photovoltaic converter

英 [ˌfəʊtəʊvɒlˈteɪɪk kənˈvɜːtə(r)] 美 [ˌfoʊtəˌvoʊlˈteɪɪk kənˈvɜːrtər]

网络  光电变换器; 光伏变换器; 光电能量变换器

电力



双语例句

  1. Photovoltaic solar energy converter
    光生伏打太阳能转换器
  2. The core of photovoltaic grid-connected system is DC-AC converter.
    太阳能并网发电系统的核心是DC-AC变换器。
  3. Research on House-hold Photovoltaic Power Generation System Based on Bi-directional DC/ DC Converter
    基于双向DC/DC变换的户用型光伏发电系统研究
  4. Research on Multi-Cell Photovoltaic System with High Step-Up DC-DC Converter
    采用高升压比DC-DC电路的多单元结构光伏系统研究
  5. Research on High Efficiency Net Grid Photovoltaic Converter
    高效率并网太阳能逆变器研究
  6. Generally, a fundamental photovoltaic energy system consists of the solar cell, solar controller, converter and batteries.
    一套基本的光伏发电系统一般是由太阳能电池板、太阳能控制器、逆变器和蓄电池(组)构成。
  7. Simultaneously, for the practicability to photovoltaic system, Buck-Boost TL converter, ZVZCS Boost converter are analyzed and a Boost ZVZCS phase-shifted full-bridge DC/ DC converter is proposed in this paper.
    详细分析了Buck-Boost三电平电路和ZVZCSBoost电路并提出了一种升压型移相全桥ZVZCSDC/DC变换器电路。
  8. Feasibility Study for Zero Energy Building with Photovoltaic Converter
    太阳能建筑实现零能耗的可行性探讨&太阳能光伏发电技术在建筑上的应用
  9. Research on photovoltaic grid-connected inverter based on immittance converter theory
    一种基于导抗变换器理论的光伏并网逆变器的研究
  10. The structure and work principle, characteristics of the main circuit of photovoltaic power system are analyzed. And based it, DC/ DC converter is analyzed in detail, and the most appropriate topology structure boost converter is chosen from some commonly used topological structures.
    分析了光伏发电系统的主电路结构和工作特性、原理,在此基础上对DC/DC变换器进行了详细的分析,在几种常用的拓扑结构中选出最合适的拓扑结构boost变换器。
  11. Based on fully understand the photovoltaic converter status, it thorough researches on the key technology in this paper.
    本文建立在充分了解光伏逆变器现状的基础之上,对于微型光伏逆变器涉及到的关键技术进行了深入的研究。
  12. Photovoltaic converter technology, in which the study is focus on the hardware circuit and control algorithm in recent years, has obtained the rapid development.
    近年来光伏逆变器的研究热点集中在硬件电路和控制算法,光伏逆变技术获得了长足的发展。
  13. This dissertation is dedicated to the design of the bi-directional DC/ DC converter, which implements the power management of battery in the stand-alone photovoltaic system. Firstly, a total solution for the bi-directional DC/ DC converter is proposed.
    本课题针对独立型太阳能发电系统中实现蓄电池能量管理的双向直直变换模块进行研究。首先,本文对双向直直变换模块进行整体方案设计。
  14. Solar photovoltaic systems converts DC into AC power by the inverter. During the process of converter the harmonic wave will be produced, which will affect electricity power quality, damage equipment, cause economic losses.
    太阳能光伏发电系统将直流电能经逆变转换为交流电能的过程中会产生谐波,影响用户用电的电能质量,损害用户设备,造成经济损失。
  15. In the photovoltaic power generation system, the bi-directional DC/ DC converter is used between the DC bus and battery or other energy storage devices as the bridge of bi-directional energy transfer to manage the system energy by the way of charging and discharging.
    在光伏发电系统中,双向DC/DC变换器用于直流母线与蓄电池等储能设备之间,作为能量双向传递的桥梁,以充放电的形式对整个系统的能量进行调度与管理,是不可或缺的重要组成部分。
  16. Simulate the solar photovoltaic cells mode, improved MPPT algorithm, solar photovoltaic linking grid, and output condition of Buck converter.
    论文最后对光伏电池模型、改进的MPPT算法、光伏并网和Buck变换器的输出情况进行仿真验证。
  17. This paper takes grid-connected photovoltaic system as the research object, in depth analysis and research the model of photovoltaic cells, the modeling of Boost converter, inverter grid-connected control, and island detection method. 1.
    本文以单相光伏并网系统作为研究对象,从单相光伏并网系统的建模、孤岛检测方法等方面做了深入分析和研究。
  18. Third, the building photovoltaic grid control strategy has been discussed and PV module model, DC-DC converter and the inverter simulation model has been established.
    再后,对建筑光伏的并网控制的控制策略做了探讨并建立了光伏组件模型,DC-DC变换器和逆变器模型,在并网的情况下进行仿真。