重新设计的预测扭矩和流量控制与一个全顺序的自适应观察员和准确的离散时间模型无传感器的感应机器驱动器
Ramón Herrera-Hernández1, Carlos Reusser2, Rodrigo Carvajal1
1School of Electrical Engineering, Pontificia Universidad Católica de Valparaíso (PUCV), Av. Brasil 2147, Valparaíso, 2362804, Valparaíso, Chile.
Scientific reports
|March 10, 2026
概括
这项研究重新制定了无传感器感应机器驱动器的预测扭矩和流量控制 (PTC) 和自适应观察器. 新方法提高了准确性和动态性能,为实时应用提供了平衡的解决方案.
科学领域:
- 电气工程 电气工程
- 控制系统 控制系统
- 机器驱动器 机器驱动器
背景情况:
- 感应机的常规无传感器控制依赖于转子流量变量,使观测器设计复杂化.
- 现有的预测扭矩和流量控制 (PTC) 方案可以提高准确性和动态响应.
研究的目的:
- 重构用于感应机驱动器的预测扭矩和流量控制 (PTC) 和全序适应观察器 (FAO).
- 开发一种基于简化状态空间表示的无传感器控制策略,仅使用定子电流和流量连接.
主要方法:
- 开发了一种新的状态空间表示,重点是定子电流和流量链接.
- 使用基于泰勒和朗格-库塔的方法推导出第二级和更高级别的离散时间模型.
- 重新制定的FAO-PTC方案使用Hardware-in-the-Loop模拟进行了验证.
主要成果:
- 拟议的FAO-PTC方案实现了与传统方法相比的稳定状态性能.
- 观察到更快的短暂反应和更好的动态行为.
- 通过略微增加计算成本,实现了减少状态空间顺序.
- 基于泰勒的离散提供了最高的精度和最快的收与最小的扭矩波动.
结论:
- 重构的FAO-PTC框架在准确性,简单性和计算效率之间提供了平衡的权衡.
- 增强的观察者准确性显著提高了无传感器控制性能.
- 拟议的方法适用于实时无传感器的感应机驱动器.
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