E N S A V E

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Energy Management

ENSAVE-SMART³E INTRODUCTION

SMART ENERGY SAVING, ENERGY STORAGE, ENERGY MANAGEMENT & SMART GRID SYSTEM

The traditional model of large thermal power stations will be replaced by the Internet of Energy: a highly connected system of responsive power generation from both suppliers and consumers resulting in Clean, Secure and Reliable electricity to power the homes, businesses and vehicles of tomorrow.

ENSAVE-SMART³E is an Integrated Energy Saving, Energy Management and Micro-grid solution with Smart Grid control. It is forming an integral part in the future development of Smart Cities, enabling energy generated from sources such as wind and solar to be stored locally and ultimately more efficiently & distributed through small smart grid system.

By allowing ultimate flexibility to business users and electricity grid operators, ENSAVE™-SMART³E enables the evolution from the traditional model of electricity provision to a future smart system of integrated supply and consumption, resulting in lower energy costs, greater security of supply and the transition to a low carbon economy.

ENSAVE™-SMART³E CONSISTS OF;

PERIPHERAL PLANTS;

BENEFICIARIES:

ENSAVE-SMART E allows companies to save and store electricity locally and switch to this stored supply at any time. On site renewable generation can be integrated with ENSAVE-SMART E to provide the maximum cost benefit, this includes:

ENSAVE

SMART³E INTERNET OF ENERGY

ENSAVE-SMART³E FEATURES

ENSAVE-SMART³E USP

SHARING THE STORAGE

As more companies are looking to invest in electric vehicles, the need for convenient and fast charging is becoming apparent. However, there are network barriers, currently limiting how many electrical vehicle (EV) chargers can be in an area. Large numbers of EVs connecting to the National Grid will have a significant impact upon the Distribution Network, causing major network overload unless appropriate management systems and network upgrading occurs.

Not only is this issue applicable to the grid operators, but also business owners who have the issue of a limited supply and face potentially costly supply upgrades.

Our ENSAVE-SMART³E EV rapid/fast charging system utilizes battery storage to limit the amount of energy required from the network at any given time. The system doesn’t just provide feasible rapid charging services, it also offers the following benefits:

The system will store energy during night hours where there is usually excessive electricity generation (low cost) and use it during the day (high cost).

The system behaves like a virtual power station, and is constantly in communication with the grid, allowing participation in schemes such as FFR (Firm Frequency Response) & EFR (Enhanced Frequency Response).

Critical loads downstream of the supply provided for the charger will have full UPS protection for typically 30 minutes

By diverting the use of energy from day time to night time, where generation is higher than demand, there is a substantial CO₂ saving. Environmental Ministry has agreed that for each kWh diverted from day usage to night usage, there is 0.49636kg C0₂ saved.

Renewable energy can be connected directly (direct DC) to charge the storage medium for future DSR or chargingBy diverting the use of energy from day time to night time, where generation is higher than demand, there is a substantial CO₂ saving. Environmental Ministry has agreed that for each kWh diverted from day usage to night usage, there is 0.49636kg C0₂ saved.

ENSAVE-SMART³E BENEFITS

ENSAVE-SMART E is an energy saving and energy storage system which allows for greater control and flexibility of your electricity usage. The system is beneficial for the following reasons

ENSAVE-SMART³E BENEFITS

With the advent of domestic smart metering, residential consumers will increasingly be incentivized to shift their energy consumption to non-peak hours through energy management and domestic battery storage.

The smart City idea conceptualized low cities of the future will incorporate technological developments into smart social infrastructure. Smart living allows greater connectivity and local energy management to create environment friendly sustainable urban development.

As lithium ion costs decrease, electric cars will increasingly provide the transport of the future. Highly integrated and connected consumers will also be able to utilize the battery storage of their vehicles to provide backup energy to their homes.

.Business users are able to make significant cost savings by utilizing battery storage to power industrial sites during peak charging periods without having to alter production patterns. Sufficient battery storage will also negate the need for other forms of back up generation to provide onsite UPS

Fuel cells generate electricity through harnessing the chemical reaction of positively charged hydrogen ions with oxygen. In order to sustain the chemical reaction fuel cells require a continuous source of fuel and oxygen. As fuel cells are powered by hydrogen and oxygen they generate electricity with very little pollution, as the by-product of combining these elements is water.

Solar PV is able to provide scalable clean energy from small scale household installations to grid scale projects. Allied with an effective storage medium, energy generated by solar PV throughout the day can be stored for discharge during the evening periods of peak demand.

The India has the best natural wind resource in Asia to be exploited through onshore and offshore developments. Wind projects can be scaled from individual turbines providing power to industrial sites and communities to large multi-turbine projects feeding directly to the National Grid.

The India has the best natural wind resource in Asia to be exploited through onshore and offshore developments. Wind projects can be scaled from individual turbines providing power to industrial sites and communities to large multi-turbine projects feeding directly to the National Grid.

ENSAVE-SMART³E MODELS

Models
ENSAVE-SMART3E-50K
ENSAVE - SMART3E-100K
ENSAVE-SMART3E-250K
ENSAVE-SMART3E-1M
Rating
50 KW
100 KW
250 KW
1000 KW
Storage
Avg. 72kWh storage
Avg. 220 kWh storage
Avg. 432 kWh storage
Avg. 1000 kWh storage
Size
5 ft. Container
10 ft. Container
20 ft. Container
40 ft. Container