LED ILLUMINATION
Relamping finished
LED Relamping project for filling stations
Objective
The aim of our proposal is the conversion of the illumination plant in filling stations, through an upgrade in the quality of the lighting, hence greater security, and the monitoring, management and reduction of electricity consumption.
The investment will pay for itself through the savings on electricity bills, reduction in maintenance costs and incentives from the Certificati Bianchi.
The technology we propose is based on an intelligent LED system designed specifically to be installed under shelter and adapted to the conditions of a service station. The intensity of the lighting can be varied in line with the conditions at any time of day or night, so that during the night strong lighting will provide a safe welcome for the motorist, but at other times the lighting will be dimmed to avoid wasteful expenditure.
Project
The company can invest in the network both if it owns the station directly or if the station is managed by an agent.
After the preliminary analysis of the entire network and an initial estimate of the size of the project, (in the case where the station is not run by the utility company), the company will sign a contract with the agent regarding the supply of electric energy.
On the basis of a preliminary project, this contract will entail the conversion and efficiency upgrading of the illumination system which will provide the client with notable savings, 85% of which will be reserved for the company for the duration of the contract.
Aside from the conversion of the plant a control system will be installed at every sales point to enable the management and monitoring of the lighting with the added possibility of remote control to analyse consumption and modify the working parameters of the lamps.
Structure
The first phase of the project entails the analysis of the entire network in order to find a representative cluster of service stations to be used in a pilot project for a feasibility study. This will provide an idea of the possible size of the project and could involve a study of no less than 5 sales points.
The second phase entails an in-depth analysis of the representative cluster involving an on-site inspection, and the preparation of a reconversion plan, including a costs benefits study. A pilot project may be undertaken to provide an idea of the potential of the technology proposed.
The third phase entails a further study of the structure of the network, both if run by the utility or by an agent, and an energy analysis of the service stations.
Documentation and information required
To be done
* in the case of no conformity certificate or any incongruity, further updating of the electrical plan (cabinet, wiring and so on) will be carried out.
Forth phase entails submitting all the paper work to the GSE for the Certificati Bianchi, and start of the monitoring period of ex-ante consumption required for the definition of the baseline on which to calculate savings once the conversion has been completed.
Fifth phase entails the installation up-and-running (including required conformity certificate) of the whole new lighting system including the bulbs on the sites covered by the project. In the case in which optional extra work regarding updating the existing electrical documentation not covered in the original estimates, is agreed upon, besides producing a conformity certificate for the work carried out, the overall documentation for bringing the electrical system up to the norm will be produced.
Sixth phase sees the activation, on our PMS portal, of the client’s access to the system for managing and monitor consumption and savings.
Running the system with EOS technology
EOS technology automatically forms a wireless network which brings together all existing Bever innovations. This allows the user to utilise operations and processes to control and analyse LED innovations from Bever, through the EOS manager app.
EOS Manager allows the user to calculate and analyse the behaviour of the lighting installed with the aim of optimising energy savings, extracting statistics on consumption and facilitating maintenance. This app. Gives the user total control on who has access to the data, and how it is used by the EOS devices.
EOS Bridge allows the user to connect external tools for control and analysis to the EOS network, thereby creating flexible integration with all kinds of company process and making available an unlimitled number of functions.
With EOS technology, the user can not only control and analyse every individual LED product from Bever Innovations, but can also be master of the entire network. It is possible to connect various plant to a single sensor, monitor the devices and plan the maintenance via WiFi or protected on-site network. The possibilities are endless.

EOS in Service Stations
LED products from Bever Innovations have already integrated EOS technology. They are easy to install and, being wireless, have no need for any wiring. EOS technology can be used in the forecourts of service stations in numerous ways and what’s more, they increase security and optimise consumption. Moreover, in the case of unstaffed service stations that can be operated by remote control. Finally, not to be forgotten is the chance to have a clear eye view of all the statistics for the monitoring of plant performance.
Upgrades in Security and Savings
The light projectors of the Under Canopy LED series heighten the intensity of the lighting the moment a vehicle arrives. Once the motorist has filled up and replaced the pump, the illumination increases so as to guide the way to the shopping area. When the customer enters the shop the lights dim in order to save consumption, but once payment has been concluded the lights become brighter again to facilitate the motorist’s return to the car. As the car leaves the area the lighting returns to its former level.
LED sensors of the “Luci” series track the amount of solar light, dimming all the lights connected to the system by means of EOS technology when there is enough light in the sky, thereby saving energy.
Case History
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