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Siemens Energy to strengthen German grid nodes with two STATCOM systems

  • T&D India
  • April 20, 2021
Siemens Energy | T&D India
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German transmission system operator Amprion has commissioned Siemens Energy with the construction of two SVC PLUS series static synchronous compensator (STATCOM) systems to further stabilize the German transmission power grid.

The plants will be in Polsum (North Rhine-Westphalia) and Rheinau (Baden-Württemberg). Both systems are designed for a reactive power range of +/- 600 Mvar making them among the most powerful systems in the world.

In addition, the STATCOMs will feature innovative grid-supporting control mechanisms allowing the systems to efficiently compensate for increasing voltage fluctuations in the electrical transmission network.

Amprion GmbH is one of the four transmission system operators in Germany.

 

Volatile feed-ins of renewables

The share of renewable energies is growing worldwide. However, their volatile feed-ins put significant strain on the power grids. Due to the geographical arrangement of renewable energy generation, the distance to the consumption centers is growing. In Germany, for example, the space is growing between large wind farms that feed into the energy grid in the north and load centers in other parts of the country. This makes the transmission network more susceptible to voltage fluctuations and interference.

 

For a long time, large power plants have provided the reactive power necessary for grid stabilization. However, due to the energy transition many of these conventional power plants, which are operated with nuclear or fossil fuels, are being taken off the grid.

 

The solution

As a result, transmission system operators like Amprion set up STATCOM systems at important grid nodes. They compensate for the voltage fluctuations by regulating the reactive power as required, keeping the grid voltage in a stable range. In addition, the expansion of renewable energy generation allows greater use of power lines, reinforcing the need for increased reactive power compensation. This requires STATCOM systems with increasing capacities up to +/- 600 Mvar reactive power.

 

Power partnership

“The restructuring of the energy system requires many individual innovative solutions,” says Dr. Hendrik Neumann, Chief Technical Officer of Amprion GmbH. “We are very pleased to have Siemens Energy as an experienced technology partner at our side working with us on a stable power grid for the future.

“Powerful partnerships are the key to success to make the grids fit for the energy landscape of tomorrow,” says Beatrix Natter, Executive Vice President Transmission at Siemens Energy. “We are thankful for this trust and look forward to continuing to support Amprion in expanding the network in Germany as required and thus paving the way for a climate-friendly energy system.”

 

New technology

The STATCOM systems available today do not yet have these comprehensive network-supporting properties. They use common current control schemes that are state-of-the-art power electronic equipment for transmission grid applications. Technology companies like Siemens Energy will further develop the control algorithms and possibly the hardware accordingly. The new turnkey STATCOM system that Siemens Energy will build in Polsum and Rheinau will have these new grid-supporting features

 

Also read: Siemens Introduces New LV HRC Fuse Link For Increased Supply Security

 

Market leader

Siemens Energy is market leader in terms of number and total installed capacity of the worldwide installed STATCOM systems with modular multilevel power converter technology.

 

Featured photograph shows the static synchronous compensator (STATCOM) in Kriftel, which is one of three STATCOMs that Siemens Energy has already built for Amprion. In addition to the Gersteinwerk project, Siemens Energy is now developing two further plants in Rheinau and Polsum. They will be among the most powerful STATCOM installations worldwide.

Bajel Projects | T & D India
Tags
  • German transmission
  • Siemens
  • STATCOM
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