首页> 外文会议>International conference on manufacturing advanced computing, renewable energy and communication >Output Power Enhancement by Flexible Solar Panel with Optimal Solar Field
【24h】

Output Power Enhancement by Flexible Solar Panel with Optimal Solar Field

机译:柔性太阳能电池板具有最佳太阳能电路的输出电力增强

获取原文

摘要

Most photovoltaic modules which comes for power extraction is fiat and subsequently, investigate on board or plate design for photovoltaic frameworks regularly utilizes flat boards or plate. Notwithstanding, the expanded accessibility of thin-film photovoltaic modules opens up potential outcomes for the use of flexible solar cell on curve board or surfaces, including the joining of photovoltaic boards on building rooftops with twofold arch. This paper acquaints a method to analyze the power output for flexible photovoltaic modules on bended surfaces or plate and additionally an idea to organize various such modules on a surface or plate. This mix of geometry arc angle of cell and sun-based investigation gives information that is vital for area design of photovoltaic flexible curve solar panel and ana-lyzation of power output. The calculation of the techniques which is presented is outlined with analysis, for which several parameters have been investigated in an optimized way. Maximum power generation for flexible curve panel are depends on optimal design of field area configuration where flexible curve panels will be installed and collector parameters. The power generation from the field for flexible curve solar panel has been calculated at a different curve angles. The parameter of field area design has been calculated analytically and validated in genetic algorithm (MATLAB).
机译:用于电力提取的大多数光伏模块是菲亚特,随后,调查光伏框架的船上或板设计经常使用平板或板。尽管如此,的薄膜光伏模块中的膨胀可访问开辟了潜在的结果用于在曲线板或表面,包括光生伏打板的构建屋顶与双重拱接合使用柔性太阳能电池的。本文熟悉分析弯曲表面或板上的柔性光伏模块的功率输出的方法,并且另外一个想法以在表面或板上组织各种这种模块。这种几何弧角度的细胞和基于太阳的调查的混合提供了对光伏柔性曲线太阳能电池板和功率输出的ANA-LYZATION的区域设计至关重要的信息。呈现的技术的计算与分析概述,其中已经以优化的方式研究了几个参数。柔性曲线面板的最大发电取决于场区域配置的最佳设计,其中将安装灵活曲线面板和收集器参数。从柔性曲线太阳能电池板的领域的发电已经以不同的曲线角度计算。现场区域设计的参数已经在分析上计算并以遗传算法(MATLAB)验证。

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