Home - Graduation-Project2/EggBlock-Solor_Energy_Generation_and_Trading_Platform GitHub Wiki

1. Introduction


We would like to propose an energy-sharing system that produces as much energy as necessary for efficient use and management of energy, and that the remaining energy can be shared within close range. The platform we suggest uses dynamic panels to collect solar energy. It allows the panel to move so that it can collect maximum energy by predicting the direction in which the sun moves. It also proposes a system that can reliably trade energy within close range with an energy trading system using a block chain if energy remains or is insufficient.


2. Motivation


At present, energy management in the country is carried out by the central management system. But because these systems produce energy for maximum demand, the energy waste from reserve power is severe. Also, when transmitting energy, the loss of energy increases in proportion to the distance.

Trust is very important in transactions between individuals and individuals. Also, it is important to define the price of energy, which is a limitation in general interpersonal transactions. To solve this problem, we propose a transaction method that provides reliable trading and is easily accessible through the web/app, using a block chain in the system.

Although there are a variety of energy collection systems such as solar and wind power these days, the easiest way to approach it at home is solar energy. However, most solar panels currently used in homes are fixed, so it is not the best way to collect energy. Therefore, IoT-based solar panels that move continuously according to the direction of the sun are proposed.


3. Problem & Solution


1) Problem

  • Low efficiency of power generation
    Despite the poor power generation efficiency, it still occupies the majority because it is cheap and easy to manage.
  • Centralization of energy management
    Due to the centralization of energy management, there are problems of unfair distribution and the creation of complex contracts.

2) Solution

  • Building an Efficient Energy Sharing Platform using IoT and Block Chain.


4. Result


1) Expectation Effectiveness

User

Can deal with each other without man-in-the-middle transparently.

Provider(Seller)

Can efficiently produce power through dynamic panels.
Can make a profit from power sales.

Buyer

Can but power whenever he wants.

2) Testbed

result

3) The amount of power collected over time by solar panel

result

5. Contributor


Subin Kwak, [email protected]
Beonghyun Kang, [email protected]
Jungho Park, [email protected]

6. Youtube


https://www.youtube.com/watch?v=4T59dHF78JA

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