Solar Eco Systems – a short history
Solar Eco Systems was founded in 2010. Our main activity is the design, installation, and configuration of projects in the field of energy efficiency and renewable energy: renewable energy production systems, energy storage systems, Smart BMS energy monitoring, control & management systems and Smart City solutions.
Our mission is to keep up with the latest technologies emerging in the field of renewable energies, sustainable technologies that use inexhaustible and free sources.
Case study: Metallurgy Manufacturing
The factory where the systems are installed has a an average monthly energy consumption exceeding 3,000 MWh, powering its high-complexity industrial processes across its facilities. To reduce the consumption of energy, the company is investing in renewable energy with this photovoltaic project and the objective is to reduce by 35% the yearly energy consumption.
The project, which began in 2023, has a deadline set for the end of 2024.
Solar Eco Systems supports the project by developing a fully equipped photovoltaic park on the rooftop and ground structure, equipped with high-performance energy management technologies and storage in the MWh capacity range, which will allow precise control of energy used in the production processes.
Solar Eco Systems, through the project management and technical solutions implemented, will ensure the fulfilment of all necessary objectives: technical documentation, design, assistance during the execution and acceptance of the works performed.
Remote control and access optimization
For this project, there is a high demand for remote control and access optimization based on the PV plant and factory consumption. The components and their functionalities in this scope are described below.
Monitoring of photovoltaic systems must be reliable (through serial ports, RS232, RS485, or the electrical network) to maintain the operation of the PV plant at maximum capacity.
- Monitoring system for the functioning of the PV panel area:
a) Remote measurement equipment – collects and monitors data from the PV panels
b) Standard datalogger – records and stores data continuously
c) WEB log with DSL Ethernet connection – access to an online portal and data storage in the cloud - Integrated electrical EMS:
a) Calculation system – monitors the energy consumed by groups of equipment from the power sources
b) Connection system – ensures maximum efficiency in managing the energy obtained from the PV panels
c) Electronic measurement devices – monitoring the electrical parameters of the network
d) Dedicated software – energy management within the energy system, storing all data
Conclusion:
Through the development of this complex project on 3 different locations, Solar Eco Systems serves as an example of integrating renewable energy sources, energy storage systems and energy software components, supporting the use of smart solutions within PV systems with energy storage for efficient energy management.
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