The following two approaches can address the drawbacks associated with mismatching phenomena in photovoltaic (PV) plants: distributed maximum power point tracking (DMPPT) architecture and reconfigurable PV array architecture. Until now, these two approaches have represented alternative solutions. In this paper, for the first time, it is suggested that the two approaches can be used together. In particular, it will be shown how the joint adoption of the DMPPT and reconfiguration approaches can improve the performances of mismatched PV plants; here, performance is understood as the best compromise between the eciency and reliability of the entire PV system. Numerical results confirm the above assumptions, providing the hints for the d...
In order to overcome the drawbacks associated to mismatching operating conditions in PV systems it i...
In this paper, the main causes that are able to limit the efficiency of Distributed Maximum Power Po...
This paper explores the benefits of distributed power electronics in solar photovoltaic applications...
The following two approaches can address the drawbacks associated with mismatching phenomena in pho...
In practical photovoltaic (PV) installations the operating conditions of the panels the PV array is ...
Photovoltaic (PV) energy generation is becoming an increasingly widespread means of producing clean ...
The Distributed Maximum Power Point Tracking (DMPPT) approach is a promising solution to improve the...
Maximum power point tracking (MPPT) is an important feature in solar photovoltaic (PV) systems as it...
Solar photovoltaic (PV) arrays formed by series combination of several PV modules suffer from consid...
Power loss due to photovoltaic (PV) module mismatch is a well-known problem for PV systems. The abil...
This thesis deals with quantifying the merits of Distributed Maximum Power Point Tracking (DMPPT), a...
In this paper, the main factors limiting the efficiency of Distributed Maximum Power Point Tracking ...
In this thesis, di erent strategies that improve the integration of photovoltaic (PV) systems into t...
With everyday passing, power generation from photovoltaic (PV) systems are getting increased around ...
Received 1 September 2014 Received in revised form 31 March 2015 Accepted 20 April 2015 Available ...
In order to overcome the drawbacks associated to mismatching operating conditions in PV systems it i...
In this paper, the main causes that are able to limit the efficiency of Distributed Maximum Power Po...
This paper explores the benefits of distributed power electronics in solar photovoltaic applications...
The following two approaches can address the drawbacks associated with mismatching phenomena in pho...
In practical photovoltaic (PV) installations the operating conditions of the panels the PV array is ...
Photovoltaic (PV) energy generation is becoming an increasingly widespread means of producing clean ...
The Distributed Maximum Power Point Tracking (DMPPT) approach is a promising solution to improve the...
Maximum power point tracking (MPPT) is an important feature in solar photovoltaic (PV) systems as it...
Solar photovoltaic (PV) arrays formed by series combination of several PV modules suffer from consid...
Power loss due to photovoltaic (PV) module mismatch is a well-known problem for PV systems. The abil...
This thesis deals with quantifying the merits of Distributed Maximum Power Point Tracking (DMPPT), a...
In this paper, the main factors limiting the efficiency of Distributed Maximum Power Point Tracking ...
In this thesis, di erent strategies that improve the integration of photovoltaic (PV) systems into t...
With everyday passing, power generation from photovoltaic (PV) systems are getting increased around ...
Received 1 September 2014 Received in revised form 31 March 2015 Accepted 20 April 2015 Available ...
In order to overcome the drawbacks associated to mismatching operating conditions in PV systems it i...
In this paper, the main causes that are able to limit the efficiency of Distributed Maximum Power Po...
This paper explores the benefits of distributed power electronics in solar photovoltaic applications...