...
首页> 外文期刊>Turkish Journal of Electrical Engineering and Computer Sciences >Modeling, control, and power management for a grid-integrated photo voltaic, fuel cell, and wind hybrid system
【24h】

Modeling, control, and power management for a grid-integrated photo voltaic, fuel cell, and wind hybrid system

机译:电网集成的光伏,燃料电池和风力混合动力系统的建模,控制和电源管理

获取原文
           

摘要

Power management in a grid-integrated power system consisting of distributed renewable energy sources is necessitated by ever-increasing energy consumption, the high cost of production, the limited resource of fossil fuel, and the worsening global environment. Wind and solar power generation are two of the most promising renewable power generation technologies. The growth of wind and photovoltaic (PV) power generation systems has exceeded the most optimistic levels of expectations. Fuel cells (FCs) also have great potential to be green power sources of the future because of the many merits they have, such as high efficiency and zero or low emission of pollutant gases. In this paper the modeling, control, and analysis of grid-connected PV power, a proton exchange membrane fuel cell (PEMFC), and a wind energy system (WES) connected through a common DC bus linked to an AC grid is discussed. In coordination with the PEMFC, the hybrid system's output power becomes controllable so that full utilization of PV and wind power takes place based on its availability, and the DC bus voltage is maintained constant even at varying load conditions for the desired power sharing between the distributed generation (DG) sources, load, and the AC grid. The hybrid system is controlled through a combination of two proposed control modes, namely the DG control mode and grid control mode. The coordination of the power controller, voltage source converter controller, and load controller is such that the transition between the two control modes is done as smoothly as possible. Thus, the total DG power will be a combination of PV power, WES power, and power produced by the PEMFC. Any additional power if required up to the maximum loading will be supplied by grid. If the load exceeds its maximum value, then the load controller will carry out load shedding. The composite system is available for safe operation in on-grid as well as off-grid mode satisfying voltage and power balance constraints. Different modes of operation have been demonstrated to verify and validate the desired power management among the DG sources, load, and the grid. MATLAB/Simulink software was used for simulating the composite model.
机译:不断增长的能源消耗,高昂的生产成本,有限的化石燃料资源以及日益恶化的全球环境,都需要在由分布式可再生能源组成的并网电力系统中进行电源管理。风力和太阳能发电是最有前途的两种可再生能源发电技术。风能和光伏(PV)发电系统的增长已经超出了最乐观的预期水平。燃料电池(FC)由于具有许多优点,例如效率高以及污染物气体的零排放或低排放,也具有成为未来绿色能源的巨大潜力。本文讨论了并网光伏发电,质子交换膜燃料电池(PEMFC)和通过连接到交流电网的公共直流母线连接的风能系统(WES)的建模,控制和分析。与PEMFC配合使用,混合动力系统的输出功率变得可控,因此可根据其可用性充分利用光伏和风能,即使在负载条件变化的情况下,分布式电源之间所需的功率共享,DC总线电压也保持恒定。发电(DG)源,负载和交流电网。通过将两种建议的控制模式(即DG控制模式和电网控制模式)组合使用来控制混合系统。电源控制器,电压源转换器控制器和负载控制器的配合使得两个控制模式之间的转换尽可能平滑。因此,总的DG功率将是PV功率,WES功率和PEMFC产生的功率的组合。如果需要,直到最大负载的任何额外功率将由电网提供。如果负载超过其最大值,则负载控制器将执行减载。该复合系统可满足并网和离网模式下的安全运行,满足电压和功率平衡的限制。已经证明了不同的操作模式可以验证和验证DG源,负载和电网之间的所需电源管理。使用MATLAB / Simulink软件来模拟复合模型。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号