor, are computed from the last subsystem of the chained state-space description. These control inputs incorporate, in a recursive manner, all virtual control inputs that were computed from the individual subsystems included in the initial state-space equation. The control inputs that should be applied to the nonlinear system so as to assure that all state vector elements will converge to the desirable setpoints are obtained at each iteration of the control algorithm by tracing backwards the subsystems of the chained state-space model. The method is of proven global stability and ensures fast and accurate tracking of the reference setpoints by the state variables of the IM-driven gas compressor and of the PMSM-driven gas compressor.

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来源期刊
International Journal of Robust and Nonlinear Control
International Journal of Robust and Nonlinear Control 工程技术-工程:电子与电气
CiteScore
6.70
自引率
20.50%
发文量
505
审稿时长
2.7 months
期刊介绍: Papers that do not include an element of robust or nonlinear control and estimation theory will not be considered by the journal, and all papers will be expected to include significant novel content. The focus of the journal is on model based control design approaches rather than heuristic or rule based methods. Papers on neural networks will have to be of exceptional novelty to be considered for the journal.
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