Title :
Design and implementation of power electronic load used to test tidal current energy generator sets
Author :
Shenghui Wang ; Ming Li ; Zhen Chen ; Guanghong Chang ; Jianguo Wang ; Shiqi An
Author_Institution :
Coll. of Eng., Ocean Univ. of China, Qingdao, China
Abstract :
Tidal current energy receives increasing interest as a green renewable energy. Power electronic load is a useful tool to test and evaluate the performance of tidal current energy generator sets. In this paper, a novel power electronic load scheme is proposed. There are four control mode, such as constant power, constant voltage, constant current and constant resistance. It is flexible and can be used to evaluate the power parameters, realize the Maximum Power Point Tracking etc. An three-stage load control technology is applied to improves the system response speed and control precision. The controller is developed based on STM32. The core control algorithm is Generalized Fuzzy Hyperbolic Model (GFHM) PID algorithm. The real time data may be monitored remotely via GPRS. The simulation and field testing results verified the significations of this scheme. Some valuable experience and data are obtained, and indicate that it is very useful for the further investigate tidal current energy power generation.
Keywords :
controllers; fuzzy set theory; load regulation; maximum power point trackers; power generation control; tidal power stations; GFHM PID algorithm; GPRS; STM32; constant current; constant power; constant resistance; constant voltage; control mode; control precision; controller; core control algorithm; generalized fuzzy hyperbolic model; green renewable energy; maximum power point tracking; power electronic load; system response speed; test tidal current energy generator sets; three-stage load control technology; tidal current energy power generation; Control systems; Insulated gate bipolar transistors; Load modeling; Resistance; Turbines; Voltage control; Tidal current energy power generation system; field test; power electronic load; simulation verification;
Conference_Titel :
Fuzzy Systems (FUZZ-IEEE), 2014 IEEE International Conference on
Conference_Location :
Beijing
Print_ISBN :
978-1-4799-2073-0
DOI :
10.1109/FUZZ-IEEE.2014.6891752