To improve the seeding motor control performance of electric-driven seeding (EDS), a genetic particle swarm optimization (GAPSO)-optimized fuzzy PID control strategy for electric-driven seeding was designed. Since the parameters of the fuzzy controller were difficult to determine, two quantization factors were applied to the input of the fuzzy controller, and three scaling factors were introduced into the output of fuzzy controller. Genetic algorithm (GA) and particle swarm optimization (PSO) were combined into GAPSO by a genetic screening method. GAPSO was introduced to optimize the initial values of the two quantization factors, three scaling factors, and three characteristic functions before updating. The simulation results showed that t...
This study describes the process of interconnected multi-machine power system stabilizer (PSS) optim...
Particle Swarm Optimization (PSO) has potential applications in electric drives. The excellent chara...
PID controllers are vital in the control for many systems such as suspension systems, Automatic Volt...
In order to solve the problems of traditional seeders, such as low seeding efficiency, tangled straw...
The effectiveness of the Particle Swarm Optimization (PSO) algorithm in solving any optimization pro...
In order to improve the control performance of the micro gas turbine in the full range of operating ...
Designing a fuzzy system involves defining membership functions and constructing rules. Carrying out...
This paper presents PSS (Power system stabilizer) design based on optimal fuzzy PID (OFPID). OFPID b...
Abstract- This Paper presents a comparative study of Genetic Algorithm method (GA) and Particle swar...
This paper presents a new Hybrid Fuzzy (HF) PID type controller based on Genetic Algorithms (GA-s) f...
There are many power electronic converters and motor drives connected together to form the electrica...
A permanent magnet synchronous motor (PMSM) is one kind of popular motor. They are utilized in indus...
This study describes the process of interconnected multi-machine power system stabilizer (PSS) optim...
This paper presented PSS (Power system stabilizer) design based on Genetic Algorithm - Fuzzy PID (Pr...
ABSTRACT: This Paper presents a comparative study of Genetic Algorithm method (GA) and Particle swa...
This study describes the process of interconnected multi-machine power system stabilizer (PSS) optim...
Particle Swarm Optimization (PSO) has potential applications in electric drives. The excellent chara...
PID controllers are vital in the control for many systems such as suspension systems, Automatic Volt...
In order to solve the problems of traditional seeders, such as low seeding efficiency, tangled straw...
The effectiveness of the Particle Swarm Optimization (PSO) algorithm in solving any optimization pro...
In order to improve the control performance of the micro gas turbine in the full range of operating ...
Designing a fuzzy system involves defining membership functions and constructing rules. Carrying out...
This paper presents PSS (Power system stabilizer) design based on optimal fuzzy PID (OFPID). OFPID b...
Abstract- This Paper presents a comparative study of Genetic Algorithm method (GA) and Particle swar...
This paper presents a new Hybrid Fuzzy (HF) PID type controller based on Genetic Algorithms (GA-s) f...
There are many power electronic converters and motor drives connected together to form the electrica...
A permanent magnet synchronous motor (PMSM) is one kind of popular motor. They are utilized in indus...
This study describes the process of interconnected multi-machine power system stabilizer (PSS) optim...
This paper presented PSS (Power system stabilizer) design based on Genetic Algorithm - Fuzzy PID (Pr...
ABSTRACT: This Paper presents a comparative study of Genetic Algorithm method (GA) and Particle swa...
This study describes the process of interconnected multi-machine power system stabilizer (PSS) optim...
Particle Swarm Optimization (PSO) has potential applications in electric drives. The excellent chara...
PID controllers are vital in the control for many systems such as suspension systems, Automatic Volt...