scholarly journals Simulation of Buck-Boost Converter for Solar Panels using PID Controller

2017 ◽  
Vol 115 ◽  
pp. 102-113 ◽  
Author(s):  
Farah Shabila Dinniyah ◽  
Wahidin Wahab ◽  
Muhammad Alif
Author(s):  
M. Paul Jeyaraj ◽  
M. Senthil Kumar ◽  
T. Arun Prasath ◽  
S. Muthulakshmi ◽  
S. Aiswariya

2019 ◽  
Vol 59 (1) ◽  
pp. 1-11 ◽  
Author(s):  
Erol Can

A 9-level inverter with a boost converter has been controlled with a fuzzy logic controller and a PID controller for regulating output voltage applications on resistive (R) and inductive (L), capacitance (C). The mathematical model of this system is created according to the fuzzy logic controlling new high multilevel inverter with a boost converter. The DC-DC boost converter and the multi-level inverter are designed and explained, when creating a mathematical model after a linear pulse width modulation (LPWM), it is preferred to operate the boost multi-level inverter. The fuzzy logic control and the PID control are used to manage the LPWM that allows the switches to operate. The fuzzy logic algorithm is presented by giving necessary mathematical equations that have second-degree differential equations for the fuzzy logic controller. After that, the fuzzy logic controller is set up in the 9-level inverter. The proposed model runs on different membership positions of the triangles at the fuzzy logic controller after testing the PID controller. After the output voltage of the converter, the output voltage of the inverter and the output current of the inverter are observed at the MATLAB SIMULINK, the obtained results are analysed and compared. The results show the demanded performance of the inverter and approve the contribution of the fuzzy logic control on multi-level inverter circuits.


2018 ◽  
Vol 7 (2.8) ◽  
pp. 255
Author(s):  
Prakhar Sharma ◽  
Pankaj Kumar ◽  
Himanshu Sharma ◽  
Nitai Pal

Deployment of renewable energy resources on distributed energy system has reduced the reliance and transmission losses from the utility grid. It also helps to improve the system stability near the load center. Solar and wind are the two highly utilized green energy resources in present scenario. However, the fluctuations of solar irradiation, temperature, wind velocity are the preeminent issue for this type of systems which affects the efficiency  of the solar and wind energy system. It requires the interfacing unit to stabilize the output voltage. The proposed work deals with the close loop boost converter with PID controller, which is used to attain a stabilized voltage despite of parameter changes and load disturbances. Designed system will help to analyze the better stable output voltage with efficient system having minimum fluctuation.


2020 ◽  
Vol 1432 ◽  
pp. 012055 ◽  
Author(s):  
M Irwanto ◽  
W Z Leow ◽  
B Ismail ◽  
N H Baharudin ◽  
R Juliangga ◽  
...  

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