配电网有功无功dg的多智能体控制

O. Ilesanmi, M. Farrag, A. Arshad, Azmy I. Gowaid
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引用次数: 0

摘要

减少化石燃料燃烧和二氧化碳排放的需求导致了电力生产、传输和分配方式的变化。这带来了分布式发电机组(dg)的引入,主要是可再生能源作为配电网内的发电来源。随着分布式发电和储能设备在配电网中的应用越来越广泛,传统电网的结构面临挑战,威胁到其安全可靠运行。本文对光伏与蓄电池储能系统的集成进行了研究。建立了光伏系统和蓄电池存储系统的基本模型。设计模型以保证模型产生有功和无功功率,并开发了包括光伏管理系统、电池管理系统和电网管理系统在内的多智能体控制系统,以控制配电网中多个dg之间的相互作用,以实现高效可靠的运行。本研究的仿真结果表明,电池储能系统可以吸收和产生有功和无功功率,在配电网的电源管理中发挥着重要作用。
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Multiagent Control of DGs in Distribution Network for Active and Reactive Power Management
The need for reduction of burning fossil fuels and CO2 emission has led to a change in how electrical power is being generated, transmitted and distributed. This has brought about the introduction of distributed generation units (DGs) mainly renewable energy resources as sources of power generation within the distribution network. With the growing use of distributed generations and energy storage devices across the distribution network, the architecture of the traditional grid faces challenges that threaten its safe and reliable operation. In this paper, the integration of PV and battery storage system is studied. Base models for a PV system and battery storage system were developed. The models were designed to ensure the generation of active and reactive power from the models and a multiagent control which includes a PV management system, battery management system and grid management system was developed to control the interaction between multiple DGs in the distribution network for efficient and reliable operation. Results from this study conducted via simulation show that battery storage systems are playing a big role in power management in the distribution network as they can absorb and produce both active and reactive power.
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