Fuzzy Logic based Battery Energy Storage System Control for Frequency Containment

Author(s):  
Lucian Toma ◽  
Bogdan-Petru Dobrin ◽  
Mihai Sanduleac ◽  
Andrea Mazza ◽  
Ettore Bompard ◽  
...  
2018 ◽  
Vol 10 (5) ◽  
pp. 1645 ◽  
Author(s):  
Naowarat Tephiruk ◽  
Weerawoot Kanokbannakorn ◽  
Thongchart Kerdphol ◽  
Yasunori Mitani ◽  
Komsan Hongesombut

2020 ◽  
Vol 13 (1) ◽  
pp. 96-107
Author(s):  
Bernard Adjei ◽  
Elvis K. Donkoh ◽  
Dominic Otoo ◽  
Emmanuel De-Graft Johnson Owusu-Ansah ◽  
Francois Mahama

In microgrid operation, one of the most vital tasks of the system control is to wiselydecide between selling excess power to the local grid or charge the Battery Energy Storage System (BESS). Our study uses Mixed-Integer Linear Programming to investigate the impact of storage system on the operational cost of a microgrid. The results suggested that the presence of BESS would relieve the pressure on the utility grid but not the cost of electricity due to the expensive nature of the storage plant. In view of this, it will be more beneficial to sell excess renewable generated power to the utility grid than to invest in a storage system for larger microgrids.


2019 ◽  
Vol 7 (1) ◽  
pp. 243-260
Author(s):  
Eka Prasetyono ◽  
Epyk Sunarno ◽  
Muchamad Chaninul Fuad ◽  
Dimas Okky Anggriawan ◽  
Novie Ayub Windarko

Renewable energy sources require an energy storage system because its are fluctuating and electricity producing at certain times, even sometimes not in accordance with the needs of the load. To maintain continuity of electricity, smart battery energy storage system is needed. Therefore, this paper of a full-bridge bidirectional DC-DC Converter (FB-BDC) with Fuzzy Logic Control (FLC) is designed and implemented for battery energy storage application. The FLC has error and delta error of voltage level as input and duty cycle of FB-BDC as output. The FB-BDC is controlled by a microcontroller ARM Cortex-M4F STM32F407VG for voltage mode control. The FB-BDC topology is selected becuase battery storage system needed isolated and need high voltage ratio both for step-up and step-down. The main purpose of FB-BDC to perform bidirectional energy transfer both of DC-Bus and battery. Moreover, FB-BDC controls the DC-Bus voltage according to referenced value. The power flow and voltage on DC-Bus is controlled by FLC with voltage mode control. The experiment result shows the ability of FLC  voltage mode control to control FB-BDC on regulate charging voltage with an error 1% and sharing voltage 1.5% form referenced value.


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