通过事件触发的输出反来进行干扰和执行器攻击的网络系统的复合防干扰控制
IEEE transactions on cybernetics
|September 24, 2025
概括
本研究提出了一种新的复合控制方法,用于面临未知的执行器攻击和干扰的网络系统. 这种方法提高了系统稳定性,并通过事件触发和自适应模糊逻辑控制减少了数据传输.
科学领域:
- 控制系统工程 控制系统工程
- 网络化系统 网络化系统
- 适应性控制控制是适应性的
背景情况:
- 网络系统面临来自未知的执行器攻击和外部干扰的挑战.
- 现有的控制方法可能会受到过度数据传输和有限的干扰排斥的影响.
- 需要强有力的控制策略,以确保系统稳定性和在逆境条件下的性能.
研究的目的:
- 为网络系统制定综合的反干扰和攻击控制战略.
- 使用双端事件触发机制来减少数据传输.
- 估计和补偿未知的干扰和攻击.
主要方法:
- 设计一个双端事件触发机制,以实现高效的数据传输.
- 增强观察器的开发,用于状态和干扰估计.
- 利用模糊逻辑系统来近似未知的攻击信号和自适应输出反控制.
主要成果:
- 一个基于采样实时的新功能被构建来分析系统的局限性.
- 为半全球统一的终极界限性衍生出低保守主义标准条件.
- 事件触发矩阵和控制器收益是明确使用矩阵转换解决的.
结论:
- 拟议的复合控制方法有效地减轻了未知的执行器攻击和外部干扰.
- 事件触发机制显著减少数据传输,同时保持系统稳定性.
- 在视觉伺服控制系统和第三级系统上的模拟验证证实了该方法的可行性和有效性.
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