It is well known that control systems, which can modulate the power takeoff force of a wave energy device, have the capability of extending the effective device bandwidth and thereby improve energy capture. For an array of wave energy devices, there is the additional complication that each device is subject to radiated waves from other devices, which are a function of the device motion and, hence, an indirect function of each of the device controllers. This gives the possibility of enhancing the energy harvesting properties of the wave farm as a whole, by giving each controller information about the motion of other devices and employing a global performance function which allows coordinated control for the overall benefit of the farm. This ...
In the field of renewable energy, one of the most promising branches is wave energy conversion. Syst...
It is well known that the total power converted by a wave energy farm is influenced by the hydrodyna...
This work focuses on an array of point absorbers, with linear permanent magnet generators (LPMG) con...
It is well known that control systems, which can modulate the power takeoff force of a wave energy d...
It is well known in the literature that the total absorbed energy of a farm of wave energy converte...
In this paper, we investigate the differences between two control strategies for a two-device linea...
Somewhat similar to wind farms, commercial wave energy will be realized using farms of devices. Howe...
Given the great potential resource, the utilization of wave energy for electricity production can m...
This paper presents an overview of the motivation, background to and state-of- the-art in energy ma...
In this paper we compare the optimal configurations for an array of WECs given two control sc...
A significant role is envisaged for ocean wave energy to meet the different renewable energy targets...
In this paper we compare the optimal configurations for an array of WECs given two control schemes, ...
This chapter examines the use of wave energy device (and array) models for model-based control. To d...
Wave energy converters (WECs) are traditionally designed independently of control systems. This usua...
In the field of renewable energy, one of the most promising branches is wave energy conversion. Syst...
It is well known that the total power converted by a wave energy farm is influenced by the hydrodyna...
This work focuses on an array of point absorbers, with linear permanent magnet generators (LPMG) con...
It is well known that control systems, which can modulate the power takeoff force of a wave energy d...
It is well known in the literature that the total absorbed energy of a farm of wave energy converte...
In this paper, we investigate the differences between two control strategies for a two-device linea...
Somewhat similar to wind farms, commercial wave energy will be realized using farms of devices. Howe...
Given the great potential resource, the utilization of wave energy for electricity production can m...
This paper presents an overview of the motivation, background to and state-of- the-art in energy ma...
In this paper we compare the optimal configurations for an array of WECs given two control sc...
A significant role is envisaged for ocean wave energy to meet the different renewable energy targets...
In this paper we compare the optimal configurations for an array of WECs given two control schemes, ...
This chapter examines the use of wave energy device (and array) models for model-based control. To d...
Wave energy converters (WECs) are traditionally designed independently of control systems. This usua...
In the field of renewable energy, one of the most promising branches is wave energy conversion. Syst...
It is well known that the total power converted by a wave energy farm is influenced by the hydrodyna...
This work focuses on an array of point absorbers, with linear permanent magnet generators (LPMG) con...