首页> 外文会议>International Universities Power Engineering Conference >Renewable energy resource self-intervention control technique using Simulink/Stateflow modeling
【24h】

Renewable energy resource self-intervention control technique using Simulink/Stateflow modeling

机译:使用Simulink / Stateflow建模的可再生能源自我干预控制技术

获取原文

摘要

Hybrid Renewable Energy Complementary Systems are gaining popularity as electricity power generation system. The Hybrid Renewable Energy Complementary Systems introductory was to overcome the intermittency during the energy harvesting process. Therefore, solar photovoltaic and wind turbine generator has been seen as one of the most promising Hybrid Renewable Energy Complementary System to overcome the intermittency compare to a typical Hybrid Renewable Energy System. The integration of solar photovoltaic and wind turbine generator as Hybrid Renewable Energy Complementary System can play an important role to reduce the dependency on the fossil fuel for electricity power generation and are seen as a solution to improve the shortage of electricity due to increasing demand. Thus, the advantages of Hybrid Renewable Energy Complementary Systems have gained attention from many researchers around the world. Research to improve the complexity complementary system performance is necessary to achieve well design control and autonomous system operation and systematic energy management in the system. With that, this paper presents a new voltage-divider balancing switching technique to control the self-intervention switching for the Hybrid Renewable Energy Complementary System. The self-intervention control strategy of the Hybrid Renewable Energy Complementary System is coordinated using the Simulink/Stateflow process. The Simulink/Stateflow modelling performs under different preset conditions which are based on the analogue voltage reading from the input of the Hybrid Renewable Energy Complementary System resources. Simulation results demonstrate the validity of the proposed research to control the self-intervention of the Hybrid Renewable Energy Complementary System under the preset conditions.
机译:混合可再生能源补充系统作为发电系统越来越受欢迎。混合可再生能源补充系统介绍旨在克服能量收集过程中的间歇性。因此,与典型的混合可再生能源系统相比,太阳能光伏和风力发电机被视为克服间歇性的最有前途的混合可再生能源补充系统之一。将太阳能光伏发电和风力涡轮发电机作为混合可再生能源补充系统的整合,在减少对化石燃料发电的依赖方面可以发挥重要作用,并被视为解决因需求增加而导致电力短缺的解决方案。因此,混合可再生能源互补系统的优势已受到世界各地许多研究人员的关注。为了提高系统的良好设计控制和自主系统运行以及系统能量管理,必须进行研究以提高复杂性,以提高互补系统的性能。因此,本文提出了一种新的分压器平衡开关技术,以控制混合可再生能源互补系统的自干预开关。混合可再生能源补充系统的自我干预控制策略使用Simulink / Stateflow过程进行协调。 Simulink / Stateflow建模在不同的预设条件下执行,这些条件基于从混合可再生能源补充系统资源的输入中读取的模拟电压。仿真结果证明了所提出的研究在预设条件下控制混合可再生能源互补系统自我干预的有效性。

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