Design and realization of an analog integrated circuit for maximum power point tracking of photovoltaic panels

Author:

Alahdal AbdulrahmanORCID,Ammous AnisORCID,Ammous KaiçarORCID

Abstract

The tracking of the maximum power point (MPP) of a photovoltaic (PV) solar panel is an important part of a PV generation chain. In order to track maximum power from the solar arrays, it is necessary to control the output impedance of the PV panel, so that the circuit can be operated at its Maximum Power Point (MPP), despite the unavoidable changes in the climate conditions such as temperature and Irradiance. A new MPPT analog technique to track the Maximum Power Point (MPP) of PV arrays is proposed. This new technique uses simple and classical functions of electronic circuits. An Off-Grid PV system was considered to apply and validate the proposed new technique. The entire circuit was implemented in circuit-oriented simulator Proteus-ISIS. We present the results associated with the design, the realization, and the experimentation of a PV system equipped with a new analog MPPT command. The obtained results have shown good efficiency of analog technique (more than 98.5%). The second part of the paper consists of the description of the design and the realization of the novel analog MPPT integrated chip. The integrated circuit (IC) was designed and realized using HV CMOS technology 0.35-µm.

Funder

Deputyship for Research & Innovation, Ministry of Education in Saudi Arabia

Publisher

EDP Sciences

Subject

Electrical and Electronic Engineering,Condensed Matter Physics,Renewable Energy, Sustainability and the Environment,Electronic, Optical and Magnetic Materials

Reference36 articles.

1. Design, realization and optimization of a photovoltaic system equipped with analog maximum power point tracking (MPPT) command and detection circuit of the dysfunction and convergence the system (CDCS)

2. Liu Y.-H., Yang Z.-Z., Wang S.-C., Huang J.-W., A novel analog MPPT technique for low power photovoltaic systems, in Proceedings of the 2011 IEEE Region 10 Conference: Trends and Development in Converging Technology Towards 2020, TENCON 2011 (2011), pp. 833–837 (2011)

3. Roy T.D., Simulation and Analysis of Photovoltaic Stand-Alone Systems, Thesis, India, 2013

4. MPPT circuit with analog control suitable for solar cars

5. The performance of perturb and observe and incremental conductance maximum power point tracking method under dynamic weather conditions

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