2023
Authors
R.A, SMN; Mahmoodi, M; Attarha, A; Iria, J; Scott, P; Gordon, D;
Publication
2023 IEEE PES 15th Asia-Pacific Power and Energy Engineering Conference (APPEEC)
Abstract
2023
Authors
Russell, JS; Scott, P; Iria, J;
Publication
2023 IEEE PES Innovative Smart Grid Technologies - Asia (ISGT Asia)
Abstract
2023
Authors
Anuradha, K; Iria, J; Mediwaththe, CP;
Publication
2023 IEEE Region 10 Symposium (TENSYMP)
Abstract
2023
Authors
Attarha, A; Mahmoodi, M; R.A., SMN; Scott, P; Iria, J; Thiébaux, S;
Publication
IEEE Transactions on Energy Markets, Policy and Regulation
Abstract
2023
Authors
Fonseca, NS; Soares, F; Coelho, A; Iria, J;
Publication
2023 19TH INTERNATIONAL CONFERENCE ON THE EUROPEAN ENERGY MARKET, EEM
Abstract
This paper proposes a new decentralized framework for distribution system operators (DSO) to evaluate the network feasibility of the aggregators' bids and remunerate them in case of providing network support services. Compared to other state-of-the-art approaches, this framework is characterized as being more efficient in terms of communication and computational requirements, which is a great advantage for real world applications. The new framework includes a novel optimization model to decide if aggregators' bids should be curtailed or not to ensure network security and minimize DSO costs. To evaluate and compare the proposed DSO framework against the current one, we used the IEEE 69-bus network with three aggregators of distributed energy resources (DER) from the Iberian electricity market. Our experiments show that the proposed DSO framework ensures distribution network security, while the current framework in place in the Iberian Peninsula does not. In addition, we also studied three curtailment policies for the new DSO framework. The results show that minimizing curtailment costs is the most cost-effective policy for the DSO, compared to the other two policies focused on minimizing linear and squared curtailments.
2023
Authors
Aleixo, AC; Dias Jorge, R; Gomes, F; Antunes, L; Barraca, JP; Carvalho, R; Antunes, M; Gomes, D; Gouveia, C; Carrapatoso, A; Alves, E; Andrade, J; Gonçalves, L; Falcão, F; Pinho, B; Pires, L;
Publication
IET Conference Proceedings
Abstract
The present paper presents the implementation of next-generation centralized Protection, Automation, and Control (PAC) solution for Medium Voltage (MV) power grids, developed in the scope of the SCALE project [1]. The main goals of the project are the development, testing, and field pilot deployment of an innovative, fully digital PAC system for Substation Automation (SAS), centralizing in a single device the functionalities of several bay-level Intelligent Electronic Devices (IED). The envisioned system, comprised of a Centralized Protection and Control (CPC) device and Merging Units (MU)/Process Interface Units (PIU), constitutes a highly flexible, resilient, future-proof solution that relies both on modern IEC 61850 standards and on legacy industrial protocols to guarantee multi-vendor interoperability and continued integration with multi-generation devices inside and outside of the substation. Centralizing SAS functionalities in a single device provides access to a wide range of data and measurements that unlocks technologically advanced substation-centric network automation applications. © The Institution of Engineering and Technology 2023.
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