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Journal articles on the topic 'Synergetic Control'

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1

Ettouil, Radhia, Karim Chabir, Dominique Sauter, and Mohamed Naceur Abdelkrim. "Synergetic Control for HVAC System Control and VAV Box Fault Compensation." International Journal of Applied Mathematics and Computer Science 29, no. 3 (2019): 555–70. http://dx.doi.org/10.2478/amcs-2019-0041.

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Abstract Synergetic control is proposed for heating, ventilating and air-conditioning (HVAC) system control. The synergetic controller is developed using the nonlinear model of the HVAC system. Occupancy information in each zone is required in the design of the controller which offers inherent comfort according to the occupancy in the zone. The stability of the building system using the proposed control is verified through the Lyapunov approach. It is also proved that the synergetic controller is robust to external disturbances. Then, synergetic theories are used to design a reconfigurable con
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Liu, Ya Qiu, Qu Wu, and Chun Xiao Wang. "Hydraulic Cylinder Driving Based on Synergetic Control." Advanced Materials Research 722 (July 2013): 491–96. http://dx.doi.org/10.4028/www.scientific.net/amr.722.491.

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A controller for hydraulic cylinder driving is designed according to synergetic theory. Based on a cylinder model, the synergetic controller is tested. Simulation results using PI and synergetic control under two kinds of reference input demonstrate that synergetic control is suitable for cylinder driving in MDF hot-pressing because there is no overshoot for tracking. And it is shown that converging speed, affects systems tracking performance.
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Voznyuk, Alexander, Sergiy Kubitskyi, Tetiana Balanovska, Liudmyla Chip, and Oleksandr Dorofyeyev. "SYNERGETIC SIMULATION OF MANAGING PROCESSES IN EDUCATIONAL SPHERE IN THE CONTEST OF TEMPORARY SELF-RULED MANAGERIAL TARGET TEAMS APPLICATION." Financial and credit activity problems of theory and practice 3, no. 44 (2022): 317–27. http://dx.doi.org/10.55643/fcaptp.3.44.2022.3749.

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Considering the spreading of the system and synergetics methodology in the sphere of modern science, it is particularly important to apply the main principles of synergetics methodology in the process of educational management. The purpose of this application is to conduct a synergetic simulation of the managing processes in the educational sphere with the result of building a comprehensive synergetic model of such a process. The research has been conducted on three methodological levels: 1) the general one covering the fundamental principles of synergetics, 2) the peculiar one covering the fu
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4

Zerroug, N., K. Behih, Z. Bouchama, and K. Zehar. "Robust Adaptive Fuzzy Control of Nonlinear Systems." Engineering, Technology & Applied Science Research 12, no. 2 (2022): 8328–34. http://dx.doi.org/10.48084/etasr.4781.

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In this paper, an adaptive Fuzzy Fast Terminal Synergetic Controller (FFSC) for a certain class of SISO unknown nonlinear dynamic systems is proposed, that uses the concept of terminal attractor design, adaptive fuzzy synergetic control scheme, and Lyapunov synthesis approach. In contrast to the existing adaptive fuzzy synergetic control design, where the fuzzy systems are used to approximate the unknown system functions while the synergetic control guarantees robustness and achieves the asymptotic stability of the closed-loop system, in our technique both the continuous synergetic control law
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Qian, Junjie, Kaiting Li, Huaren Wu, Jianfei Yang, and Xiaohui Li. "Synergetic Control of Grid-Connected Photovoltaic Systems." International Journal of Photoenergy 2017 (2017): 1–11. http://dx.doi.org/10.1155/2017/5051489.

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It is important to improve the dynamic performance and the low-voltage ride-through (LVRT) capability of a grid-connected photovoltaic (PV) system. This paper presents synergetic control for the control of a grid-connected PV system. Modeling of a grid-connected PV system is described, and differential-algebra equations are obtained. Two control strategies are used in normal operation and during LVRT of a PV system. Practical synergetic controllers with two control strategies are synthesized. The mathematical expressions are derived for computing control variables. The design of the synergetic
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6

Obukhova, Elena. "SYNERGETIC CONTROL OF ELECTRIC PNEUMATIC CONTROL SYSTEM." University News. North-Caucasian Region. Technical Sciences Series, no. 3 (September 2020): 27–33. http://dx.doi.org/10.17213/1560-3644-2020-3-27-33.

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Voznyuk, Alexander, and Larysa Zdanevych. "Application of System and Synergetic Paradigm of Management of Social-Economic, Educational Processes in Ukraine." Педагогічний дискурс, no. 26 (March 18, 2019): 19–26. http://dx.doi.org/10.31475/ped.dys.2019.26.03.

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Due to widening the system and synergetic methodology in the sphere of socio-economic research, the synergetic methodology is extrapolated on managing social-economic processes at the level of constructing the model of such a process. The research is consecutively conducted on three methodological levels – the general/overall (general principles of synergetics are realized in socio-economic sphere), the peculiar/specific (general principles of synergetics are realized in socio-economic systems management) and the single/individual (the synergetic principles of socio-economic systems management
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8

Bratishchev, Alexander Vasilyevich. "Synergetic Control of Interorbital Flight." Differential Equations and Control Processes, no. 4 (2024): 90–103. https://doi.org/10.21638/11701/spbu35.2024.405.

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The problem of controlling interorbital flight in the spatial case using the first integrals is considered. Three types of synergistic regulators are proposed. It is shown that the thrust decreases exponentially over time. The executable models of the regulators are designed. The influence of the parameter of the aggregated variable on the geometric shape of the transition orbit is numerically considered. The effect of the choice of an aggregated variable on the amount of work and the amount of thrust. The effect of the angle between the initial and final orbits on the work of transition from
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9

Mahdi, Shaymaa M., Noor Q. Yousif, Ahmed A. Oglah, Musaab E. Sadiq, Amjad J. Humaidi, and Ahmad Taher Azar. "Adaptive Synergetic Motion Control for Wearable Knee-Assistive System: A Rehabilitation of Disabled Patients." Actuators 11, no. 7 (2022): 176. http://dx.doi.org/10.3390/act11070176.

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In this study, synergetic-based adaptive control design is developed for trajectory tracking control of joint position in knee-rehabilitation system. This system is often utilized for rehabilitation of patients with lower-limb disabilities. However, this knee-assistive system is subject to uncertainties when applied to different persons undertaking exercises. This is due to the different masses and inertias of different persons. In order to cope with these uncertainties, an adaptive scheme has been proposed. In this study, an adaptive synergetic control scheme is established, and control laws
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10

Arsit Boonyaprapasorn, Sorn Simatrang, Suwat Kuntanapreeda, Parinya Sa Ngiamsunthorn, Tinnakorn Kumsaen, and Thunyaseth Sethaput. "Terminal Synergetic Control for Plate Heat Exchanger." Journal of Advanced Research in Fluid Mechanics and Thermal Sciences 117, no. 1 (2024): 189–202. http://dx.doi.org/10.37934/arfmts.117.1.189202.

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Terminal synergetic control (TSC) is proposed as a control strategy for the temperature management of a plate heat exchanger. The controller is designed by incorporating a selected macro variable with a time-varying sliding surface. The primary objective is to maintain precise control over the outlet temperature of the cold water. To assess the convergence characteristics of the newly proposed TSC approach, the simulation results achieved using TSC featuring a time-varying macro variable are compared to those obtained from the conventional synergetic control (SC) method. With an appropriate ma
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11

Humaidi, Amjad J., Ibraheem Kasim Ibraheem, Ahmad Taher Azar, and Musaab E. Sadiq. "A New Adaptive Synergetic Control Design for Single Link Robot Arm Actuated by Pneumatic Muscles." Entropy 22, no. 7 (2020): 723. http://dx.doi.org/10.3390/e22070723.

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This paper suggests a new control design based on the concept of Synergetic Control theory for controlling a one-link robot arm actuated by Pneumatic artificial muscles (PAMs) in opposing bicep/tricep positions. The synergetic control design is first established based on known system parameters. However, in real PAM-actuated systems, the uncertainties are inherited features in their parameters and hence an adaptive synergetic control algorithm is proposed and synthesized for a PAM-actuated robot arm subjected to perturbation in its parameters. The adaptive synergetic laws are developed to esti
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12

Ettouil, Radhia, Karim Chabir, Dominique Sauter, and Mohamed Naceur Abdelkrim. "Resilient Synergetic Control for fault tolerant control system." IFAC-PapersOnLine 51, no. 24 (2018): 908–13. http://dx.doi.org/10.1016/j.ifacol.2018.09.683.

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13

Popov, A. N. "Synergetic synthesis of tracking control systems." IOP Conference Series: Materials Science and Engineering 1029 (January 19, 2021): 012032. http://dx.doi.org/10.1088/1757-899x/1029/1/012032.

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14

Khatir, A., Z. Bouchama, S. Benaggoune, and N. Zerroug. "Indirect adaptive fuzzy finite time synergetic control for power systems." Electrical Engineering & Electromechanics, no. 1 (January 4, 2023): 57–62. http://dx.doi.org/10.20998/2074-272x.2023.1.08.

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Introduction. Budget constraints in a world ravenous for electrical power have led utility companies to operate generating stations with full power and sometimes at the limit of stability. In such drastic conditions the occurrence of any contingency or disturbance may lead to a critical situation starting with poorly damped oscillations followed by loss of synchronism and power system instability. In the past decades, the utilization of supplementary excitation control signals for improving power system stability has received much attention. Power system stabilizers (PSS) are used to generate
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15

A., Khatir, Bouchama Z., Benaggoune S., and Zerroug N. "Indirect adaptive fuzzy finite time synergetic control for power systems." Electrical Engineering & Electromechanics, no. 1 (January 4, 2023): 57–62. https://doi.org/10.20998/2074-272X.2023.1.08.

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<strong><em>Introduction.&nbsp;</em></strong><em>Budget constraints in a world ravenous for electrical power have led utility companies to operate generating stations with full power and sometimes at the limit of stability. In such drastic conditions the occurrence of any contingency or disturbance may lead to a critical situation starting with poorly damped oscillations followed by loss of synchronism and power system instability. In the past decades, the utilization of supplementary excitation control signals for improving power system stability has received much attention. Power system stab
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16

Pourmehdi, Morteza, Abolfazl Ranjbar Noei, and Jalil Sadati. "CHAOS CONTROL AND SYNCHRONIZATION USING SYNERGETIC CONTROLLER WITH FRACTIONAL AND LINEAR EXTENDED MANIFOLD." IIUM Engineering Journal 17, no. 1 (2016): 115–26. http://dx.doi.org/10.31436/iiumej.v17i1.566.

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In this manuscript, for the first time, a fractional-order manifold in a synergetic approach using a fractional order controller is introduced. Furtheremore, in the synergetic theory a macro variable is expended into a linear combination of state variables. An aim is to increase the convergence rate as well as time response of the whole closed loop system. Quality of the proposed controller is investigated to control and synchronize a nonlinear chaotic Coullet system in comparison with an integer order manifold synergetic controller. The stability of the proposed controller is proven using the
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17

Wang, Yilin, and Lei Ruan. "A research on internal control, cash dividends and enterprise performance based on economic consequences." Filomat 30, no. 15 (2016): 4223–34. http://dx.doi.org/10.2298/fil1615223w.

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Whether internal control and cash dividend will have an interactive synergetic effect on enterprise performance or not is a study of both theoretical value and practical significance. Consequently, this article adopts a two-stage investment decision research process, explains the complex theoretical relationship among internal control, cash dividend and enterprise performance and, taking the Chinese A-share motherboard as an example, further explores their interactive synergetic effect. The research concludes that: (1) Internal control and cash dividend can contribute to the improvement of bot
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18

Anwar, Mohamed, and Sherif S. M. Ghoneim. "ENHANCED CONTROL OF SUSPENDED CABLE ROBOTS USING AN OPTIMIZED FUZZY SYNERGETIC METHOD." International Journal of Research in Engineering 3, no. 9 (2023): 1–6. https://doi.org/10.55640/ijre-03-09-01.

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Suspended Cable-Driven Parallel Robots (CDPRs) are increasingly utilized in various applications due to their large workspace and high payload capacity. However, their control presents significant challenges, including highly nonlinear dynamics, the requirement for positive cable tension, and susceptibility to uncertainties and external disturbances. Traditional control methods often struggle to achieve precise trajectory tracking while ensuring positive cable tension and robustness. This article proposes and analyzes a hypothetical Optimized Adaptive Fuzzy Synergetic Controller (OAFSC) for su
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19

Hamoudi, Ahmed Khalaf, and Suha S. Husain. "Design of Adaptive Synergetic Controller for One Degree of Freedom Robotic ARM Under External Disturbance." Journal of Robotics and Control (JRC) 6, no. 1 (2025): 406–12. https://doi.org/10.18196/jrc.v6i1.25207.

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In order to manage a one-link robot arm, this research proposes a unique control architecture based on the Synergetic Control (SC) principle. The synergetic control design is initially developed using known system parameters and subjected to external disturbances. However, in practical robotic systems, uncertainties are inherent in the system parameters. As a result, an algorithm known as Adaptive Synergetic Control (ASC) is presented and developed for a robot arm that encounters parameters uncertainty. To estimate disturbances and guarantee the asymptotic stability of the monitored system, ad
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20

Mohamed N, Harmas. "Synergetic Control and Synchronisation of Chaotic Systems." International Journal of Control, Automation, Communication and Systems 1, no. 2 (2016): 31–39. http://dx.doi.org/10.5121/ijcacs.2016.1204.

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21

Kolesnikov, A. A., S. D. Kaliy, I. A. Radionov, and O. I. Yakimenko. "Synergetic Control System of Hybrid Power Plant." Mekhatronika, Avtomatizatsiya, Upravlenie 19, no. 10 (2018): 627–32. http://dx.doi.org/10.17587/mau.19.627-632.

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The problem of control of a hybrid power plant of a car consisting of an internal combustion engine, a synchronous electric motor with permanent magnets and a synchronous generator is considered. The formation of the control effect is carried out taking into account the connection of the above objects with each other with the help of planetary transmission. The mathematical models of the three listed engines are nonlinear with several control channels. In addition, the principle of the hybrid power plant requires the simultaneous operation of these engines and, accordingly, the construction of
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22

Djennoune, Said, and Maamar Bettayeb. "Optimal synergetic control for fractional-order systems." Automatica 49, no. 7 (2013): 2243–49. http://dx.doi.org/10.1016/j.automatica.2013.04.007.

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23

Dombrovan, Tetiana, and Kateryna Oleksandrenko. "Language Development as a Change of the Parameter Pattern of the Language System." PSYCHOLINGUISTICS 23, no. 2 (2018): 66–80. https://doi.org/10.5281/zenodo.1210061.

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<strong>ABSTRACT</strong> The article advances linguistic synergetics as a novel research methodology by focusing on applicability of synergetic principles to language development studies. Synergetics is a name for the science of complexity that deals with principles of emergence, self-organisation and self-regulation of complex systems. From the perspective of the synergetic approach, a human language is considered an open, dynamic, non-linear, self-organizing system with all its hierarchical subsystems and elements coherently interconnected and controlled by governing parameters. The latter
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24

Chiem, Nguyen Xuan. "Cascade Control for Trajectory-Tracking Mobile Robots Based on Synergetic Control Theory and Lyapunov Functions." Control Systems and Optimization Letters 3, no. 1 (2025): 14–19. https://doi.org/10.59247/csol.v3i1.169.

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This paper aims to synthesize a synergetic control law using a cascade approach for trajectory-tracking robots. A nonlinear model was established for a differential two-wheeled mobile robot. The robot’s operation can either stabilize along a desired trajectory or deviate due to model uncertainty and external disturbances. The cascade approach is utilized to reduce system complexity while maintaining the robustness of the control law. The kinematic control law in the outer loop is designed using Lyapunov functions, while the dynamic control law is derived using synergetic control theory. This l
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SANTI, E., A. MONTI, D. LI, K. PRODDUTUR, and R. A. DOUGAL. "SYNERGETIC CONTROL FOR POWER ELECTRONICS APPLICATIONS: A COMPARISON WITH THE SLIDING MODE APPROACH." Journal of Circuits, Systems and Computers 13, no. 04 (2004): 737–60. http://dx.doi.org/10.1142/s0218126604001520.

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The theory of synergetic control was introduced in a power electronics context in a previous paper. In this paper we review the theory, then we focus on a comparison with the sliding mode approach. Common elements and main differences are underlined and illustrated through a comparative simulation example. The main advantages of synergetic control are that it is well-suited for digital implementation, it gives constant switching frequency operation, and it gives better control of the off-manifold dynamics. Finally, simulation and experimental results under transient conditions are compared. Ad
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Hachana, Aicha, Mohamed Naguib Harmas, and Ziyad Bouchama. "Numerical Simulation of Free Convection in a Three-Dimensional Enclosure Full of Nanofluid with the Existence a Magnetic Field." Journal Européen des Systèmes Automatisés 54, no. 2 (2021): 355–61. http://dx.doi.org/10.18280/jesa.540218.

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Blood glucose automatic regulation achievement depends on the robustness of the used control algorithm. However, some constraints were encountered due to the human glucose-insulin regulatory system’s complexity. It is proposed to tackle such a goal through the development of a robust synergetic control algorithm. An adaptive approach is integrated into this synergetic control scheme to handle disturbances and parameters variations. Multiple meal disturbances often occur daily as well as some other stochastic noises making efficient glucose regulation a tough challenge addressed in this paper v
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27

Kharchenko, Volodymyr, Valeriy Chepizhenko, Svetlana Pavlova, and Wang Bo. "INNOVATIVE CONCEPT OF SYNERGETIC AIR TRAFFIC MANAGEMENT UNDER POLYCONFLICTS." Aviation 18, no. 4 (2014): 185–92. http://dx.doi.org/10.3846/16487788.2014.985473.

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A new concept of the synthesis of a synergetic regulator for the control of difficult multidimensional aircraft in polyconflict conditions is offered in the article. The basic idea of control synthesis is the use of self-organization properties of real physical systems for the formation of algorithms for the synergetic regulator operation. This approach allows solving the problem of the high dimensionality of the regulator for aircraft in polyconflict conditions and provides aircraft control in real time. The synergetic approach offered by the authors allows minimising the expenditure of energ
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28

Nguyen, C. X., S. V. Tran, and H. N. Phan. "Control Law Synthesis for Flexible Joint Manipulator Based on Synergetic Control Theory." Mekhatronika, Avtomatizatsiya, Upravlenie 24, no. 8 (2023): 395–402. http://dx.doi.org/10.17587/mau.24.395-402.

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In this paper, the authors present the synthesis of control laws for the flexible joint manipulator to stabilize the oscillation and track the desired trajectory. To solve this problem, the article applies synergetic control theory. In synergetic control theory the desired values are impressed as invariants. So the invariants act as the control objectives of the system and our task is to find the control laws for them. Using this theory, the control law is designed to ensure the movement of the closed-loop system from an arbitrary initial state into the vicinity of the desired invariant manifo
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29

Benbouhenni, H., and S. Lemdani. "Combining synergetic control and super twisting algorithm to reduce the active power undulations of doubly fed induction generator for dual-rotor wind turbine system." Electrical Engineering & Electromechanics, no. 3 (June 23, 2021): 8–17. http://dx.doi.org/10.20998/2074-272x.2021.3.02.

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Aim. This work presents the amelioration of direct power control using synergetic-super twisting algorithms for asynchronous generators integrated into dual-rotor wind turbine systems. Method. The main role of the direct power control is to control the active and reactive powers and reduce the harmonic distortion of stator current of asynchronous generator for variable speed dual-rotor wind turbine systems. The traditional strategy is more attractive due to its high efficiency and simple algorithm. Super twisting algorithms are a non-linear command strategy; characterized by robustness against
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30

Al-Dujaili, Ayad Q., Amjad J. Humaidi, Ziyad T. Allawi, and Musaab E. Sadiq. "Earthquake Hazard Mitigation for Uncertain Building Systems Based on Adaptive Synergetic Control." Applied System Innovation 6, no. 2 (2023): 34. http://dx.doi.org/10.3390/asi6020034.

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This study presents an adaptive control scheme based on synergetic control theory for suppressing the vibration of building structures due to earthquake. The control key for the proposed controller is based on a magneto-rheological (MR) damper, which supports the building. According to Lyapunov-based stability analysis, an adaptive synergetic control (ASC) strategy was established under variation of the stiffness and viscosity coefficients in the vibrated building. The control and adaptive laws of the ASC were developed to ensure the stability of the controlled structure. The proposed controll
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31

Hunaish, Ahmed Sadeq, and Fadhil Rahma Tahir. "Fixed-Time Synergetic Control-Based Chaos Suppression for Eighth-Order IFOCIM Drive System." International Journal of Bifurcation and Chaos 31, no. 09 (2021): 2150131. http://dx.doi.org/10.1142/s0218127421501315.

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This paper investigates chaos suppression in widely used indirect field oriented controlled induction machine (IFOCIM) drive system using fixed-time synergetic control method. The complex eighth-order IFOCIM drive system shows chaotic oscillations during a specific range of the integral gain of the PI speed controller. The conventional synergetic control method is improved by employing the fixed-time theory, the characteristics of the designed controller are chattering free and the convergence time is limited within a fixed-time upper bound depending on the controller parameters. The fixed-tim
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МАЗУРОК, Т. Л. "INTELLIGENT TECHNOLOGY OF SYNERGETIC MANAGEMENT." Transport development, no. 1(1) (September 27, 2017): 78–89. http://dx.doi.org/10.33082/td.2017.1-1.08.

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The article presents the results of research into the synthesis of intellectual technology of synergetic control of the organizational and technical system using the example of an automatization learning control system. The results of practical implementation are given. A peculiarity of the synergetic approach is the consideration of the internal self-development of the system in developing
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33

Wang, Tao, Jikun Li, Yuwen Liu, and Xuehai Wang. "The weighted synergetic speed control for single inverter, parallel-connected induction motor drive." Proceedings of the Institution of Mechanical Engineers, Part I: Journal of Systems and Control Engineering 234, no. 2 (2019): 257–71. http://dx.doi.org/10.1177/0959651819850448.

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In the case of unbalanced load performance, the key issue in speed control of a single inverter-powered parallel motor coupling system is how to overcome the difference in motor parameters and the effect of slip between the induction motors to maintain the same speed. Based on the synergetic control theory and synergy manifold design techniques, the model which is field-oriented vector control with reduced order induction is proposed, as well as a synergetic control strategy. Moreover, the accuracy of the rotor flux observation is one of the most important steps in the motor control. In order
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34

H., Benbouhenni, and Lemdani S. "Combining synergetic control and super twisting algorithm to reduce the active power undulations of doubly fed induction generator for dual-rotor wind turbine system." Electrical Engineering & Electromechanics, no. 3 (June 25, 2021): 8–17. https://doi.org/10.20998/2074-272X.2021.3.02.

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<strong><em>Aim.</em></strong><em>&nbsp;This work presents the amelioration of direct power control using synergetic-super twisting algorithms for asynchronous generators integrated into dual-rotor wind turbine systems.&nbsp;<strong>Method.</strong>&nbsp;The main role of the direct power control is to control the active and reactive powers and reduce the harmonic distortion of stator current of asynchronous generator for variable speed dual-rotor wind turbine systems. The traditional strategy is more attractive due to its high efficiency and simple algorithm. Super twisting algorithms are a no
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35

Saadi, Salah Eddine, Khalissa Behih, Ziyad Bouchama, Najib Essounbouli, and Khaled Zehar. "Synchronization of chaotic oscillator systems based on adaptive synergetic control theory." South Florida Journal of Development 5, no. 9 (2024): e4352. http://dx.doi.org/10.46932/sfjdv5n9-014.

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In this study, adaptive terminal convergence using robust synergetic control theory and finite-time attractor algorithms is explored to achieve synchronization and anti-synchronization between two different chaotic oscillator systems, while considering system uncertainties and external disturbances. To render the controller more robust and enable it to handle the nonlinear terms of the synchronized error system and to be easily implementable even when the bounds of system uncertainties and external disturbances are unknown, an adaptive control gain law derived from Lyapunov stability analysis
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36

Guermit, Hossine, Katia Kouzi, and Sid Ahmed Bessedik. "Novel design of an optimized synergetic control for dual stator induction motor." COMPEL - The international journal for computation and mathematics in electrical and electronic engineering 38, no. 6 (2019): 1828–45. http://dx.doi.org/10.1108/compel-01-2019-0042.

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Purpose This paper aims to present a contribution to improve the performance of vector control scheme of double star induction motor drive (DSIM) by using an optimized synergetic control approach. The main advantage of synergetic control is that it supports all parametric and nonparametric uncertainties, which is not the case in several control strategies. Design/methodology/approach The suggested controller is developed based on the synergistic control theory and the particle swarm optimization (PSO) algorithm which allow to obtain the optimal parameter of suggested controller to improve the
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Ounissi, Amor, Azeddine Kaddouri, and Rachid Abdessemed. "Synergetic control of micro positioning stage piezoelectric actuator." International Journal of Applied Power Engineering (IJAPE) 11, no. 4 (2022): 264. http://dx.doi.org/10.11591/ijape.v11.i4.pp264-270.

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The work carried out in this article essentially relates to the application of a synergetic control to the piezoelectric positioning mechanism or piezoelectric actuator (PEA). A LuGre model has been followed, capturing the most physical phenomena, in order to be able to follow the most realistic and representative model possible. From this model, which is then identified by particle swarm optimization (PSO), we apply the synergetic control technique, which is a very efficient control method that allows demonstrating the good functioning of the stability of nonlinear system in closed loop. The
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Amor, Ounissi, Kaddouri Azeddine, and Abdessemed Rachid. "Synergetic control of micro positioning stage piezoelectric actuator." International Journal of Applied Power Engineering 11, no. 4 (2022): 264~270. https://doi.org/10.11591/ijape.v11.i4.pp264-270.

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The work carried out in this article essentially relates to the application of a synergetic control to the piezoelectric positioning mechanism or piezoelectric actuator (PEA). A LuGre model has been followed, capturing the most physical phenomena, in order to be able to follow the most realistic and representative model possible. From this model, which is then identified by particle swarm optimization (PSO), we apply the synergetic control technique, which is a very efficient control method that allows demonstrating the good functioning of the stability of nonlinear system in closed loop. The
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Alwan, Yasser Hatim, Ahmed A. Oglah, and Muayad Sadik Croock. "Optimized Adaptive Fuzzy Synergetic Controller for Suspended Cable-Driven Parallel Robots." Automation 6, no. 2 (2025): 15. https://doi.org/10.3390/automation6020015.

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A suspended cable-driven parallel robot is a type of lightweight large-span parallel robot. The stability and control of this multi-input multi-output robot are studied in this work to overcome its inherited vulnerability to disturbance. An adaptive fuzzy synergetic controller is proposed to overcome these issues, combining synergetic control theory with adaptive fuzzy logic to ensure robust trajectory tracking. The parameters of the controller are optimized using the Dragonfly Algorithm, a metaheuristic technique known for its simplicity and fast convergence. The adaptive fuzzy synergetic con
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HAMOUDI, A., S. ALOUANE, S. ABERKANE, N. DJEGHALI, and M. BETTAYEB. "Fixed-time Synergetic Control for Synchronization of Fractional-order Chaotic Systems." Algerian Journal of Signals and Systems 9, no. 2 (2024): 134–41. http://dx.doi.org/10.51485/ajss.v9i2.221.

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In this paper, a fixed-time synergetic control is proposed for the synchronization of fractional-order chaotic systems. It is similar to the sliding mode approach but without chattering and achieves exact convergence of the macro-variable. Synergetic control is a robust approach that does not require linearization and is suitable for real-time implementation since it does not require a discontinuous term in its control law. The Lyapunov framework is used to ensure the convergence of the controlled system. Computer simulations are performed to illustrate the effectiveness of the proposed method
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Isamiddin, Siddikov, and Umurzakova Dilnoza. "Integrated application of synergetic approach for enhancing intelligent steam generator control systems." International Journal of Electrical and Computer Engineering (IJECE) 14, no. 2 (2024): 1508–18. https://doi.org/10.11591/ijece.v14i2.pp1508-1518.

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This article focuses on the integrated application of the synergetic approach to enhance the quality of intelligent steam generator control systems. By combining various techniques such as model-based control, adaptive control, and artificial intelligence, an efficient and flexible control system can be developed. Model-based control utilizes mathematical models of steam generators to formulate control algorithms and predict system behavior. Adaptive control enables the system to adapt to changing conditions by adjusting control parameters based on real-time measurements. Artificial intelligen
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Liu, Ling, Jiangbin Wang, and Chongxin Liu. "Fast Synergetic Control for Chaotic Oscillation in the Power System Based on Input-Output Feedback Linearization." Mathematical Problems in Engineering 2021 (July 19, 2021): 1–14. http://dx.doi.org/10.1155/2021/8404192.

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This paper presents a fast synergetic control scheme for chaotic oscillation in a three-bus power system model. First, the coupling dynamic model of a controlled power system with the current source converter-based STATCOM device and energy storage device is established. Then, the input-output linearization process for the controlled power system is derived step by step, the control problem for the complex nonlinear power system model is completely transformed into the control of linear systems, and a fast synergetic control scheme is proposed for these linear systems. Since the designed contr
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43

Magdalena, Yohana, Pontas Jamaluddin Sitorus, and Harlen Simanjuntak. "Implikasi Strategi Synergetic Teaching dalam Pembelajaran Virtual terhadap Kemampuan Siswa-Siswi Menulis Teks Prosedur di Kelas VIII SMP Parulian 3 Medan T.A 2021/2022." JIIP - Jurnal Ilmiah Ilmu Pendidikan 5, no. 9 (2022): 3499–502. http://dx.doi.org/10.54371/jiip.v5i9.875.

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Masalah dalam penelitian ini adalah Implikasi strategi Synergetic Teaching dalam pembelajaran virtual terhadap kemampuan siswa/i menulis Teks Prosedur di Kelas VIII SMP Parulian 3 Medan T.A 2021/2022. Penelitian ini bertujuan menggambarkan Implikasi strategi Synergetic Teaching. Pada penelitian ini menggunakan jenis penelitian kuantitatif dengan metode eksperimen. Sampel yang digunakan untuk penelitian ini yaitu seluruh siswa kelas VIII SMP Gajah Mada Medan dengan jumlah 50 orang. Dengan desain eksperimen two group posttest Design. Untuk memperoleh data yang digunakan yaitu kelas Control dan E
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Zak, S. H., and W. A. Crossley. "Discrete-Time Synergetic Optimal Control of Nonlinear Systems." Journal of Guidance, Control, and Dynamics 31, no. 6 (2008): 1561–74. http://dx.doi.org/10.2514/1.36696.

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Rebai, A., K. Guesmi, and B. Hemici. "Adaptive fuzzy synergetic control for nonlinear hysteretic systems." Nonlinear Dynamics 86, no. 3 (2016): 1445–54. http://dx.doi.org/10.1007/s11071-016-3088-3.

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46

Kuz'menko, A. A., A. A. Kolesnikov, and D. A. Kolesnitchenko. "Novel Robust Control of Hydrogenerator: the synergetic approach." IFAC-PapersOnLine 48, no. 11 (2015): 451–56. http://dx.doi.org/10.1016/j.ifacol.2015.09.227.

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Ait-Chekdhidh, Zaina, Aghiles Ardjal, and Maamar Bettayeb. "Non-linear Synergetic Funnel Control of wind turbine." Computers and Electrical Engineering 124 (May 2025): 110324. https://doi.org/10.1016/j.compeleceng.2025.110324.

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Labutin, A. N., A. A. Andreenkov, and E. A. Shuina. "Synergetic synthesis of control algorithms for extreme objects." Vestnik IGEU, no. 3 (June 30, 2025): 86–92. https://doi.org/10.17588/2072-2672.2025.3.086-092.

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Due to the absence or limited information about the dynamics of the object, the problem of synthesizing control algorithms of nonlinear technological objects, such as a chemical reactor occurs. At the same time, the static characteristic of the object in the control channel is given and has an extreme nature. Information about the form of the static characteristic and the structure of substance transfer flows in the reactor makes it possible to develop a simplified model that reflects the nonlinearity and inertia of the object. Thus, it is necessary to develop methods of synthesizing a control
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Nechadi, Emira. "Adaptive Fuzzy Type-2 Synergetic Control Based on Bat Optimization for Multi-Machine Power System Stabilizers." Engineering, Technology & Applied Science Research 9, no. 5 (2019): 4673–78. https://doi.org/10.5281/zenodo.3510236.

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A new, adaptive, fuzzy type-2 fast terminal, synergetic multi-machine power system stabilizer is proposed in this study, based on the Bat algorithm. The time spent to reach the equilibrium point, from any initial state, is guaranteed to be finite. The adaptive fuzzy type-2 design is applied to estimate the unknown functions of a multi-machine power system. The parameters of the fast terminal synergetic control are optimized, using bat metaheuristic method. In order to test the robustness of the proposed stabilizer, three load conditions, of the multimachine power system are studied. A comparis
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Kolesnikova, S. I. "Application of regression in algorithm of nonlinear stochastic adaptation of unstable multidimensional objects." Journal of Physics: Conference Series 2099, no. 1 (2021): 012064. http://dx.doi.org/10.1088/1742-6596/2099/1/012064.

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Abstract The results of a study of applicability of kernel estimation in the synergetic control systems for the objects unstable in an open-loop state (without a stabilizing control) have been presented. The effectiveness of kernel estimates has been shown for four nonlinear objects with unstable limiting states. The estimate the effectiveness of embedding the kernel predictive estimate of the state variables of a nonlinear object, subjected to disturbances of an unknown nature, into the system of synergetic control is demonstrated.
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