审查智能电网系统的需求

Hania El-Kanj Baitie, T. Selmi
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引用次数: 15

摘要

智能电网技术是现有技术和发展中技术的综合。这项技术能够提高电力生产和消费的效率,提高可再生能源的可靠性和并网能力。目前的电网集中于集中供电源。然而;电网的设计可以修改,从而增强,以接收固定和可预测的负荷,并通过电网接收来自可再生能源和分布式能源的电力。另一方面,由于这些资源具有不连续和非单调的性质,电网需要集成监测和控制技术,并与自动化过程相结合,以控制分散的能量流,并规划备用容量以吸收间歇性发电。太阳能光伏发电系统由多个阶段组成,其中转换阶段是整个系统中最关键的阶段之一。因此,该阶段的特性和特征控制着太阳能光伏系统的行为。因此;建议将智能接口接入光伏系统,使电网具备处理电力和通信双向流动的能力。这种实施是必要的,并将允许太阳能技术在高渗透发展中的无缝集成。本文从可再生能源并网的角度对智能电网的特点进行了综述。因此,在市场上进行了广泛的研究,以检查与太阳能光伏应用兼容的不同无变压器逆变器的可用性。然后,对所选逆变器的特性与智能电网的特性进行了比较。因此,本文对所设计的无变压器逆变器进行了详细的描述和仿真。
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Review of smart grid systems' requirements
Smart grid technology is a collection of existing and developing technologies all combined together. This technology is capable of enhancing the efficiency in production and consumption of electricity and improves the reliability and integration of renewable power into the grid. Current grids focus on centralized supply sources. However; the grid's design can be modified and thus enhanced to receive fixed and predictable loads and to accept power from the renewable and distributed energy resources all through the grid. On the other hand, knowing that these resources are discontinuous and non-monotonic in nature, the grid requires an integration of monitoring and control technologies, as well as integration with automation processes in the aim of controlling divergent energy flows and planning for standby capacity to absorb the intermittent generation. The solar photovoltaic (PV) system consists of many stages with the conversion stage as one of the most crucial stage in the whole system. Accordingly, the characteristics and features of this stage control the behaviour of the solar PV system. Therefore; it is recommended that intelligent interfaces be linked and connected to the PV system to empower the grid the ability to handle two-way flows of power and communication. This implementation is required and will permit the seamless integration of solar technologies in high-penetration developments. In this paper, the authors aimed at reviewing the smart grid characteristics in the light of integrating renewable energy. In accordance, a wide research is conducted in the market to check the availability of different transformerless inverters that are compatible with solar PV applications. Following, a comparison between the features of selected inverters and those of smart grid is obtained. Consequently, a detailed description as well as the simulation of the designed transformerless inverter is demonstrated in this paper.
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