This chapter is focused on Power Take-Off (PTO) systems for wave energy converters (WEC), being one of the most important elements since PTOs are responsible to transform the mechanical power captured from the waves into electricity. It presents Direct-Drive PTO (DDPTO) as one of the most reliable solutions to be adapted to some particular types of WEC, such as point absorbers. A discussion about modularity and adaptability, together with intrinsic characteristics of direct-drive PTOs, is also included. Among the different technologies of electric machines that can be used in direct-drive linear PTOs, switched reluctance machines (SRM) are described in further detail. In particular, the Azimuthal Multi-translator SRM is presented as a suita...
The Power Take-Off (PTO) is the core of a Wave Energy Converter (WECs), being the technology convert...
Linear permanent magnet generators are commonly used as the power take-off system in direct drive wa...
Graduation date: 2017Access restricted at author's request, from January 11, 2017 - January 11, 2019...
One of the key challenges in wave energy conversion is the improvement of the Power Take-Off (PTO) s...
This paper attempts to summarize the current state of the wave energy converters worldwide, introduc...
The traditional wave energy converters (WECs) use hydraulic or turbine-type power take-off (PTO) mec...
A permanent magnet linear electrical machine power takeoff (PTO) unit is simulated on the direct dri...
In this paper a back-to-back voltage source converter controlled linear permanent magnet generator (...
Wave Energy Converters (WECs) are a form of renewable energy that harvests energy from the waves in ...
This paper investigates the issues associated with converting the energy produced by marine renewabl...
Waves are one of the most promising renewable energy sources. Several concepts of wave energy conver...
Wave energy conversion is a promising alternative to produce clean energy from the huge available re...
Direct drive wave energy converter (WEC) and buoy control algorithms have shown great potential for ...
Several devices have been developed to convert the wave energy into electricity and they can be foun...
With an estimated overall power of 1 TW along the worldwide coasts, waves are a promising renewable ...
The Power Take-Off (PTO) is the core of a Wave Energy Converter (WECs), being the technology convert...
Linear permanent magnet generators are commonly used as the power take-off system in direct drive wa...
Graduation date: 2017Access restricted at author's request, from January 11, 2017 - January 11, 2019...
One of the key challenges in wave energy conversion is the improvement of the Power Take-Off (PTO) s...
This paper attempts to summarize the current state of the wave energy converters worldwide, introduc...
The traditional wave energy converters (WECs) use hydraulic or turbine-type power take-off (PTO) mec...
A permanent magnet linear electrical machine power takeoff (PTO) unit is simulated on the direct dri...
In this paper a back-to-back voltage source converter controlled linear permanent magnet generator (...
Wave Energy Converters (WECs) are a form of renewable energy that harvests energy from the waves in ...
This paper investigates the issues associated with converting the energy produced by marine renewabl...
Waves are one of the most promising renewable energy sources. Several concepts of wave energy conver...
Wave energy conversion is a promising alternative to produce clean energy from the huge available re...
Direct drive wave energy converter (WEC) and buoy control algorithms have shown great potential for ...
Several devices have been developed to convert the wave energy into electricity and they can be foun...
With an estimated overall power of 1 TW along the worldwide coasts, waves are a promising renewable ...
The Power Take-Off (PTO) is the core of a Wave Energy Converter (WECs), being the technology convert...
Linear permanent magnet generators are commonly used as the power take-off system in direct drive wa...
Graduation date: 2017Access restricted at author's request, from January 11, 2017 - January 11, 2019...