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Optimization control of multi-source microwave heating based on variable-excitation group switching under a thermal-field dwell mechanism
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DOI:10.1016/j.csite.2026.108356.png)
Abstract
En 中文
• A distributed multi-agent microwave excitation system is developed with dynamic topology reconfiguration, enabling coordinated power output and structural flexibility. • A thermal-field dwell mechanism is proposed to guide switching processes, leveraging local thermal response characteristics for sustained heating performance optimization. • The model-dependent average dwell time (MDADT) strategy is introduced, and Lyapunov-LMI-based switching laws are derived to ensure system stability during dynamic combination changes. • A multi-objective evaluation framework is established by integrating temperature uniformity and thermal efficiency metrics, enabling optimal heating combination selection.
Keywords:
Microwave heating
Thermal-field dwell mechanism
Multi-agent
Topology reconfiguration
MDADT
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