We show how an adaptive control algorithm can improve the performance of distributed reactive power control in a radial distribution circuit with a high penetration of photovoltaic (PV) cells. The adaptive algorithm is designed to balance the need for power quality (voltage regulation) with the desire to minimize power loss. The adaptation law determines whether the objective function minimizes power losses or voltage regulation based on whether the voltage at each node remains close enough to the voltage at the substation. The reactive power is controlled through the inverter on the PV cells. The control signals are determined based on local instantaneous measurements of the real and reactive power at each node. We use the example of a sin...
Additional intermittent PV generation and variability load profiles can cause problems in voltage r...
Abstract—The intent of the study detailed in this paper is to demonstrate the benefits of inverter v...
Motivated by the need to cope with rapid and random fluctuations of renewable generation, we present...
We show how an adaptive control algorithm can improve the performance of distributed reactive power ...
The addition of renewable generation, such as PV's, throughout a distribution circuit, create signif...
The addition of renewable generation, such as PV's, throughout a distribution circuit, create signif...
Volt-VAR and Volt-Watt functionality in photovoltaic (PV) smart inverters provide mechanisms to ensu...
Volt-VAR and Volt-Watt functionality in photovoltaic (PV) smart inverters provide mechanisms to ensu...
The high-penetration of Distributed Energy Resources (DER) in low voltage distribution grids, mainly...
Abstract—Battery’s role in the development of smart grid is gaining greater attention as an energy s...
Network operators are currently exploring how embedded solar generation can assist with voltage regu...
The intent of the study detailed in this paper is to demonstrate the benefits of inverter var contro...
This paper proposes a completely non-centralized Volt/VAr control (VVC) algorithm for active distrib...
There are interactions between photovoltaic installations (PV) and power network. PV system can have...
High penetration levels of distributed photovoltaic (PV) generation on an electrical distribution ci...
Additional intermittent PV generation and variability load profiles can cause problems in voltage r...
Abstract—The intent of the study detailed in this paper is to demonstrate the benefits of inverter v...
Motivated by the need to cope with rapid and random fluctuations of renewable generation, we present...
We show how an adaptive control algorithm can improve the performance of distributed reactive power ...
The addition of renewable generation, such as PV's, throughout a distribution circuit, create signif...
The addition of renewable generation, such as PV's, throughout a distribution circuit, create signif...
Volt-VAR and Volt-Watt functionality in photovoltaic (PV) smart inverters provide mechanisms to ensu...
Volt-VAR and Volt-Watt functionality in photovoltaic (PV) smart inverters provide mechanisms to ensu...
The high-penetration of Distributed Energy Resources (DER) in low voltage distribution grids, mainly...
Abstract—Battery’s role in the development of smart grid is gaining greater attention as an energy s...
Network operators are currently exploring how embedded solar generation can assist with voltage regu...
The intent of the study detailed in this paper is to demonstrate the benefits of inverter var contro...
This paper proposes a completely non-centralized Volt/VAr control (VVC) algorithm for active distrib...
There are interactions between photovoltaic installations (PV) and power network. PV system can have...
High penetration levels of distributed photovoltaic (PV) generation on an electrical distribution ci...
Additional intermittent PV generation and variability load profiles can cause problems in voltage r...
Abstract—The intent of the study detailed in this paper is to demonstrate the benefits of inverter v...
Motivated by the need to cope with rapid and random fluctuations of renewable generation, we present...