Search Results for author: Bikash C. Pal

Found 6 papers, 0 papers with code

Fault Recovery and Transient Stability of Grid-Forming Converters Equipped with Current Saturation

no code implementations8 Mar 2024 Ali Arjomandi-Nezhad, Yifei Guo, Bikash C. Pal, Guangya Yang

The impact of the angle of the magnitude-saturated current on the post-fault recovery and transient stability is also investigated.

Deep Learning Based Forecasting-Aided State Estimation in Active Distribution Networks

no code implementations20 Oct 2023 Malek Alduhaymi, Ravindra Singh, Firdous Ul Nazir, Bikash C. Pal

Operating an active distribution network (ADN) in the absence of enough measurements, the presence of distributed energy resources, and poor knowledge of responsive demand behaviour is a huge challenge.

A Model Predictive Approach for Enhancing Transient Stability of Grid-Forming Converters

no code implementations2 Aug 2023 Ali Arjomandi-Nezhad, Yifei Guo, Bikash C. Pal, Damiano Varagnolo

A model predictive control (MPC) method for enhancing post-fault transient stability of a grid-forming (GFM) inverter based resources (IBRs) is developed in this paper.

Model Predictive Control

Model-Free Optimal Control of Inverter for Dynamic Voltage Support

no code implementations20 Jun 2022 Yifei Guo, Bikash C. Pal, Rabih A. Jabr

Inverter-based resources (IBRs) are required to provide dynamic voltage support (DVS) during voltage dips to enhance the low-voltage ride-through capability.

On the Optimality of Voltage Unbalance Attenuation by Inverters

no code implementations22 Sep 2021 Yifei Guo, Bikash C. Pal, Rabih A. Jabr

In this paper, we investigate the control of inverter-based resources (IBRs) for optimal voltage unbalance attenuation (OVUA).

Global Optimality of Inverter Dynamic Voltage Support

no code implementations30 Jun 2021 Yifei Guo, Bikash C. Pal, Rabih A. Jabr

This paper investigates the dynamic voltage support (DVS) control of inverter-based resources (IBRs) under voltage sags to enhance the low-voltage ride-through performance.

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