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AN ISOLATED MULTIPORT DC–DC CONVERTER FOR 
SIMULTANEOUS POWER MANAGEMENT OF 
MULTIPLE DIFFERENT RENEWABLE ENERGY 
SOURCES 
ABSTRACT: 
This project proposes a new isolated multiport dc–dc converter for 
simultaneous power management of multiple renewable energy sources, which can 
be of different types and capacities. The proposed dc–dc converter only uses one 
controllable switch in each port to which a source is connected. Therefore, it has 
the advantages of simple topology and minimum number of power switches. A 
general topology of the proposed converter is first introduced. Its principle and 
operation are then analyzed. The proposed converter is applied for simultaneous 
maximum power point tracking (MPPT) control of a wind/solar hybrid generation 
system consisting of one wind turbine generator (WTG) and two different 
photovoltaic (PV) panels.
BLOCK DIAGRAM 
isolated multiport dc–dc 
converter. 
Dc source Output 
CONTROLLER CIRCUIT: 
 PIC controller 
OUTPUT: 
 Hardware 
 Simulation 
Driver unit 
Controller
TOOLS: 
 MP Lab 
 Orcad/Pspice 
 Matlab/simulink

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JPEEE1462 An Isolated Multiport DC–DC Converter for Simultaneous Power Management of Multiple Different Renewable Energy Sources

  • 1. AN ISOLATED MULTIPORT DC–DC CONVERTER FOR SIMULTANEOUS POWER MANAGEMENT OF MULTIPLE DIFFERENT RENEWABLE ENERGY SOURCES ABSTRACT: This project proposes a new isolated multiport dc–dc converter for simultaneous power management of multiple renewable energy sources, which can be of different types and capacities. The proposed dc–dc converter only uses one controllable switch in each port to which a source is connected. Therefore, it has the advantages of simple topology and minimum number of power switches. A general topology of the proposed converter is first introduced. Its principle and operation are then analyzed. The proposed converter is applied for simultaneous maximum power point tracking (MPPT) control of a wind/solar hybrid generation system consisting of one wind turbine generator (WTG) and two different photovoltaic (PV) panels.
  • 2. BLOCK DIAGRAM isolated multiport dc–dc converter. Dc source Output CONTROLLER CIRCUIT:  PIC controller OUTPUT:  Hardware  Simulation Driver unit Controller
  • 3. TOOLS:  MP Lab  Orcad/Pspice  Matlab/simulink