Inside our workshop, technicians are conducting a full‑scale bench test for the electric pitch‑control system of large‑scale horizontal‑axis wind turbines.

During this rigorous test, engineers verify the reliability of blade angle adjustment, load‑bearing performance and emergency protection functions under simulated operating conditions. Electric pitch‑control technology enables automatic blade angle regulation according to real‑time wind speed. It boosts power‑generation efficiency in moderate wind and protects the whole unit from overload damage in strong winds.

Strict offline bench testing before delivery helps us detect potential defects, improve equipment stability and ensure every large‑capacity wind turbine meets high‑quality standards for long‑term field operation.

A SMARAAD 200‑kilowatt horizontal‑axis wind turbine is being hoisted and assembled on the vast grasslands of Inner Mongolia. Two heavy‑duty mobile cranes cooperate to complete the precise lifting work of the nacelle and blades at this remote wind‑power site.

The open grassland features steady, abundant wind resources, which perfectly matches the high‑power generation capacity of our 200 kW unit. This on‑grid wind generator is built to endure harsh plateau weather, including strong winds, large temperature differences and dust‑filled conditions.

Once fully commissioned, this turbine will deliver large‑volume stable power output for local off‑grid micro‑grids, pasture operations or commercial power‑supply projects. The project demonstrates our full‑turnkey capability, covering equipment production, site transportation and large‑scale on‑site installation in wide‑open pastoral regions.

This off‑grid hybrid power station, equipped with two sets of SMARAAD 100‑kilowatt horizontal‑axis wind turbines and large‑scale solar panel arrays, has been completed in a remote mountainous zone of Central Asia.

The wind‑solar complementary design perfectly offsets the power‑generation weaknesses of each single energy source. Solar panels harvest energy during bright sunny daytime, while wind turbines make full use of mountain‑valley wind resources to generate power on cloudy days and through the night. Combined with battery energy‑storage equipment, the system delivers stable, uninterrupted electricity supply for isolated communities, mining sites and remote infrastructure far away from the main utility grid.

Our 100 kW wind turbines are engineered to withstand harsh high‑altitude environments, including strong gusty winds, sharp temperature swings and dry, dusty conditions. This turn‑key distributed energy solution proves an ideal choice for power‑deficient, off‑grid areas across Central‑Asia high‑land terrain.

Two SMARAAD 100‑kilowatt grid‑tied horizontal‑axis wind turbines have been deployed across open farmland in rural Ukraine.

Built on spacious flat agricultural terrain with steady seasonal wind flow, this small‑scale wind farm is designed to supply local farms, rural communities and nearby industrial facilities with affordable, locally‑generated power. The tower‑integrated internal‑ladder design provides safe, convenient access for routine maintenance and on‑site inspections by field technicians.

Our 100 kW on‑grid turbines are well‑adapted to Ukraine’s continental climate, reliably operating through cold winters and windy autumn seasons. This distributed wind‑power solution offers land‑owning businesses a practical way to cut long‑term electricity costs and achieve greater energy self‑sufficiency.

Four H-type vertical axis wind turbines have been erected on the open square opposite Yanzhao Building in Shijiazhuang, Hebei Province.
These vertical wind units can capture wind from all directions steadily against complex urban turbulent airflow around high-rise buildings. With low noise and stable operation, the turbines generate clean power for public lighting, garden facilities and auxiliary power loads within the building complex.
This urban landmark wind power project showcases the practicability of SMARAAD vertical axis turbines in downtown commercial zones. It supplies distributed green power while acting as a visible low-carbon landscape for the central business district.

Two H-type vertical axis wind turbines are mounted on the building rooftop within Suzhou Industrial Park, forming an independent wind power generation system with supporting control cabinets.
Different from horizontal wind turbines, H-shaped vertical axis products adapt well to the disordered turbulent wind of urban building clusters with omnidirectional wind capturing capability, featuring low vibration and quiet operation. The generated electricity is applied to office power supply, public area lighting and building auxiliary equipment inside the plant building.
The rooftop installation mode saves valuable ground space for the enterprise. This project offers a feasible distributed energy solution for factory buildings, office parks and industrial zones to cut grid electricity costs and lower overall carbon emissions.

Our tricolor X-shaped vertical axis wind turbines are paired with solar panels to build an independent wind-solar hybrid power supply system for landscape street lighting inside a Wuxi campus park.
This integrated system collects wind and solar energy simultaneously during daytime, stores electricity inside matched batteries, and supplies power for nighttime road lighting. The vertical axis design captures wind from all directions steadily with low running noise, perfectly fitting quiet campus environments.
With no reliance on municipal power cables for operation, these hybrid street lamps cut public electricity expenditure while presenting a vivid display of clean energy technology for teachers and students. This lightweight distributed solution is ideal for campuses, residential quarters and municipal green roads.

SMARAAD 50kW SD horizontal-axis wind turbines have been successfully erected at the wind-solar complementary power station in Zhenlai County, Jilin Province. Matched with large-area ground-mounted photovoltaic panels, the integrated system supplies stable power for local station buildings and supporting facilities on the open grassland.
Optimized for the windy, cold climate of Northeast China, the SD series turbines deliver steady power output amid strong seasonal winds. The on-site construction setup reflects our full capability covering equipment production, field hoisting and overall system installation. This distributed hybrid station effectively cuts local grid power consumption and provides a reliable clean energy solution for pastoral and outlying industrial areas.

Under a clear blue Bangladeshi sky, our SMRAAD technicians marked a key milestone on November 20, 2025: the installation of two custom 80KW vertical-axis wind turbines for a local client.
The photo captures the final stages of setup—crane in action, the sleek white turbine structures standing tall against lush greenery. Unlike traditional horizontal-axis models, these vertical-axis units are tailored to Bangladesh’s wind patterns: they operate efficiently in low-wind conditions, require minimal maintenance, and blend smoothly with the regional landscape.
This project aligns with our commitment to delivering site-specific renewable solutions—empowering communities and businesses with reliable, clean energy. Our team worked closely with the client to optimize the turbines for local climate and power needs, ensuring long-term performance and sustainability.
Client Spotlight
“SMRAAD’s attention to our region’s unique wind and terrain needs made all the difference,” shared our client’s project lead. “These turbines aren’t just equipment—they’re a long-term investment in stable, eco-friendly power for our operations. The team’s on-site expertise and customization process exceeded our expectations.”

Climate change is the greatest threat facing humanity today. With an overwhelming need to reduce CO2 emissions worldwide comes a rising demand for renewable energy sources. One key contributor to achieving climate change targets around the world is offshore wind.