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논문 기본 정보

자료유형
학술저널
저자정보
Pyeong-Ik Hwang (Korea University) Gilsoo Jang (Korea University) Gi-Chan Pyo (Samsung Heavy Industries) Byung-Moon Han (Myongji University) Seung-Il Moon (Seoul National University) Seon-Ju Ahn (Chonnam National University)
저널정보
대한전기학회 Journal of Electrical Engineering & Technology Journal of Electrical Engineering & Technology Vol.10 No.2
발행연도
2015.3
수록면
452 - 464 (13page)

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초록· 키워드

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This paper proposes a DC microgrid operational strategy and control method for improved service reliability. The objective is to supply power to as many non-critical loads as possible, while providing an uninterrupted power supply to critical loads. The DC bus signaling method, in which DC voltage is an information carrier, is employed to implement the operational strategy in a decentralized manner. During grid-connected operation, a grid-tied converter balances the power of the microgrid by controlling the DC voltage. All loads are connected to the microgrid, and operate normally. During islanded operation, distributed generators (DGs), a backup generator, or an energy storage system balances the power. However, some non-critical loads may be disconnected from the microgrid to ensure the uninterrupted power supply to critical loads. For enhanced service reliability, disconnected loads can be automatically reconnected if certain conditions are satisfied. Control rules are proposed for all devices, and detailed microgrid operational modes and transition conditions are then discussed. Additionally, methods to determine control parameter settings are proposed. PSCAD/EMTDC simulation results demonstrate the performance and effectiveness of the proposed operational strategy and control method.

목차

Abstract
1. Introduction
2. DC Bus Signaling
3. Operational Strategy and Control Rules for Devices
4. Operational Modes
5. Parameter Determination Method
6. Simulations and Results
7. Conclusions
References

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