Novel Multibus Multivoltage Concept for DC-Microgrids in Buildings: Modeling, Design and Local Control

被引:5
作者
Rodriguez-Estrada, Heriberto [1 ]
Rodriguez-Segura, Elias [2 ]
Orosco-Guerrero, Rodolfo [2 ]
Gordillo-Tapia, Cecilia [2 ]
Martinez-Nolasco, Juan [3 ]
机构
[1] Tecnol Nacl Mexico IT Celaya, Doctorado Ingn Elect, Celaya 38010, Mexico
[2] Tecnol Nacl Mexico IT Celaya, Dept Ingn Elect, Celaya 38010, Mexico
[3] Tecnol Nacl Mexico IT Celaya, Dept Ingn Mecatron, Celaya 38010, Mexico
来源
APPLIED SCIENCES-BASEL | 2023年 / 13卷 / 04期
关键词
direct current microgrid; multibus; multivoltage; space state model; feedback state controller; hierarchical control; electric vehicle charge station; energy management system; Petri net; DROOP CONTROL METHOD; DISTRIBUTED CONTROL; CONTROL STRATEGY; VOLTAGE CONTROL; FUZZY CONTROL; CONVERTER; SYSTEM; IMPLEMENTATION; OPERATION; AC;
D O I
10.3390/app13042405
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
In this paper, a novel microgrid (MG) concept suitable for direct current (DC) multibus architectures is depicted. Multibus feature is improved in order to distribute power in DC using a number of buses at different voltage level. A teachers offices building that houses several kinds of loads, including a charging station for electric vehicles (EV), is considered to validate the strategy. Several topologies of power electronics converters (PECs) are included in the system to perform specific tasks and providing isolation between bus and final loads. In order to develop the PECs, first, a switching function is used to obtain average model of each converter. Then, converters design is done by using well known methods that allow to obtain parameter values of all the devices in every version of each kind of converter. A hierarchical control is selected to govern the direct current microgrid (DCMG). At a lower control level, local control stage is implemented and tuned using models and designs obtained, with linear controllers in some PECs and classic strategies in others. In higher control level, there is a supervisory strategy that prioritizes the use of generated power to supply the building's loads. This energy management system (EMS) is based in Petri net theory; it consists of a start-up test, then source condition synchronous algorithm and load condition synchronous algorithm operate the DCMG according to the mentioned priority. Finally, PECs are tested on standalone, performing in closed loop, facing load changes to verify the adequate operation. Some trajectories of a simplified version of the CDMG are tested with local control in order to validate the multibus multivoltage concept. In order to verify coordinated control, some events managed by EMS are presented.
引用
收藏
页数:36
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