DC-DC converters;
DC micro grids;
power engineering and energy;
renewable energy resource;
sliding mode control;
VOLTAGE TRACKING CONTROL;
BOOST CONVERTER;
DYNAMIC PERFORMANCE;
POWER CONVERTERS;
PID CONTROLLER;
DESIGN;
SYSTEMS;
IMPLEMENTATION;
REDUCTION;
D O I:
10.1002/asjc.2057
中图分类号:
TP [自动化技术、计算机技术];
学科分类号:
0812 ;
摘要:
The rising cost of fossil fuels, their high depleting rate and issues regarding environmental pollution have brought the attention of the researchers towards renewable energy technologies. Different renewable energy resources like wind turbines, fuel cells and solar cells are connected to DC micro grid through controllable power electronic converters. In presence of these diverse generation units, robust controllers are required to ensure good power quality and to regulate grid voltage. This paper presents a sliding mode control based methodology to address the above mentioned challenges. The proposed technique keeps the switching frequency constant so that electromagnetic compatibility (EMC) issues can be solved with conventional filter design. Parallel operation of converter in DC micro gird is considered. Chattering reduction and power quality improvement by harmonic cancellation is proposed. A scaled down hardware for unregulated 11.5 V to 17.5 V input and 24V output is designed and tested. The experimental results show good performance of the controller under different loads and uncertain input voltage conditions. Moreover, the results show the robustness of the closed loop system to sudden variations in load conditions. Furthermore, a significant improvement in power quality is achieved by harmonic cancellation of chattering in the output of the converters.