Jus like I said, using dynamic programming to ensure that the state of charge of the battery in a solar stand-alone system is the same at the beginning of the day and at the end of the day
Budget: $30 – $250 USD
Are you familiar with dynamic programming?
I want to use dynamic programming to design a small stand-alone offgrid solar powered microgrid that will serve the load for the period of one day using an energy management control or optimization algorithm to ensure that at every 1hour, the amount of load demand is met. And the state of charge of the battery at the beginning of the day will be equal to state of charge at the end of the day equal state of charge at the end of the day.
Inputs should be Solar irradiance data, load data.
Control algorithm will ensure that SOC initial equals SOC final.
Output graphs will show the different options of the SOC hourly and the optimal path chosen based on dynamic programming to ensure SOC initial (at the beginning of the day) and SOC final (at the end of the day).
Other power graphs also such as battery voltage against time, current against time etc
Strictly in matlab scripts NOT SIMULINK
I want to use dynamic programming to design a small stand-alone offgrid solar powered microgrid that will serve the load for the period of one day using an energy management control or optimization algorithm to ensure that at every 1hour, the amount of load demand is met. And the state of charge of the battery at the beginning of the day will be equal to state of charge at the end of the day equal state of charge at the end of the day.
Inputs should be Solar irradiance data, load data.
Control algorithm will ensure that SOC initial equals SOC final.
Output graphs will show the different options of the SOC hourly and the optimal path chosen based on dynamic programming to ensure SOC initial (at the beginning of the day) and SOC final (at the end of the day).
Other power graphs also such as battery voltage against time, current against time etc
Strictly in matlab scripts NOT SIMULINK