Dynamic Modeling and Simulation of an Isolated Hybrid Power System in a Rural Area of China
Author(s) -
Bojian Jiang,
M. Tariq Iqbal
Publication year - 2018
Publication title -
journal of solar energy
Language(s) - English
Resource type - Journals
eISSN - 2356-7635
pISSN - 2314-6230
DOI - 10.1155/2018/5409069
Subject(s) - diesel generator , renewable energy , photovoltaic system , electric power system , sizing , automotive engineering , controller (irrigation) , hybrid system , pid controller , computer science , engineering , power (physics) , control engineering , electrical engineering , diesel fuel , temperature control , art , agronomy , physics , quantum mechanics , machine learning , visual arts , biology
In some rural areas in the northwest of China, people are suffering from not only the voltage drop due to long distance transmission but also the power outages due to remoteness and poorly maintained grid. In recent few years, the price of solar energy has been reduced drastically every year in China due to the government policy on renewable energy. In the near future, isolated hybrid power systems for home use could be affordable and used by residences in these rural areas. Thus, it is necessary to design a hybrid power system based on local load and weather condition to check system feasibility and expected performance. It includes load simulation, system sizing, and dynamic system modeling and simulation. This paper firstly introduces current development of renewable energy in China and then goes through the sizing, modeling, and simulation of the system design for a typical remote home in China and finally discusses the system’s availability based on the simulation results. In this paper, the NASA website is the source for weather data, and BEopt is used to generate load data. During system modeling, the MPPT algorithm is much simpler designed than the complex incremental method. A soft starter is adopted with the diesel generator for stability. The charge controller of the battery storage provides external command to the MPPT and diesel PID controller to prevent the battery storage from overcharging. The rms value of the fundamental load voltage is used in the voltage control loop of the inverter.
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