Energy Management System in Battery Electric Vehicle Based on Fuzzy Logic Control to Optimize the Energy Consumption in HVAC System

Author(s):  
Abdulhadi Abdulsalam Abulifa ◽  
◽  
Azura Che Soh ◽  
Mohd Khair Hassan ◽  
Raja Mohd Kamil Raja Ahmad ◽  
...  
IEEE Access ◽  
2021 ◽  
Vol 9 ◽  
pp. 25172-25188
Author(s):  
Diego Arcos-Aviles ◽  
Julio Pascual ◽  
Francesc Guinjoan ◽  
Luis Marroyo ◽  
Gabriel Garcia-Gutierrez ◽  
...  

2012 ◽  
Vol 516-517 ◽  
pp. 1164-1170 ◽  
Author(s):  
Jin Rui Nan ◽  
Yao Wang ◽  
Zhi Chai ◽  
Jun Kui Huang

An simulation model for pure electric vehicle air conditioning system is established in MATLAB/ Simulink environment. The critical component of air conditioning system is selected and simulated. Fuzzy logic control method is used in AC motor controlling strategy. Combined with ADVISOR, the total vehicle energy consumption and AC energy consumption are simulated and calculated. The research indicate that by using Fuzzy logic control led AC system, the vehicle’s economcial effeciency improved. Life mileage is longer than the EV with traditional AC system and a better effect of energy saving is achieved.


Author(s):  
Z Tareq ◽  
N Sulaiman ◽  
M.A Hannan ◽  
A Mohamed ◽  
E.H Majlan ◽  
...  

2019 ◽  
Vol 8 (4) ◽  
pp. 1222-1226

India is one of the fastest growing countries in terms of energy consumption. Currently, it is the fifth largest consumer of energy in the world, and will be the third largest by 2030. The country is heavily dependent on fossil sources of energy for most of its demand. In response to present scenario of energy consumption, India is gradually shifting focus towards its renewable energy resources. Power can be delivered at maximum efficiency with maximum continuity through an effective energy management system. The energy management system should effectively and efficiently manage the power exchange among different units of systems and also reliably regulate the load to ensure that the load is always supplied. This paper proposes a Fuzzy Logic based optimal energy management Strategy for complex systems that comprises of PV Energy System, Wind Energy System, Fuel Cell and a Battery. The performance of the proposed approach is evaluated by simulation in different operating conditions. To this purpose some performance indexes are considered, such as: the frequency deviation, the stability of the DC bus voltage and the AC voltage total harmonic distortion.


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