Adaptive P Control and Adaptive Fuzzy Logic Controller with Expert System Implementation for Robotic Manipulator Application

Phichitphon Chotikunnan, Yutthana Pititheeraphab

Abstract


This study aims to develop an expert system implementation of P controller and fuzzy logic controller to address issues related to improper control input estimation, which can arise from incorrect gain values or unsuitable rule-based designs. The research focuses on improving the control input adaptation by using an expert system to resolve the adjustment issues of the P controller and fuzzy logic controller. The methodology involves designing an expert system that captures error signals within the system and adjusts the gain to enhance the control input estimation from the main controller. In this study, the P controller and fuzzy logic controller were regulated, and the system was tested using step input signals with small values and larger than the saturation limit defined in the design. The PID controller used CHR tuning to least overshoot, determining the system's gain. The tests were conducted using different step input values and saturation limits, providing a comprehensive analysis of the controller's performance. The results demonstrated that the adaptive fuzzy logic controller performed well in terms of %OS and settling time values in system control, followed by the fuzzy logic controller, adaptive P controller, and P controller. The adaptive P controller showed similar control capabilities during input saturation, as long as it did not exceed 100% of the designed rule base. The study emphasizes the importance of incorporating expert systems into control input estimation in the main controller to enhance the system efficiency compared to the original system, and further improvements can be achieved if the main processing system already possesses adequate control ability. This research contributes to the development of more intelligent control systems by integrating expert systems with P controllers and fuzzy logic controllers, addressing the limitations of traditional control systems and improving their overall performance.

Keywords


Robotic; PID control; Fuzzy logic; Dynamic model

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E. S. Ghith and F. A. A. Tolba, "Design and optimization of PID controller using various algorithms for micro-robotics system," Journal of Robotics and Control (JRC), vol. 3, no. 3, pp. 244-256, 2022.

A. K. Hado, B. S. Bashar, M. M. A. Zahra, R. Alayi, Y. Ebazadeh, and I. Suwarno, "Investigating and optimizing the operation of microgrids with intelligent algorithms," Journal of Robotics and Control (JRC), vol. 3, no. 3, pp. 279-288, 2022.

E. H. Kadhim and A. T. Abdulsadda, "Mini drone linear and nonlinear controller system design and analyzing," Journal of Robotics and Control (JRC), vol. 3, no. 2, pp. 212-218, 2022.

J. An, F. You, M. Wu, and J. She, "Iterative learning control for nonlinear weighing and feeding process," Mathematical Problems in Engineering, pp. 1-9, 2018, doi: 10. 1155/2018/9425902.

Li, J. Liu, L. Wang, K. Wang, and Y. Li, "Welding process tracking control based on multiple model iterative learning control," Mathematical Problems in Engineering, 2019, doi: 10. 1155/2019/6137352.

M. A. Hadj-Abdelkader, G. Bourhis, and B. Cherki, “Haptic feedback control of a smart wheelchair,” Applied Bionics and Biomechanics, vol. 9, no. 2, pp. 181-192, 2012.

D. Kumar, R. Malhotra, and S. R. Sharma, "Design and construction of a smart wheelchair, " Procedia Computer Science, vol. 172, pp. 302-307, 2020.

A. Sharmila, A. Saini, S. Choudhary, T. Yuvaraja, and S. G. Rahul, "Solar Powered Multi-Controlled Smart Wheelchair for Disabled: Development and Features," Journal of Computational and Theoretical Nanoscience, vol. 16, no. 11, pp. 4889-4900, 2019.

K. Sukerkar, D. Suratwala, A. Saravade, J. Patil, and R. D’britto, "Smart wheelchair: a literature review, " Mental Retardation, vol. 5, no. 5. 4, pp. 5-6, 2018.

K. Ajithraj, P. S. Sandeep, E. K. Vipin, K. Harishankar, and M. P. Jijeesh, "Smart Wheelchair Controlled by Brain Waves," Journal Of Electronics And Communication Engineering, vol. 15, 2015.

K. Rahimunnisa, M. Atchaiya, B. Arunachalam, and V. Divyaa, "AI-based smart and intelligent wheelchair," Journal of applied research and technology, vol. 18, no. 6, pp. 362-367, 2020.

M. R. Islam, M. R. T. Hossain, and S. C. Banik, “Synchronizing of stabilizing platform mounted on a two-wheeled robot,” Journal of Robotics and Control (JRC), vol. 2, no. 6, pp. 552-558, 2021.

C. Iwendi, M. A. Alqarni, J. H. Anajemba, A. S. Alfakeeh, Z. Zhang, and A. K. Bashir, "Robust navigational control of a two-wheeled self-balancing robot in a sensed environment," IEEE Access, vol. 7, pp. 82337-82348, 2019.

F. A. Raheem, B. F. Midhat, and H. S. Mohammed, "PID and fuzzy logic controller design for balancing robot stabilization," Iraqi Journal of Computers, Communications, Control and Systems Engineering, vol. 18, no. 1, pp. 1-10, 2018.

F. Jiménez, I. Ruge, and A. Jiménez, "Modeling and Control of a Two Wheeled Self-Balancing Robot: a didactic platform for control engineering education," LACCEI Inc., 2020.

Gandarilla, V. Santibañez, and J. Sandoval, "Control of a self-balancing robot with two degrees of freedom via IDA-PBC," ISA transactions, vol. 88, pp. 102-112, 2019.

Y. Su, T. Wang, K. Zhang, C. Yao, and Z. Wang, "Adaptive nonlinear control algorithm for a self-balancing robot," IEEE Access, vol. 8, pp. 3751-3760, 2019.

T. Terakawa, M. Komori, K. Matsuda, and S. Mikami, “A Novel Omnidirectional Mobile Robot With Wheels Connected by Passive Sliding Joints,” IEEE/ASME Trans. Mechatronics, vol. 23, no. 4, pp. 1716–1727, Aug. 2018.

P. Shen, X. Zhang, and Y. Fang, “Complete and Time-Optimal PathConstrained Trajectory Planning With Torque and Velocity Constraints: Theory and Applications,” IEEE/ASME Trans. Mechatronics, vol. 23, no. 2, pp. 735–746, Apr. 2018.

M. A. Al Mamun, M. T. Nasir, and A. Khayyat, “Embedded System for Motion Control of an Omnidirectional Mobile Robot,” IEEE Access, vol. 6, no. 8, pp. 86722–6739, 2018.

M. Ferro, A. Paolillo, A. Cherubini, and M. Vendittelli, “VisionBased Navigation of Omnidirectional Mobile Robots, ” IEEE Robot. Autom. Lett., vol. 4, no. 3, pp. 2691–2698, Jul. 2019.

B. A. Gebre and K. V. Pochiraju, “Machine Learning Aided Design and Analysis of a Novel Magnetically Coupled Ball Drive,” IEEE/ASME Trans. Mechatronics, vol. 24, no. 5, pp. 1942–1953, Oct. 2019.

A. Dhyani, M. K. Panda, and B. Jha, "Moth-flame optimization-based fuzzy-PID controller for optimal control of active magnetic bearing system," Iranian journal of science and technology, transactions of electrical engineering, vol. 42, no. 4, pp. 451-463, 2018.

A. Ma'arif and A. Çakan, "Simulation and arduino hardware implementation of dc motor control using sliding mode controller," Journal of Robotics and Control (JRC), vol. 2, no. 6, pp. 582

A. Ma'arif and N. R. Setiawan, "Control of DC motor using integral state feedback and comparison with PID: simulation and Arduino implementation," Journal of Robotics and Control (JRC), vol. 2, no. 5, pp. 456-461, 2021.

B. Hekimoğlu, "Optimal Tuning of Fractional Order PID Controller for DC Motor Speed Control via Chaotic Atom Search Optimization Algorithm," IEEE Access, vol. 7, pp. 38100-38114, 2019.

Latif, A. Z. Arfianto, H. A. Widodo, R. Rahim, and E. T. Helmy, "Motor DC PID System Regulator for Mini Conveyor Drive Based on MATLAB," Journal of Robotics and Control (JRC), vol. 1, no. 6, pp. 185-190, 2020.

H. Maghfiroh, A. Ramelan, and F. Adriyanto, "Fuzzy-PID in BLDC motor speed control using MATLAB/Simulink," Journal of Robotics and Control (JRC), vol. 3, no. 1, pp. 8-13, 2022.

S. Gobinath and M. Madheswaran, "Deep Perceptron Neural Network with Fuzzy PID Controller for Speed Control and Stability Analysis of BLDC Motor," Soft Computing, vol. 24, no. 13, pp. 10161-10180, 2020.

K. Vanchinathan and N. Selvaganesan, "Adaptive Fractional Order PID Controller Tuning for Brushless DC Motor Using Artificial Bee Colony Algorithm, " Results in Control and Optimization, vol. 4, 2021.

P. Dutta and S. K. Nayak, "Grey Wolf Optimizer Based PID Controller for Speed Control of BLDC Motor," Journal of Electrical Engineering & Technology, vol. 16, no. 2, pp. 955-961, 2021

Y. Li, K. H. Ang, and G. C. Chong, "PID control system analysis and design," IEEE Control Systems Magazine, vol. 26, no. 1, pp. 32-41, 2006. doi: 10. 1109/MCS. 2006. 1580152.

S.K. Mallempati, G. Satheesh, and S. Peddakotla, "Design of optimal PI controller for torque ripple minimization of SVPWM-DTC of BLDC motor," International Journal of Power Electronics and Drive Systems, vol. 14, no. 1, pp. 283, 2023.

R. P. Borase, D. K. Maghade, S. Y. Sondkar, and S. N. Pawar, “A review of PID control, tuning methods and applications,” International Journal of Dynamics and Control, vol. 9, no. 2, pp. 818-827, 2021.

T. Chao, N. Sutarna, J. S. Chiou, and C. J. Wang, “An optimal fuzzy PID controller design based on conventional PID control and nonlinear factors,” Applied Sciences, vol. 9, no. 6, pp. 1224, 2019.

Somwanshi, M. Bundele, G. Kumar, and G. Parashar, "Comparison of Fuzzy-PID and PID Controller for Speed Control of DC Motor Using LabVIEW, " in Procedia Computer Science, vol. 152, pp. 252-260, 2019.

S. J. Hammoodi, K. S. Flayyih, and A. R. Hamad, "Design and Implementation of Speed Control System for DC Motor Based on PID Control and Matlab Simulink," International Journal of Power Electronics and Drive Systems, vol. 11, no. 1, pp. 127, 2020.

V. V. Patel, "Ziegler-Nichols Tuning Method," Resonance, vol. 25, no. 10, pp. 1385-1397, 2020.

R. R. Alla, N. Lekyasri, and K. Rajani, "PID Control Design for Second Order Systems," Int. J. Eng. Manuf, vol. 9, no. 4, pp. 45-56, 2019.

Bashier and O. Mohammed, "Optimally Tuned Proportional Integral Derivatives (PID) Controllers for Set-Point," Journal of Engineering and Computer Science (JECS), vol. 13, no. 1, pp. 48-53, 2019.

T. Y. Wu, Y. Z. Jiang, Y. Z. Su, and W. C. Yeh, "Using Simplified Swarm Optimization on Multiloop Fuzzy PID Controller Tuning Design for Flow and Temperature Control System," Applied Sciences, vol. 10, no. 23, pp. 8472, 2020.

C. Dalen and D. Di Ruscio, "Performance optimal PI controller tuning based on integrating plus time delay models," Algorithms, vol. 11, no. 6, pp. 86, 2018.

S. Jain and Y. V. Hote, "Design of FOPID Controller Using BBBC via ZN Tuning Approach: Simulation and Experimental Validation," IETE Journal of Research, vol. 68, no. 5, pp. 3356-3370, 2022.

S. Kai-bo, H. Jian, and L. Lin-tao, "A New Method of DC Motor Speed Regulation based on STM32," Journal of Astronautic Metrology and Measurement, vol. 38, no. 2, pp. 87, 2018.

N. A. Rao and C. R. Kumar, "Speed Control of Brushless Dc Motor by Using PID and Fuzzy Logic Controller," 2019.

P. Saini and C. Sharma, "Comparative Analysis of Controller Tuning Techniques for Dead Time Processes," International Journal of Mathematical, Engineering and Management Sciences, vol. 4, no. 3, pp. 803, 2019.

E. Kesavan, K. M. Junaid, and B. Jaison, "Design and Analysis of Different Tuning Strategies of PI Controller for Distillation Column, " International Journal of Control Systems and Robotics, vol. 4, 2019

V. Dubey, "Comparative Analysis of PID Tuning Techniques for Blood Glucose Level of Diabetic Patient, " Turkish Journal of Computer and Mathematics Education (TURCOMAT), vol. 12, no. 11, pp. 2948-2953, 2021.

A. O. Amole, O. E. Olabode, D. O. Akinyele, and S. G. Akinjobi, "Optimal Temperature Control Scheme for Milk Pasteurization Process Using Different Tuning Techniques for a Proportional Integral Derivative Controller," Iranian Journal of Electrical and Electronic Engineering, vol. 2170, pp. 2170-2170, 2022.

S. Mahfoud, A. Derouich, N. El Ouanjli, M. El Mahfoud, and M. Taoussi, "A New Strategy-Based PID Controller Optimized by Genetic Algorithm for DTC of the Doubly Fed Induction Motor," Systems, vol. 9, no. 2, p. 37, 2021.

M. M. Nishat, F. Faisal, A. J. Evan, M. M. Rahaman, M. S. Sifat, and H. F. Rabbi, "Development of Genetic Algorithm (GA) Based Optimized PID Controller for Stability Analysis of DC-DC Buck Converter," Journal of Power and Energy Engineering, vol. 8, no. 09, p. 8, 2020.

H. Feng, C. B. Yin, W. W. Weng, W. Ma, J. J. Zhou, W. H. Jia, and Z. L. Zhang, "Robotic excavator trajectory control using an improved GA based PID controller," Mechanical Systems and Signal Processing, vol. 105, pp. 153-168, 2018.

E. S. Rahayu, A. Ma’arif, and A. Çakan, "Particle Swarm Optimization (PSO) Tuning of PID Control on DC Motor," International Journal of Robotics and Control Systems, vol. 2, no. 2, pp. 435-447, 2022.

Z. Qi, Q. Shi, and H. Zhang, "Tuning of Digital PID Controllers Using Particle Swarm Optimization Algorithm for a CAN-Based DC Motor Subject to Stochastic Delays," IEEE Transactions on Industrial Electronics, vol. 67, no. 7, pp. 5637-5646,

A. Shuraiji and S. Shneen, "Fuzzy Logic Control and PID Controller for Brushless Permanent Magnetic Direct Current Motor: A Comparative Study," Journal of Robotics and Control (JRC), vol. 3, no. 6, pp. 762-768, 2022, doi: 10.18196/jrc.v3i6.15974.

J. Zhou and Q. Zhang, "Adaptive fuzzy control of uncertain robotic manipulator," Mathematical Problems in Engineering, 2018, doi: 10. 1155/2018/4703492.

Elmogy, Y. Bouteraa, and W. Elawady, "An adaptive fuzzy self-tuning inverse kinematics approach for robot manipulators," Journal of Control Engineering and Applied Informatics, vol. 22, no. 4, pp. 43-51, 2020.

Z. Dachang, D. Baolin, Z. Puchen, and C. Shouyan, "Constant force PID control for robotic manipulator based on fuzzy neural network algorithm," Complexity, vol. 2020, 2020. doi: 10. 1155/2020/3491845.

Li, Y. Tan, J. Chen, X. Liu, and S. Yang, "Precise active seeding downforce control system based on fuzzy PID, " Mathematical Problems in Engineering, vol. 2020, 2020, doi: 10. 1155/2020/5123830.

R. Kristiyono and W. Wiyono, "Autotuning Fuzzy PID Controller for Speed Control of BLDC Motor," Journal of Robotics and Control, vol. 2, no. 5, pp. 400-407, 2021.

K. Lee, D. Y. Im, B. Kwak, and Y. J. Ryoo, "Design of fuzzy-PID controller for path tracking of mobile robot with differential drive," International Journal of Fuzzy Logic and Intelligent Systems, vol. 18, no. 3, pp. 220-228, 2018.

M. J. Mohamed and M. Y. Abbas, "Design of a Fuzzy PID Controller for Trajectory Tracking of a Mobile Robot," Engineering and Technology Journal, vol. 36, no. 1, pp. 100-110, 2018.

K. Eltag, M. S. Aslamx, and R. Ullah, "Dynamic Stability enhancement using fuzzy PID control technology for power system," International Journal of Control, Automation and Systems, vol. 17, pp. 234-242, 2019.

M. Rabah, A. Rohan, Y. J. Han, and S. H. Kim, "Design of fuzzy-PID controller for quadcopter trajectory-tracking," International Journal of Fuzzy Logic and Intelligent Systems, vol. 18, no. 3, pp. 204-213, 2018.

A. K. Singholi and D. Agarwal, "Review of Expert System and its Application in Robotics," in Intelligent Communication, Control and Devices: Proceedings of ICICCD 2017, Springer Singapore, pp. 1253-1265, 2018.

O. Varlamov, "“Brains” for Robots: Application of the Mivar Expert Systems for Implementation of Autonomous Intelligent Robots," Big Data Research, vol. 25, p. 100241, 2021.

Z. Jing, "Application and Study of Expert PID Intelligent Control," IOP Conference Series: Materials Science and Engineering, vol. 563, no. 4, p. 042084, Jul. 2019.

A. Anand, E. Mamatha, C.S. Reddy, and M. Prabha, "Design of neural network based expert system for automated lime kiln system," Journal Européen des Systèmes Automatisés, vol. 52, no. 4, pp. 369-376, 2019.

M. Tavana and V. Hajipour, "A practical review and taxonomy of fuzzy expert systems: methods and applications," Benchmarking: An International Journal, vol. 27, no. 1, pp. 81-136, 2020.

Gupta and A.K. Ahlawat, "Taxonomy of GUM and usability prediction using GUM multistage fuzzy expert system," Int. Arab J. Inf. Technol., vol. 16, no. 3, pp. 357-363, 2019.

S. Thaker and V. Nagori, "Analysis of fuzzification process in fuzzy expert system," in Procedia Computer Science, vol. 132, pp. 1308-1316, 2018.

M.I. Fale, "Dr. Flynxz–A First Aid Mamdani-Sugeno-type fuzzy expert system for differential symptoms-based diagnosis," Journal of King Saud University-Computer and Information Sciences, vol. 34, no. 4, pp. 1138-1149, 2022.

K.H.D. Tang, S.Z.M. Dawal, and E.U. Olugu, "Integrating fuzzy expert system and scoring system for safety performance evaluation of offshore oil and gas platforms in Malaysia," Journal of Loss Prevention in the Process Industries, vol. 56, pp. 32-45, 2018.

P. Chotikunnan, B. Panomruttanarug, and P. Manoonpong, "Dual design iterative learning controller for robotic manipulator application, "Journal of Control Engineering and Applied Informatics, vol. 24, no. 3, pp. 76-85, 2022.

P. Chotikunnan and B. Panomruttanarug, “Practical design of a time-varying iterative learning control law using fuzzy logic,” Journal of Intelligent & Fuzzy Systems, vol. 43, no. 3, pp. 2419-2434, 2022.

B. Panomruttanarug, R. W. Longman, and M. Q. Phan, “Steady state frequency response design of finite time iterative learning control,” The Journal of the Astronautical Sciences, vol. 67, no. 2, pp. 571-594, 2020, Doi:10. 1007/s40295-019-00198-9.

B. Panomruttanarug, “Position control of robotic manipulator using repetitive control based on inverse frequency response design, ” International Journal of Control, Automation and Systems, vol. 18, no. 11, pp. 2830-2841, 2020, Doi:10. 1007/s12555-019-0518-2.

P. Chotikunnan and R. Chotikunnan, "Dual design PID controller for robotic manipulator application," Journal of Robotics and Control (JRC), vol. 4, no. 1, pp. 23-34, 2023. doi: 10.18196/jrc.v4i1.16990

D. A. Bristow, M. Tharayil, and A. G. Alleyne, "A survey of iterative learning control," IEEE Control Systems Magazine, vol. 26, no. 3, pp. 96-114, 2006, doi: 10. 1109/MCS. 2006. 1636313.

C. Guo, L. Zhong, J. Zhao, G. Gao, and Y. Huang, "First-order and high-order repetitive control for single-phase grid-connected inverter, " Complexity, vol. 2020, 2020. doi: 10. 1155/2020/1094386.

X. Wang and J. Wang, "Iterative learning control for one-sided lipschitz nonlinear singular conformable differential equations," International Journal of Robust and Nonlinear Control, vol. 30, no. 17, pp. 7791-7805, 2020. doi: 10. 1002/rnc. 5191.

P. Chotikunnan, R. Chotikunnan, A. Nirapai, A. Wongkamhang, P. Imura, and M. Sangworasil, "Optimizing Membership Function Tuning for Fuzzy Control of Robotic Manipulators Using PID-Driven Data Techniques," Journal of Robotics and Control (JRC), vol. 4, no. 2, 2023.

A. M. Saba, T. H. Sikiru, I. Bello, A. T. Salawudeen, and U. A. Dodo, "Modified Fractional Order PID Controller for Load Frequency Control of Four Area Thermal Power System," Int. J. Robotics and Control Systems, vol. 3, no. 2, pp. 187-205, 2023.

Zaway, R. Jallouli-Khlif, B. Maaleja, H. Medhaffar, and N. Derbela, "Multi-objective Fractional Order PID Controller Optimization for Kid's Rehabilitation Exoskeleton," Int. J. Robotics and Control Systems, vol. 3, no. 1, pp. 32-49, 2023.

C. A. Márquez-Vera, Z. Yakoub, M. A. M. Vera, and A. Ma'arif, "Spiking PID Control Applied in the Van de Vusse Reaction," International Journal of Robotics and Control Systems, vol. 1, no. 4, pp. 488-500, 2021.

A. Setiawan and A. Ma'arif, "Stirring system design for automatic coffee maker using OMRON PLC and PID control," International Journal of Robotics and Control Systems, vol. 1, no. 3, pp. 390-401, 2021.

W. Suseno and A. Ma'arif, "Tuning of PID controller parameters with genetic algorithm method on DC motor," International Journal of Robotics and Control Systems, vol. 1, no. 1, pp. 41-53, 2021.

M. H. Iqbal and W. S. Aji, "Wall Following Control System with PID Control and Ultrasonic Sensor for KRAI 2018 Robot," International Journal of Robotics and Control Systems, vol. 1, no. 1, pp. 1-14, 2021.

M. H. Suid and M. A. Ahmad, "Optimal tuning of sigmoid PID controller using Nonlinear Sine Cosine Algorithm for the Automatic Voltage Regulator system," ISA Transactions, vol. 128, pp. 265-286, 2022.

N. R. Setiawan, A. Ma'arif, and N. S. Widodo, "DC Motor Controller Using Full State Feedback," Control Systems and Optimization Letters, vol. 1, no. 1, pp. 7-11, 2023.

R. Rikwan and A. Ma'arif, "DC Motor Rotary Speed Control with Arduino UNO Based PID Control," Control Systems and Optimization Letters, vol. 1, no. 1, pp. 17-31, 2023.

D. Prastiyo and W. S. Aji, "Irrigation Sluice Control System Using Algorithm Based DC Motor PID And Omron PLC," Control Systems and Optimization Letters, vol. 1, no. 1, pp. 19-26, 2023.

A. A. Cahya and R. D. Puriyanto, "The Design of Rice Milling and Screening Systems Uses the DC Motor PID Method," Control Systems and Optimization Letters, vol. 1, no. 1, pp. 1-6, 2023.

D. Saputra, A. Ma'arif, P. Chotikunnan, and S. N. Rahmadhia, "Design and Application of PLC-based Speed Control for DC Motor Using PID with Identification System and MATLAB Tuner," International Journal of Robotics and Control Systems, vol. 3, no. 2, pp. 233-244, 2023.

D. S. Febriyan and R. D. Puriyanto, "Implementation of DC Motor PID Control On Conveyor for Separating Potato Seeds by Weight," International Journal of Robotics and Control Systems, vol. 1, no. 1, pp. 15-26, 2021.

N. Jamali, M. R. Gharib, and B. O. Koma, "Neuro-Fuzzy Decision Support System for Optimization of the Indoor Air Quality in Operation Rooms," International Journal of Robotics and Control Systems, vol. 3, no. 1, pp. 98-106, 2023.

Y. L. Chuang, M. Herrera, and A. Balal, "Using PV Fuzzy Tracking Algorithm to Charge Electric Vehicles," International Journal of Robotics and Control Systems, vol. 2, no. 2, pp. 253-261, 2022.

A. Bounemeur and M. Chemachema, "Adaptive fuzzy fault-tolerant control for a class of nonlinear systems under actuator faults: application to an inverted pendulum," International Journal of Robotics and Control Systems, vol. 1, no. 2, pp. 102-115, 2021.

H. Abdelfattah, S. A. Kotb, M. Esmail, and M. I. Mosaad, "Adaptive Neuro-Fuzzy Self Tuned-PID Controller for Stabilization of Core Power in a Pressurized Water Reactor," International Journal of Robotics and Control Systems, vol. 3, no. 1, pp. 1-18, 2023.

M. Elouni, H. Hamdi, B. Rabaoui, and N. B. Braiek, "Adaptive PID fault-tolerant tracking controller for Takagi-Sugeno fuzzy systems with actuator faults: application to single-link flexible joint robot," International Journal of Robotics and Control Systems, vol. 2, no. 3, pp. 523-546, 2022.

A. Ouda and A. Mohamed, "Autonomous fuzzy heading control for a multi-wheeled combat vehicle," International Journal of Robotics and Control Systems, vol. 1, no. 1, pp. 90-101, 2021.




DOI: https://doi.org/10.18196/jrc.v4i2.17757

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