您现在的位置: 首页> 研究主题> Boost

Boost

Boost的相关文献在1985年到2023年内共计1857篇,主要集中在电工技术、自动化技术、计算机技术、无线电电子学、电信技术 等领域,其中期刊论文456篇、会议论文7篇、专利文献1394篇;相关期刊264种,包括电工技术学报、电源技术、电力自动化设备等; 相关会议7种,包括第十三届全国电气自动化与电控系统学术年会、2007年APC联合学术年会、中国内燃机学会2005年学术年会暨APC2005年联合学术年会等;Boost的相关文献由3522位作者贡献,包括张波、邾玢鑫、陈怡等。

Boost—发文量

期刊论文>

论文:456 占比:24.56%

会议论文>

论文:7 占比:0.38%

专利文献>

论文:1394 占比:75.07%

总计:1857篇

Boost—发文趋势图

Boost

-研究学者

  • 张波
  • 邾玢鑫
  • 陈怡
  • 胡家培
  • 胡民海
  • 张小平
  • 秦岭
  • 阮新波
  • 南余荣
  • 姚凯
  • 期刊论文
  • 会议论文
  • 专利文献

搜索

排序:

年份

作者

关键词

    • Zhang Monan
    • 摘要: Over a century ago, western countries achieved rapid development boosted by the industrial revolution and opened the door to world trade with “solid ships and strong cannons”. The “solid ships and strong cannons” in the digital era will shape the landscape of future development and competition.
    • Kiyoyuki Seguchi
    • 摘要: On January 1,2022,the Regional Comprehensive Economic Partnership(RCEP)will enter into force.The world’s largest trade agreement will not only bring huge benefits to the member states and boost the sluggish world economy struggling with COVID-19,but will also safeguard the free and open trade system.
    • 赵志强; 杜振斌; 刘兰荣; 王翔
    • 摘要: 光伏并网逆变器匹配宽工作范围,能够适用于薄膜太阳能、多晶硅和单晶硅电池板,采用两级式拓扑结构,前级采用Boost升压斩波器,通过交错并联控制技术,延长逆变器稳定运行时间,并能精确跟踪最大功率点。后级采用全桥逆变电路,采用基于PIR控制的电流环,有效抑制工频变压器的直流偏磁。仿真结果验证了控制策略的有效性,实验测试数据证明了逆变器的可靠性能。
    • Ada Wang
    • 摘要: Recently,the upstream and downstream enterprises of the lithium battery industry chain have released the financial reports of Q1 of this year.Due to the increasing demands of new energy vehicles for power batteries,the revenue and profit of lithium mining developers and lithium battery cathode material suppliers have boosted.However,for some lithium battery enterprises,their revenue increased by 100-200%while net profits dropped by 20-40%.There have been stark differences between raw material suppliers and battery enterprises in terms of operational performances.
    • 王议锋; 王忠杰; 陈博; 王浩; 陈庆
    • 摘要: 该文围绕交错Boost变换器稳态和动态性能综合优化这一问题展开研究。通过采用反向耦合电感代替传统分立电感,利用其在一个开关周期的不同时间段内具有不同的等效电感这一优势,可以同时实现对变换器稳态和动态性能的优化。在高频工作条件下,采用反向耦合电感可以进一步减小功率电感损耗,提升变换器效率。该文以两路交错Boost变换器为例,首先对耦合电感的等效电感进行理论推导;然后对变换器的稳态和动态性能进行理论分析,指出反向耦合电感在改善变换器稳态和动态性能方面的优势;最后结合GaN功率开关器件,搭建一台开关频率为500kHz,额定功率为500W的实验样机,并与采用分立电感的交错Boost变换器进行实验对比。结果证明,采用耦合电感可以提升变换器稳态和动态性能,验证了该文理论分析的正确性。
    • Hu Yukun
    • 摘要: Ifnot for the escalation of conflict between Russia and Ukraine,ASEAN countries would likely have enjoyed an even bigger boost in economic growth after COVID-19 restrictions eased.Now,they must grapple with extra uncertainty caused by a crisis over 8,000 kilometers away.
    • 张凯; 秦海亭
    • 摘要: Boost升压电路是一种开关直流升压电路,属于六种基本斩波电路之一,主要应用于直流电动机传动、单相功率因数校正电路及其他交直流电源中.本文利用Simulink进行了PID控制器的设计与仿真,并提出了一种以级联来控制的结构,提高了Boost电路闭环控制的性能.
    • 摘要: Zurich,Switzerland,5 September 2022–The time is right for Swiss textile machinery companies to grow their export business with Indonesia–one of the world’s top 10 textile producers.A free trade agreement between the two countries came into force in 2021,and market analyses show that there is scope for a significant increase in business in textile and textile machinery sectors.This was the background to a successful symposium in the Indonesian capital Jakarta last month when Swiss Textile Machinery Association members presented their products and innovations to an invited audience of 200 delegates from Indonesian textile companies.
    • Lu Xinhong
    • 摘要: Since the 18th CPC National Congress,China has experienced a new economic normal,namely a shift from high-speed growth to high-quality development.As such,China has issued foreign trade policies emphasizing both imports and exports,namely“flowing in”and“going out”,and has paid more attention to trade balance.The foreign trade industry in China has entered a development stage in which the trade market is boosted by science and technology.
    • Songxue Bai; Lixiu Zhang; Qianqian Lin; Liming Ding
    • 摘要: During last decade,organic photovoltaics experienced an exciting renaissance[1-5],mainly benefiting from the development of non-fullerene acceptors(NFAs),which boosted the power conversion efficiency to-20%[6,7].Along with the unprecedented success of organic solar cells,non-fullerene acceptors also find other optoelectronic applications.In particular,high-performance organic photodetectors(OPDs)[8,9]based on non-fullerene acceptors have been reported.
  • 查看更多

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