AEL-FUSG-E Final User Smart Grid - Smart Energy Application

FINAL USER SMART GRID - SMART ENERGY APPLICATION - AEL-FUSG-E

INNOVATIVE SYSTEMS

Final User Smart Grid - Smart Energy Application, "AEL-FUSG-E", is a trainer that reflects the real operation of actual Home Energy Management Systems.

See general description

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General Description

Final User Smart Grid - Smart Energy Application, "AEL-FUSG-E", is a trainer that reflects the real operation of actual Home Energy Management Systems. The purpose of the "AEL-FUSG-E" trainer is to make the user understand how smart devices work in a smart home or industrial environment, controlling the most significant loads. Through the "AEL-FUSG-E" trainer the user will manage the monitoring, programming of consumptions and visualization of the load profile through smart devices. A great characteristic is that all smart devices use ZigBee communication protocol (wireless communication).

Exercises and guided practices

GUIDED PRACTICAL EXERCISES INCLUDED IN THE MANUAL

  1. Studying the energy efficiency increase by using capacitor banks to compensate the reactive power of loads.
  2. Real time monitoring of local consumptions with induction, resistor or capacitive loads.
  3. Simulation of different consumptions and scheduling of the Home Energy Management System devices by the final customer.
  4. Study of the optimal load demand and programming the smart devices according to different programming schemes.
  5. Controlling and programming the loads maximum accumulated consumption.
  6. Programming the panel´s inputs and outputs.
  7. Illumination control.
  8. Temperature control system.
  9. Programming the moment of the activating of washing machine.
  10. Remote scheduling of smart devices (Smart relays, thermostat, different sensors, etc.).
  11. Developing switching schemes for appliances connected to the smart relays or thermostat with the management platform.

Practical exercises of AEL-FUSG-E trainer with AEL-FUSG-M trainer:

  1. Measurement of energy consumption at home or by an industrial consumer and comparison of this measurement with the utility´s register (smart meter).
  2. Simulation of different consuming periods and scheduling of the Home Energy Management System devices.
  3. Telemetering of the energy consumed by the loads using the data concentrator platform.

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