计算机科学
趋同(经济学)
控制理论(社会学)
上下界
共识
残余物
控制系统
能源消耗
同步(交流)
模糊逻辑
能量(信号处理)
控制工程
收敛速度
非线性系统
跟踪误差
自适应系统
观察员(物理)
共识理论
模糊控制系统
群体行为
稳健性(进化)
新颖性
分散系统
高效能源利用
多智能体系统
期限(时间)
分布式发电
自适应控制
鲁棒控制
国家观察员
反推
作者
Zeyi Liu,Huaguang Zhang,Jiayue Sun,Zhihong Liang
标识
DOI:10.1109/tfuzz.2026.3653681
摘要
This paper proposes an innovative Energy-Efficiency-Aware Fixed-Time (EEAFT) control strategy for distributed permanent-magnet synchronous motor systems. The primary contribution is achieving rapid, precise speed consensus while effectively balancing energy consumption against consensus error, a challenge often overlooked in fixed-time (FxT) control designs. A key novelty lies in the introduction of a real-time reward mechanism, uniquely derived from low-pass filtering both the system's consensus error and the control input signals. This adaptive reward function dynamically adjusts the upper bound on convergence time. When the convergence time becomes excessively stringent, a substantial increase in control effort is required. This can lead to energy spikes and hardware overload. To mitigate these risks, the bound on convergence time is then relaxed. Conversely, when large consensus errors necessitate an accelerated response, the bound on convergence time is tightened to expedite error correction. To enhance robustness against unmodeled friction, winding losses, and external disturbances, a fuzzy logic system is employed to approximate unknown nonlinear dynamics, while a disturbance observer compensates for residual errors. Rigorous theoretical analysis confirms the boundedness of all system signals and guarantees FxT convergence under the proposed EEAFT framework. Extensive experimental results demonstrate the effectiveness and superiority of the EEAFT-based controller, showcasing high-precision speed synchronization across multiple motors and achieving an improved trade-off between rapid transient response and overall energy efficiency.
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