We propose a consensus-based distributed voltage control (DVC), which solves the problem of reactive power sharing in autonomous meshed inverter-based microgrids with inductive power lines. Opposed to other control strategies available thus far, the DVC does guarantee reactive power sharing in steady-state while only requiring distributed communication among inverters, i.e. no central computing nor communication unit is needed. Moreover, we provide a necessary and sufficient condition for local exponential stability. In addition, the performance of the proposed control is compared to the usual voltage droop control [1] in a simulation example based on the CIGRE benchmark medium voltage distribution network
Decentralised droop-like control method is the most favourable control system for power converter-ba...
In this work we present new distributed controllers for secondary frequency and voltage control in i...
This paper addresses the voltage restoration and reactive power sharing problem of an autonomous mic...
We propose a consensus-based distributed voltage control (DVC) that solves the problem of reactive p...
We consider small-scale power systems consisting of several inverter-interfaced units connected in p...
This paper proposes a distributed control strategy for voltage and reactive power regulation in ac M...
We consider the problem of voltage and frequency stability for an autonomous inverter-based microgri...
A cooperative distributed secondary/primary control paradigm for AC microgrids is proposed. This sol...
In this paper, power-sharing management control on an AC islanded microgrid is investigated to achie...
In this paper, a novel distributed control algorithm for current sharing and voltage regulation in D...
This paper presents consensus-based distributed control strategies for voltage regulation and power ...
In this letter we propose a new distributed controlscheme, achieving current sharing and average vol...
In this paper, a novel distributed control algorithm for current sharing and voltage regulation in D...
© 2017 IEEE. This research addresses the control problem of microgrids and presents a robust distrib...
Decentralised droop-like control method is the most favourable control system for power converter-ba...
In this work we present new distributed controllers for secondary frequency and voltage control in i...
This paper addresses the voltage restoration and reactive power sharing problem of an autonomous mic...
We propose a consensus-based distributed voltage control (DVC) that solves the problem of reactive p...
We consider small-scale power systems consisting of several inverter-interfaced units connected in p...
This paper proposes a distributed control strategy for voltage and reactive power regulation in ac M...
We consider the problem of voltage and frequency stability for an autonomous inverter-based microgri...
A cooperative distributed secondary/primary control paradigm for AC microgrids is proposed. This sol...
In this paper, power-sharing management control on an AC islanded microgrid is investigated to achie...
In this paper, a novel distributed control algorithm for current sharing and voltage regulation in D...
This paper presents consensus-based distributed control strategies for voltage regulation and power ...
In this letter we propose a new distributed controlscheme, achieving current sharing and average vol...
In this paper, a novel distributed control algorithm for current sharing and voltage regulation in D...
© 2017 IEEE. This research addresses the control problem of microgrids and presents a robust distrib...
Decentralised droop-like control method is the most favourable control system for power converter-ba...
In this work we present new distributed controllers for secondary frequency and voltage control in i...
This paper addresses the voltage restoration and reactive power sharing problem of an autonomous mic...