Title :
PV Isolated Three-Port Converter and Energy-Balancing Control Method for PV-Battery Power Supply Applications
Author :
Hongyu Zhu ; Donglai Zhang ; Athab, Hussain S. ; Bin Wu ; Yu Gu
Author_Institution :
Power Electron. & Motion Control Res. Center, Harbin Inst. of Technol., Shenzhen, China
Abstract :
A photovoltaic (PV)-based stand-alone power system is usually used to manage the energy supplied from several power sources such as PV solar arrays and battery and deliver a continuous power to the users in an appropriate form. Traditionally, three different dc/dc converters would have been used. To reduce the cost and improve the power density of the power system, an integrated solution of PV isolated dc/dc three-port converter (TPC) is proposed in this paper. Zero current switching can be achieved for all main diodes and MOSFETs to improve the efficiency, and a continuous input current of solar array is maintained by adding a magnetic switch derived from a fourth winding of the half-bridge transformer. Based on the energy-balancing part formed by boost, the control methods for the single module to realize maximum power point tracking (MPPT), battery charge control, and main bus regulation are proposed. The power system control method for multimodules in parallel is also derived, and the operation of the TPC power system can be transited between conductance mode and MPPT mode automatically. Finally, the experimental results verify that the proposed TPC, together with the proposed control method, meets the requirements of a high-power-density stand-alone PV-battery power system.
Keywords :
magnetic switching; maximum power point trackers; photovoltaic power systems; power control; power generation control; power supplies to apparatus; power transformers; MOSFET; MPPT mode; PV isolated three-port converter; TPC; ZCS; battery charge control; battery power supply applications; conductance mode; dc-dc converters; energy-balancing control method; half-bridge transformer; magnetic switch; main bus regulation; main diodes; maximum power point tracking; multimodules; photovoltaic-based stand-alone power system; power density; power sources; power system control method; solar arrays; zero current switching; Batteries; Bridge circuits; Capacitors; Power systems; Switches; Topology; Windings; Conductance control; DC/DC converter; Half bridge topology; MPPT; Multiport; PV; Stand-alone power system; dc/dc converter; half-bridge topology; maximum power point tracking (MPPT); multiport; photovoltaic (PV); stand-alone power system;
Journal_Title :
Industrial Electronics, IEEE Transactions on
DOI :
10.1109/TIE.2014.2378752