Motivated by the need to cope with rapid and random fluctuations of renewable generation, we presents a model that augments the traditional Volt/VAR control through switched controllers on a slow timescale with inverter control on a fast timescale. The optimization problem is generally nonconvex and therefore hard to solve. We propose a simple convex relaxation and prove that it is exact provided over-satisfaction of load is allowed. Hence Volt/VAR control over radial networks is efficiently solvable. Simulations of a real-world distribution circuit illustrates that the proposed inverter control achieves significant improvement over the IEEE 1547 standard in terms of power quality and power savings
The distribution systems are increasingly challenged by the continued prevalence of distributed ener...
Rapid increase in the integration of intermittent renewable energy sources into existing distributio...
This paper presents a decentralized volt-var control (VVC) and network reconfiguration strategy to a...
Motivated by the need to cope with rapid and random fluctuations of renewable generation, we present...
Motivated by the need to cope with rapid and random fluctuations of renewable generation, we present...
Abstract—The intent of the study detailed in this paper is to demonstrate the benefits of inverter v...
The intent of the study detailed in this paper is to demonstrate the benefits of inverter var contro...
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...
The increasing penetration of renewable and distributed energy resources in distribution networks ca...
We consider the decentralized reactive power control of photovoltaic (PV) inverters spread throughou...
We consider the decentralized reactive power control of photovoltaic (PV) inverters spread throughou...
We consider the decentralized reactive power control of photovoltaic (PV) inverters spread throughou...
This paper proposes a completely non-centralized Volt/VAr control (VVC) algorithm for active distrib...
We consider the decentralized reactive power control of photovoltaic (PV) inverters spread throughou...
The distribution systems are increasingly challenged by the continued prevalence of distributed ener...
Rapid increase in the integration of intermittent renewable energy sources into existing distributio...
This paper presents a decentralized volt-var control (VVC) and network reconfiguration strategy to a...
Motivated by the need to cope with rapid and random fluctuations of renewable generation, we present...
Motivated by the need to cope with rapid and random fluctuations of renewable generation, we present...
Abstract—The intent of the study detailed in this paper is to demonstrate the benefits of inverter v...
The intent of the study detailed in this paper is to demonstrate the benefits of inverter var contro...
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...
The increasing penetration of renewable and distributed energy resources in distribution networks ca...
We consider the decentralized reactive power control of photovoltaic (PV) inverters spread throughou...
We consider the decentralized reactive power control of photovoltaic (PV) inverters spread throughou...
We consider the decentralized reactive power control of photovoltaic (PV) inverters spread throughou...
This paper proposes a completely non-centralized Volt/VAr control (VVC) algorithm for active distrib...
We consider the decentralized reactive power control of photovoltaic (PV) inverters spread throughou...
The distribution systems are increasingly challenged by the continued prevalence of distributed ener...
Rapid increase in the integration of intermittent renewable energy sources into existing distributio...
This paper presents a decentralized volt-var control (VVC) and network reconfiguration strategy to a...