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Advanced PID Tuning
Descrizione in inglese
Learn how robots use mathematical feedback loops to move accurately, smoothly, and reliably.A robot motor command does not always produce the same result. Battery voltage changes, wheels slip, loads vary, friction increases, and mechanical parts wear over time. Without feedback control, robots can drift, overshoot, shake, or fail to reach their targets.Advanced PID Tuning teaches you how to design, tune, test, and improve PID controllers for robotic systems using practical examples, clear mathematics, and real-world engineering methods.This book explains how robots compare desired movement with actual sensor measurements, calculate errors, and automatically adjust their behaviour. You will learn how proportional, integral, and derivative control work together to create stable motion.Inside this practical guide, you will learn how to:Understand feedback control and why robots require closed-loop systemsWork with setpoints, measurements, errors, and correction signalsUnderstand proportional, integral, and derivative actionsCalculate PID outputs using practical mathematical examplesConvert PID equations into software-based controllersPrepare motors, sensors, and robotic systems for successful tuningSelect sampling rates, record test data, and create repeatable experimentsTune PID controllers manually step by stepUse formal tuning methods including Ziegler-Nichols and Cohen-Coon approachesRead step responses and evaluate rise time, overshoot, settling time, and steady-state errorProgram digital PID controllers using Python conceptsCreate reusable PID control classes and logging systemsPrevent integral windup and output saturation problemsHandle sensor noise, measurement delays, and unstable timingDesign cascaded PID systems for position and speed controlCombine feedforward control with PID correctionTune multi-axis robots, mobile robots, and robotic armsUse gain scheduling and adaptive tuning methods for changing conditionsDiagnose poor controller behaviour and validate final tuning resultsThe book builds PID knowledge from fundamentals to advanced applications. You will progress from understanding feedback loops to tuning complete robotic systems, including motor-speed controllers, differential-drive robots, robot arms, balancing robots, camera platforms, and other automated machines.No previous control engineering expertise is required. Complex concepts are introduced gradually using practical explanations, calculations, examples, and engineering intuition.Whether you are a robotics student, embedded systems developer, automation engineer, researcher, or maker, this book provides the foundation needed to create smoother and more accurate robotic motion.Master PID tuning, understand robotic feedback systems, and develop controllers that help machines move with precision and stability.
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