José Roberto Sanches Mantovani

Orcid: 0000-0002-7149-6184

According to our database1, José Roberto Sanches Mantovani authored at least 14 papers between 2016 and 2021.

Collaborative distances:
  • Dijkstra number2 of five.
  • Erdős number3 of five.

Timeline

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Bibliography

2021
Optimal Restoration of Active Distribution Systems With Voltage Control and Closed-Loop Operation.
IEEE Trans. Smart Grid, 2021

Short-Term Distribution System Planning Using a System Reduction Technique.
IEEE Access, 2021

Optimal Power Flow Problem Solution Through a Matheuristic Approach.
IEEE Access, 2021

Resilience enhancement in the planning of medium-and low voltage power distribution systems with microgrid formation.
Proceedings of the IEEE PES Innovative Smart Grid Technologies Europe, 2021

A New Approach to Determine a Distribution Network Usage Fee for Distributed Generators.
Proceedings of the IEEE PES Innovative Smart Grid Technologies Europe, 2021

2020
A Mixed Integer Conic Model for Distribution Expansion Planning: Matheuristic Approach.
IEEE Trans. Smart Grid, 2020

Carbon Footprint Management: A Pathway Toward Smart Emission Abatement.
IEEE Trans. Ind. Informatics, 2020

Increasing Distributed Generation Hosting Capacity in Distribution Networks: A CO2 Emission Analysis.
Proceedings of the IEEE PES Innovative Smart Grid Technologies Europe, 2020

Resilience Enhancing Through Microgrids Formation and Distributed Generation Allocation.
Proceedings of the IEEE PES Innovative Smart Grid Technologies Europe, 2020

2019
Incorporating a Nodal Reactive Power Pricing Scheme Into the DisCo's Short-Term Operation.
IEEE Trans. Smart Grid, 2019

2018
Detecting and Locating Non-Technical Losses in Modern Distribution Networks.
IEEE Trans. Smart Grid, 2018

2017
Development of a Self-Healing Strategy With Multiagent Systems for Distribution Networks.
IEEE Trans. Smart Grid, 2017

2016
Distribution System State Estimation Using the Hamiltonian Cycle Theory.
IEEE Trans. Smart Grid, 2016

Optimal short-term operation of a DisCo including voltage-sensitive loads.
Proceedings of the Power Systems Computation Conference, 2016


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