Title :
Multi-objective analysis for designing and controlling micro-grids under multi-control with PID, MHCC and FOPID controllers
Author :
Rasoanarivo, Ignace ; Sargos, Francois-Michel
Author_Institution :
GREEN, Univ. of Lorraine, Vandoeuvre-les-Nancy, France
Abstract :
The present paper deals with the study and the implementing of an independent micro-grid supplied from DC batteries and including a conventional boost converter and a multilevel inverter. To ensure high stability of the network and continuity of service of the whole, this assembly is simultaneously controlled by three cascaded controls: a conventional PID corrector watching the output DC bus bar of Boost Converter, a Modulated Hysteresis Current Control (MHCC) acting on a Three-level Three-phase Load Point Clamped (LPC) Inverter, a Fractional Order PID (FOPID) controlling the three-phase voltages of an autonomous electrical network. In order to make the cost of network very competitive and to respect international EMC and EMI standards, the sizing of the passive elements of the assembly and the adjusting of the correctors parameters are achieved by the multi-objective optimization method. This optimization is submitted to the following constraints: low switching frequencies for the boost converter and the multilevel inverter, weights and sizes relatively small of the inductor coils. Analysis by simulation and experimental results are presented in the paper for verifying the merits and the practicality of the three controls here developed, and so highlighting the expected performances of the whole micro-grid.
Keywords :
control system synthesis; distributed power generation; electric current control; electromagnetic compatibility; electromagnetic interference; evolutionary computation; invertors; power convertors; power generation control; three-term control; DC battery; EMC standards; EMI standards; FOPID controller; MHCC controller; autonomous electrical network; boost converter; conventional PID corrector; fractional order PID control; inductor coil; microgrid control; modulated hysteresis current control; multilevel inverter; multiobjective optimization method; three level load point clamped inverter; three phase load point clamped inverter; Batteries; DC motors; Inverters; Microgrids; Boost Converter; DSP board; Fractional Order PID; Micro-grid; Modulated Hysteresis Control Current; Multilevel Inverter; PID; Strength Pareto Evolutionary Algorithm;
Conference_Titel :
Industry Applications Society Annual Meeting, 2013 IEEE
Conference_Location :
Lake Buena Vista, FL
DOI :
10.1109/IAS.2013.6682531