An Optimum Tuning Method for DC Bus Voltage Regulation in Double Stage Off-Grid PV Systems | IEEE Conference Publication | IEEE Xplore

An Optimum Tuning Method for DC Bus Voltage Regulation in Double Stage Off-Grid PV Systems


Abstract:

This paper presents an optimum control strategy to regulate DC bus voltage in Off-Grid PV systems. The topology of the Off-Grid PV systems chosen in this work is double- ...Show More

Abstract:

This paper presents an optimum control strategy to regulate DC bus voltage in Off-Grid PV systems. The topology of the Off-Grid PV systems chosen in this work is double- stage PV system. The DC bus voltage regulation is achieved by controlling a bidirectional DC-DC converter which is connected between PV and energy storage systems. Internally, the DC bus voltage regulation controller is composed from a current feedback controller which is cascaded with a voltage regulation system. Both controllers are conventional Proportional-Integral (PI) controllers. The PI control parameters for the inner current loop are determined by pole placement technique, whereas for the outer voltage regulation loop, the PI control parameters are determined by using symmetrical optimum (SO) method. From the simulation result it is showed that the stability of the DC bus voltage highly depends on the tuning parameter well known as symmetrical distance of the SO. The greater the symmetrical distance, the relative stability of the system will increase, but on the other hand the speed of response to disturbances will be slower.
Date of Conference: 23-24 September 2021
Date Added to IEEE Xplore: 03 December 2021
ISBN Information:
Conference Location: Semarang, Indonesia

Funding Agency:

References is not available for this document.

I. Introduction

Nowadays, the harvesting of green energy is commonly found worldwide. The main reason behind this fact is the increasing of the global energy consumption and the depletion of fossil energy which happen in every year. One of the renewable energy sources that is widely used is solar - based energy sources [1]–[2]. By using PV panels, the solar energy is converted into electrical energy which then inj ected to the grid (on-grid PV system) or used directly (off -grid PV systems).

Select All
1.
Humada Ali M. et al., "Modeling of PV system and parameter extraction based on experimental data: Review and investigation", Solar Energy, vol. 199, pp. 742-760, 2020.
2.
Thotakura Sandhya et al., "Operational performance of megawatt-scale grid integrated rooftop solar PV system in tropical wet and dry climates of India", Case Studies in Thermal Engineering, vol. 18, pp. 100602, 2020.
3.
Bana Prabhat Ranjan et al., "Closed-loop control and performance evaluation of reduced part count multilevel inverter interfacing grid-connected PV system", IEEE Access, vol. 8, pp. 75691-75701, 2020.
4.
Babu Narendra et al., "An improved adaptive control strategy in grid-tied PV system with active power filter for power quality enhancement", IEEE Systems Journal, vol. 15.2, pp. 2859-2870, 2020.
5.
Akinsipe Olusola, Charles Diego Moya and Prasad Kaparaju, "Design and economic analysis of off-grid solar PV system in Jos-Nigeria", Journal of Cleaner Production, vol. 287, pp. 125055, 2021.
6.
Irfan Muhammad et al., "A techno-economic analysis of off-grid solar PV system: A case study for Punjab province in Pakistan", Processes, vol. 7.10, pp. 708, 2019.
7.
Kumar Dinesh, Firuz Zare and Arindam Ghosh, "DC microgrid technology: system architectures AC grid interfaces grounding schemes power quality communication networks applications and standardizations aspects", Ieee Access, vol. 5, pp. 12230-12256, 2017.
8.
Nasir Mashood et al., "Solar PV-based scalable DC microgrid for rural electrification in developing regions", IEEE Transactions on sustainable energy, vol. 9.1, pp. 390-399, 2017.
9.
Wang Hong and Donglai Zhang, "The stand-alone PV generation system with parallel battery charger", 2010 International Conference on Electrical and Control Engineering, 2010.
10.
Setiawan Iwan et al., "Sinusoidal Current Control Strategies for Single Phase Grid-Connected Renewable Power Generation Systems", 2020 7th International Conference on Information Technology Computer and Electrical Engineering (ICITACEE), 2020.
11.
Zhang Junhong, Jih-Sheng Lai and Wensong Yu, "Bidirectional DC-DC converter modeling and unified controller with digital implementation", 2008 Twenty-Third Annual IEEE Applied Power Electronics Conference and Exposition, 2008.
12.
Bajracharya Chandra et al., "Understanding of tuning techniques of converter controllers for VSC-HVDC", Nordic Workshop on Power and Industrial Electronics (NORPIE/2008) June 9–11 2008 Espoo Finland. Helsinki University of Technology, 2008.
13.
Setiawan Iwan et al., "Investigation of symmetrical optimum PI controller based on plant and feedback liniearization in grid tie inverter systems", International Journal of Renewable Energy Research, vol. 7.3, pp. 1228-1234, 2017.

Contact IEEE to Subscribe

References

References is not available for this document.