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This project focuses on two main objectives: developing a simulation platform for microgrid systems and designing a location-based Android application for fast-charging stations on campus. The microgrid aims to integrate renewable energy sources at the community level, enhancing efficiency and sustainability in electricity production and distribution. The simulation will analyze performance metrics of renewable energy, distributed storage, and generation systems in a smart grid context. Meanwhile, the Android app will facilitate efficient planning and access to charging stations for electric vehicles.
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2014-15 FYP Briefing March 14, 2014 Angela Yingjun Zhang
Simulation ofMicrogrid (2 students) • Smart grid: • A electrical power grid that uses information and communication technology to gather and act on information. • The grid operates in an automated fashion to improve the efficiency, reliability, economics, and sustainability of the production and distribution of electricity.
Simulation of Microgrid (2 students) • Microgrid: • Modern, small-scale version of centralized electricity system • Integrate renewable resources on the community level • Objective: • To build a simulation platform the microgrid systems • To test and analyze the performance of renewable energy, distributed storage, and distributed generation in smart grid systems
Location Based Android Apps (2 students) • Objective: design a system fast charging stations on campus