Paris, FRANCE - September 12, 2017 - GE Renewable Energy today unveiled its brand-new 4.8-158 onshore wind turbine, GE's largest high efficiency turbine to date. Featuring the largest rotor in the segment and innovative blade design, the 4.8-158 offers a significant improvement in Annual Energy Production (AEP), reducing the cost of energy for customers with low to medium wind speed sites.

Pete McCabe, President & CEO of GE's Onshore Wind Business said, 'The 4.8-158 design is an important next step in turbine technology and efficiency, and we're excited to introduce this turbine at this moment in time. It is well suited for low to medium wind speed regions worldwide-examples include Germany, Turkey and Australia-as well as for mechanisms like auctions, as countries around the world are putting an increased emphasis on lowering the cost of energy.'

The new 4.8MW wind turbine, GE's first onshore entry in the 4MW space, is equipped with a 158 meter rotor and a range of tip heights up to 240 meters. The combination of a larger rotor and tall towers enables the turbine to take advantage of higher wind speeds and produce more energy.

GE's latest turbine features high tech blades, improved loads and controls, and taller, more cost-effective towers. These new innovative features have been developed thanks to close partnerships with LM Wind Power, Blade Dynamics and GE's Global Research Center.

The 77-meter-long carbon blades leverage the strong track record and material innovations of LM Wind Power, and are their longest onshore blades to date. These carbon blades will enable flexibility, allowing GE to offer its customers a high efficiency product while continuing to drive down LCOE. The blades also feature one of the industry's smallest Bolt Circle Diameters, keeping manufacturing and logistical costs to a minimum.

'This turbine is a great example of what we can achieve through the GE Store, combining technology and development with innovative design and expertise from the Global Research Center, LM Wind Power and Blade Dynamics,' continued Pete McCabe. 'We collected input from more than 30 customers around the world to ensure we are meeting their specific turbine needs with this product as they work to provide lower-cost renewable energy.'

The 4.8-158 leverages the best of GE's 2MW and 3MW platforms, including the proven DFIG-doubly-fed induction generator-and a robust drivetrain architecture. The turbine meets a lower standard of noise emission levels, achieving a 104-dB level during normal operations. The newly-designed machine head reduces the needs for a larger crane while facilitating up-tower repairs and troubleshooting with its up-tower electrical system.

GE's most powerful onshore turbine is built to leverage the intelligence gathered from across the company's 30,000+ fleet of wind turbines. Data analyzed from this large installed base powers the 4.8-158 with GE's next generation control system. By utilizing GE's Predix core applications including Asset Performance Management (APM), Cybersecurity and Business Optimization (BO) solutions, our customers realize business outcomes, including lifecycle extension of the customers' windfarms and improvement of farm economics.

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About GE Renewable Energy
GE Renewable Energy is a $10 billion start-up that brings together one of the broadest product and service portfolios of the renewable energy industry. Combining onshore and offshore wind, hydro and innovative technologies such as concentrated solar power and more recently turbine blades, GE Renewable Energy has installed more than 400+ gigawatts capacity globally to make the world work better and cleaner. With more than 22,000 employees present in more than 55 countries, GE Renewable Energy is backed by the resources of the world's first digital industrial company. Our goal is to demonstrate to the rest of the world that nobody should ever have to choose between affordable, reliable, and sustainable energy.
Follow us @GERenewables and www.gerenewableenergy.com.

GE - General Electric Company published this content on 12 September 2017 and is solely responsible for the information contained herein.
Distributed by Public, unedited and unaltered, on 12 September 2017 06:13:03 UTC.

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