most citedReducing Congestion-Induced Renewable Curtailment with Corrective Network Reconfiguration in Day-Ahead Scheduling

3 citations · 8 across the 5 of their papers we have counts for

collaborators

5 papers

math.OC2020

An Accelerated-Decomposition Approach for Security-Constrained Unit Commitment with Corrective Network Reconfiguration- Part II: Results and Discussion

Arun Venkatesh Ramesh, Xingpeng Li, Kory W. Hedman

This paper presents a novel approach to handle the computational complexity in security-constrained unit commitment (SCUC) with corrective network reconfiguration (CNR) to harness…

math.OC20201 cited

Enhancing System Flexibility through Corrective Demand Response in Security-Constrained Unit Commitment

Arun Venkatesh Ramesh, Xingpeng Li

Currently, system operators implement demand response by dispatching controllable loads for economic reasons in day-ahead scheduling. Particularly, demand shifting from peak hours…

eess.SY20202 cited

Benefits and Cyber-Vulnerability of Demand Response System in Real-Time Grid Operations

Mingjian Tuo, Arun Venkatesh Ramesh, Xingpeng Li

With improvement in smart grids through two-way communication, demand response (DR) has gained significant attention due to the inherent flexibility provided by shifting non-critic…

math.OC20203 cited

Reducing Congestion-Induced Renewable Curtailment with Corrective Network Reconfiguration in Day-Ahead Scheduling

Arun Venkatesh Ramesh, Xingpeng Li

Renewable energy sources (RES) has gained a lot of interest recently. The limited transmission capacity serving RES often leads to network congestion since they are located in remo…

math.OC20202 cited

Security Constrained Unit Commitment with Corrective Transmission Switching

Arun Venkatesh Ramesh, Xingpeng Li

Traditionally, power system operations use a static network to deliver power and meet demand optimally. Network topology reconfiguration through transmission switching (TS) has gai…