Distributed generation for Microgrid technology

None Mohamed Belrzaeg, None Mohamed Abou Sif, None Emad Almabsout, None Umar Ali Benisheikh
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Abstract

Distributed Generation (DG) refers to the generation of electricity from various small-scale sources of energy such as solar panels, wind turbines, or micro-turbines, located near the consumers. Microgrids (MGs), on the other hand are localized and autonomous electrical systems that can operate independently or in connection with the main power grid. The integration of DG within MGs has gained significant attention due to its potential benefits. This arrangement allows for increased efficiency, improved reliability, and enhanced resilience in the delivery of electricity. Furthermore, it enables the utilization of Renewable Energy Sources (RESs), reducing reliance on conventional fossil fuel-based power generation. In an MG with DG, the power generation sources are dispersed throughout the grid, supplying electricity to nearby consumers. Depending on the availability and generation capacity of each source, the MG can efficiently balance the energy supply and demand. In cases where excess generation occurs, the surplus energy can be exported back to the primary grid or stored for future use. The decentralized nature of distributed generation in MGs also contributes to more excellent grid stability and reliability. If any part of the main grid experiences a power outage, the MG can continue to operate independently, providing uninterrupted electricity to the connected consumers. This feature is especially valuable in remote areas, critical facilities, or during emergencies, where maintaining a reliable power supply is essential.
分布式发电微电网技术
分布式发电(DG)是指利用各种小型能源,如太阳能电池板、风力涡轮机或微型涡轮机,在消费者附近发电。另一方面,微电网(mg)是本地化和自主的电力系统,可以独立运行或与主电网连接。DG在mg中的整合由于其潜在的好处而获得了极大的关注。这种安排可以提高效率,提高可靠性,增强电力输送的弹性。此外,它能够利用可再生能源(RESs),减少对传统化石燃料发电的依赖。在有DG的MG中,发电源分散在整个电网中,为附近的用户供电。根据各能源的可用性和发电能力,有效地实现能源供需平衡。在发电过剩的情况下,多余的能量可以输出回主电网或储存起来供将来使用。分布式发电的分散性也有助于提高电网的稳定性和可靠性。如果主电网的任何部分断电,MG可以继续独立运行,为连接的用户提供不间断的电力。在偏远地区、关键设施或紧急情况下,保持可靠的电力供应至关重要,这一特性尤其有价值。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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