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Our technology will transform the world’s energy sector

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How it works

Wind power

Converting wind generated by trains into kinetic energy by rotating turbine

How it works

Electro conversion

Conversion of mechanical energy into electrical energy using an electric motor

How it works

Flow control

Management of accumulated energy, battery capacity and process

How it works

Energy accumulation

Storing electrical energy in batteries and transferring it to the system

How it works

Energy transfer

AC Transformation Using Substation Network

How it works

Energy use

Charging a car or a whole city. No restrictions

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the railwind techniology

About technology

Turning train-induced wind into clean energy throught smart engineering and sustainable innovation

Wind Energy

Mechanical Energy

Electic Energy

Storage Unit

Control Unit

Eco-friendly

Benefits of Rail Wind Technology 2.0

Local electricity generation refers to the production of electrical energy at or near the point of consumption. It typically relies on small-scale energy systems, such as solar panels, wind turbines, or micro-hydropower plants, which are installed on rooftops, community spaces, or private properties. This method reduces dependency on centralized power grids, minimizes transmission losses, and enhances energy resilience. Local generation can be particularly beneficial for remote or off-grid areas, contributing to sustainable and decentralized energy solutions.

Rural electrification involves extending access to reliable and affordable electricity in underdeveloped and remote regions. This initiative is crucial for improving living standards, fostering economic growth, and supporting essential services such as education, healthcare, and agriculture in rural areas. The process often involves grid extension, deployment of off-grid solutions like solar home systems, or community microgrids. Rural electrification empowers communities by providing opportunities for industrialization, better communication, and overall socio-economic development.

EV charging integration focuses on creating an interconnected and accessible charging infrastructure for electric vehicles (EVs). It involves harmonizing charging stations with energy grids, renewable energy sources, and smart technologies to optimize efficiency and minimize environmental impact. By integrating advanced solutions like vehicle-to-grid (V2G) technology and fast-charging networks, this initiative promotes EV adoption, reduces reliance on fossil fuels, and supports the global transition to sustainable transportation systems.

Enhanced train safety encompasses the adoption of advanced technologies, policies, and practices to ensure the safety of passengers, cargo, and infrastructure in rail transport. Innovations like automated train control systems, real-time monitoring, predictive maintenance, and collision avoidance mechanisms play key roles in minimizing risks. Enhanced safety measures not only prevent accidents but also improve efficiency, reliability, and public confidence in rail systems, making it a preferred mode of transportation for many.

Key Features

Environmental Impact:

Reduction of 3.59 billion tons of CO2 emissions per year

Innovation and Prestige:

Unique and advanced technology of wind power generation on railway track

24/7 Electricity Generation

Unlike solar and wind, our technology works around the clock.

Cost-Effective Power

High energy output at low costs.

Eco-Friendly

Reduces CO2 emissions significantly.

Investment Opportunity

Join us and be part of the energy revolution.

  • Apple
  • Google
  • Tesla
  • RWT

Those who invested in Apple in 2016 received a 920% profit after 8 years

Those who invested in Google in 2016 received a 457% profit after 8 years

Those who invested in Tesla in 2016 received a 1528% profit after 8 years

Targets of RWT 2.0

15,000TW per day (approx)

Electricity generation around the world

$0.05 - $0.15 per kWh

Selling rate

3.59 billion tons of CO2 per year

Reduction in emissions

$1.1 trillion 

Annual turnove