2013
Authors
Dufo-López, R; Bernal-Agustín, JL; Monteiro, C;
Publication
AMM - Applied Mechanics and Materials
Abstract
2013
Authors
Bernal-Agustín, JL; Cortés-Arcos, T; Dufo-López, R; Lujano-Rojas, JM; Monteiro, C;
Publication
AMR - Advanced Materials Research
Abstract
2013
Authors
Silva, B; Moreira, CL; Leite, H;
Publication
2013 IEEE PES CONFERENCE ON INNOVATIVE SMART GRID TECHNOLOGIES (ISGT LATIN AMERICA)
Abstract
A fully operational Multi-Terminal DC (MTDC) grid will play a key role for the creation of AC systems interconnection and to integrate offshore wind farms. Disturbances (at both AC and DC side) may culminate in the sudden disconnection of onshore HVDC-VSC (High Voltage Direct Current - Voltage Source Converter). To continue operating the DC grid under these conditions, the development of control functionalities is required. A communication-free advanced control scheme is proposed to be used as a supplementary local control acting at VSC level and aiming on providing fast active power accommodation in the DC grid, culminating on the mitigation of the resulting DC overvoltage. The implementation of the proposed control mechanisms exploits a set of coordinated local control rules at the converter stations and at wind turbines (WT) level. The performance of the proposed strategies is discussed and assessed through numerical simulation in the paper.
2013
Authors
Resende, FO; Matevosyan, J; Milanovic, JV;
Publication
2013 IEEE GRENOBLE POWERTECH (POWERTECH)
Abstract
Large deployment of distributed generation into distribution systems brings new challenges regarding the shift from the passive to the active control paradigm. These challenges have been extended to the field of dynamic equivalence. Developing effective reduced order models for active distribution network cells for dynamic and stability studies require a careful evaluation of the techniques that have been used in conventional power systems. Thus, a survey of the existing approaches is presented in this paper. Also a critical overview is provided regarding their application to active distribution network cells and microgrids. Technical requirements are identified and recommendations are provided.
2013
Authors
Resende, F; Almeida, R; Mendonça, Â; Lopes, JP;
Publication
Handbook of Wind Power Systems - Energy Systems
Abstract
2013
Authors
Holttinen, H; Milligan, M; Ela, E; Menemenlis, N; Dobschinski, J; Rawn, B; Bessa, RJ; Flynn, D; Lazaro, EG; Detlefsen, N;
Publication
2013 IEEE POWER AND ENERGY SOCIETY GENERAL MEETING (PES)
Abstract
Power systems with high wind penetration experience increased variability and uncertainty, such that determination of the required additional operating reserve is attracting a significant amount of attention and research. This paper presents methods used in recent wind integration analyses and operating practice, with key results that compare different methods or data. Wind integration analysis over the past several years has shown that wind variability need not be seen as a contingency event. The impact of wind will be seen in the reserves for non-event operation (normal operation dealing with deviations from schedules). Wind power will also result in some events of larger variability and large forecast errors that could be categorized as slow events. The level of operating reserve that is induced by wind is not constant during all hours of the year, so that dynamic allocation of reserves will reduce the amount of reserves needed in the system for most hours. The paper concludes with recent emerging trends.
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