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Relaxed Real-Time Scheduling Stabilization of Discrete-Time Takagi–Sugeno Fuzzy Systems via An Alterable-Weights-Based Ranking Switching Mechanism

机译:Takagi-Sugeno模糊系统基于权重可变的排序切换机制的实时松弛调度稳定

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摘要

The problem of relaxed real-time scheduling stabilization of nonlinear systems in the Takagi–Sugeno fuzzy model form is studied by proposing a new alterable-weights-based ranking switching mechanism. Thanks to the proposed alterable-weights-based ranking switching mechanism, a new fuzzy switching controller is developed with a set of activated modes that are adjusted by the real-time joint distribution of normalized fuzzy weighting functions. It is worth noting that those existing real-time scheduling stabilization results can be improved without introducing additional offline computational burden while solving control gain matrices. More importantly, less conservative stabilization conditions lead to a smaller degree of the fuzzy homogenous polynomially parameter-dependent switching controller, and thus, less online computational burden is required in the actual application. The effectiveness and superiority of the proposed method are verified by two simulation examples in the numerical section.
机译:通过提出一种新的基于变权重的等级切换机制,研究了以Takagi-Sugeno模糊模型形式的非线性系统的实时松弛调度稳定问题。由于提出了基于可变权重的排名切换机制,因此开发了一种新的模糊切换控制器,该控制器具有一组激活模式,这些激活模式可以通过归一化模糊加权函数的实时联合分布进行调整。值得注意的是,在解决控制增益矩阵时,无需引入额外的离线计算负担就可以改善那些现有的实时调度稳定结果。更重要的是,较少的保守稳定条件导致模糊均质多项式参数相关开关控制器的程度较小,因此,在实际应用中需要较少的在线计算负担。数值部分的两个仿真例子验证了该方法的有效性和优越性。

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