Enhanced Control Mechanisms in Autonomous Systems: Integrating Fuzzy Logic with PID Controllers

Yuhao Ling · Highlights in Science Engineering and Technology · 2024

The integration of Fuzzy Logic with Proportional-Integral-Derivative (PID) controllers in autonomous systems presents a significant advancement in control mechanisms, offering both adaptability and robustness. This paper delves into the key advantages of this hybrid approach, providing a thorough analysis of its implementation. Fuzzy Logic enhances the conventional PID controller by introducing a layer of reasoning that mimics human decision-making, allowing for better handling of uncertainties and nonlinearities in the system. Several common applications of fuzzy control are discussed, demonstrating its versatility in various domains such as robotics, automotive systems, and industrial automation. The integration of Fuzzy Logic with PID controllers is particularly beneficial in environments where precise control is required despite the presence of dynamic and unpredictable conditions. This hybrid approach ensures smoother transitions, reduced overshoot, and improved stability, making it ideal for complex autonomous systems. The paper provides a detailed explanation of how Fuzzy Logic complements the traditional PID framework, enhancing its performance and flexibility. By adjusting the PID parameters in real-time based on fuzzy rules, the controller can adapt to changing conditions more effectively, leading to superior control performance. This comprehensive analysis underscores the potential of integrating Fuzzy Logic with PID controllers, paving the way for more intelligent and responsive autonomous systems.

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