三模可控DFIG风力发电并网可再生能源混合系统能量管理策略与控制

Mohammed Othmani, My Tahar Lamchich
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摘要

本文研究了利用光伏太阳能发电机(PVG)和基于DFIG的三模可控风力发电系统以及基于电池的储能系统的并网混合可再生能源系统(GCHRES)的三种新型能源管理策略。CCP是公用电网(UG)和主要由可再生能源(RES)供电的住宅交流负荷之间的连接点。UG作为备用电源,为了限制订阅功率的超出,电池被设计为执行调峰。鉴于电池的高度脆弱性,所有提出的ems的主要目标是保持持续供电,同时保护电池免受过充和深度放电。此外,这些ems旨在降低UG客户每月的能源账单。这些ems的具体功能因计量类型而异。为了保持系统内的平衡,所有组成部分的力量都受到控制。在MATLAB/SIMULINK环境下对GCHRES的性能进行了仿真评估。本文从连续满足需求的能力、系统的稳定性、参考点的跟踪以及风力机系统的控制等方面进行了讨论。关键词:控制与调节,DFIG,能源管理策略,并网,调峰,光伏,俯仰控制,可再生能源,风力发电
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Energy Management Strategies and Control of a Hybrid Grid-Connected Renewable Energy System with Three Modes Controlled DFIG based Wind Turbine
This paper deals with three novel Energy Management Strategies (EMS) for a Grid-Connected Hybrid Renewable Energy System (GCHRES) that utilizes a photovoltaic solar generator (PVG) and three modes controlled Wind Turbine system based on DFIG, along with a storage system based on battery. The CCP serves as the connection point between the Utility Grid (UG) and a residential AC load, primarily powered by the Renewable Energy Sources (RES). The UG acts as a backup source, and to limit the subscription power exceeding, the battery is designed to perform the peak shaving. Given the high vulnerability of batteries, the primary goal of all proposed EMSs is to maintain a continuous power supply while also protecting the battery from overcharging and deep discharge. Additionally, these EMSs are designed to lower the monthly energy bill for UG customers. The specific features of these EMSs vary depending on the metering types. And to maintain balance within the system, All components powers are controlled. The performances of the GCHRES were evaluated using simulation in MATLAB/SIMULINK environment. Results concerning the continuous ability to meet demand, stability of the system, tracking of references, and also wind turbine system control are discussed in this article. Keywords—Control and regulation, DFIG, Energy Management Strategies, Grid-Connected, Peak shaving, Photovoltaic,Pitch control, Renewable Energy, Wind Turbine
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