EXTENDABLE HIGH-GAIN DC-DC CONVERTER FOR STORAGE BATTERY AND PHOTOVOLTAIC CELL

IF 0.6 Q3 ENGINEERING, MULTIDISCIPLINARY
S. Motakabber, Khadiza Akter, Ahm Zahirul Alam, Siti Hajar Binti Yusoff
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引用次数: 0

Abstract

DC-DC converters with significant gain, ripple-free input current, and shared ground are required to elevate the output voltages of batteries, fuel cells, and Photovoltaic sources. The proposed topology utilizes a solitary switch to control the circuit and it has additional inculpation of a voltage doubler cell at the load side, a switch capacitor cell in the middle, and a quadratic cell at the output side. These cascaded configurations lead to significant voltage gains at moderate duty cycle rates. Additionally, the voltage stress over the power components is negligible, coming in under one-third of the resultant voltage. Moreover, the number of cells at the input and output side can be extended to obtain high voltage according to the requirements of the load. The gain in voltage, efficiency, and normalized voltage stress of the semiconductor elements in the circuit are examined concerning other solutions found in the literature. Eventually, photovoltaic and battery sources were included to analyze the proposed topology to confirm the circuit’s multifaceted functionality. The circuit was developed for 270 W, 440 V output from 36 V input, and a 40 kHz switching pulse was used to drive the switch. The theoretical and simulation analysis states that incorporating photovoltaic and other sources did not deteriorate the transformation efficiency. Simulink and PSIM analysis found that the circuit successfully transferred  power from source to load. ABSTRAK: Penukar DC-DC yang mempunyai gandaan ketara, input arus bebas riak dan pembumi berkongsi penting bagi meningkatkan voltan keluar bateri, sel bahan api dan sumber fotovolta. Topologi yang dicadangkan ini menggunakan suis tersendiri bagi mengawal litar dan ia mengandungi sel pendua voltan tambahan bagi menghentikan arus di bahagian beban, sel suis kapasitor di tengah dan sel kuadratik di bahagian voltan keluar. Konfigurasi berturutan ini membawa kepada gandaan voltan ketara pada kadar kitar tugas sederhana. Tambahan, tekanan voltan ke atas komponen kuasa boleh diabaikan, iaitu satu pertiga daripada voltan terhasil. Selain itu, bilangan sel di bahagian kemasukan dan keluaran arus boleh dilanjutkan bagi mendapatkan voltan tinggi mengikut keperluan beban. Gandaan voltan, kecekapan dan tekanan voltan ternormal pada bahan dalam litar semikonduktor diperiksa dengan menyamai penyelesaian lain yang ditemui dalam kajian terdahulu. Akhirnya, sumber fotovolta dan bateri dimasukkan bagi menganalisis topologi yang dicadangkan bagi mengesahkan fungsi pelbagai rupa litar. Litar yang dibangunkan ini digunakan pada kuasa 270 W, pada aras voltan 440 V dengan kemasukan voltan 36 V dan suis operasi berfrekuensi 40 kHz. Analisis teori dan simulasi menyatakan bahawa gabungan fotovolta dan sumber lain tidak mengurangkan kecekapan transformasi. Analisis Simulink dan PSIM mendapati litar ini berjaya memindahkan 95% kuasa dari sumber kepada beban.
用于蓄电池和光伏电池的可扩展高增益直流-直流转换器
需要具有显著增益、无纹波输入电流和共享接地的直流-直流转换器来提高电池、燃料电池和光伏电源的输出电压。所提出的拓扑结构利用一个单独的开关来控制电路,并在负载端增加了一个电压倍增器单元,在中间增加了一个开关电容器单元,在输出端增加了一个二次单元。这些级联配置可在中等占空比率下显著提高电压。此外,功率元件上的电压应力可以忽略不计,不到结果电压的三分之一。此外,输入端和输出端的电池数量可根据负载要求进行扩展,以获得高电压。我们还对电路中半导体元件的电压增益、效率和归一化电压应力进行了研究,并与文献中的其他解决方案进行了比较。最后,在分析所提出的拓扑结构时,还加入了光伏和电池源,以确认电路的多方面功能。所开发的电路功率为 270 W,36 V 输入电压输出 440 V,使用 40 kHz 开关脉冲驱动开关。理论和仿真分析表明,加入光伏和其他能源不会降低转换效率。Simulink 和 PSIM 分析表明,电路成功地将电力从源传输到了负载。结论:直流-直流电源转换器可用于控制电源、输入电流和输出电压,并可用于控制电池电压、电池电量和光电总和。该系统的拓扑结构可帮助用户提高工作效率,同时还可帮助用户提高工作效率,并可帮助用户提高工作效率,同时还可帮助用户提高工作效率,并可帮助用户提高工作效率。在此基础上进行配置,使其成为一个可持续发展的系统。在这个过程中,在电脑系统上安装伏特安技术,是伏特安技术的一个重要组成部分。在此基础上,通过在社区和社区服务机构中开展的活动,可以有效地提高对伏特安的认识,从而提高对社区的关注度。正常电压、电压表和正常电压技术在半干旱环境中的应用,可帮助人们提高工作效率。在这种情况下,太阳能电池板和电池组件可用于改善拓扑结构,从而提高每千瓦的发电量。它的功率为 270 W,电压为 440 V,而电压为 36 V,工作频率为 40 kHz。技术和仿真分析表明,太阳能电池板和太阳能电池组件可能会对变压器产生影响。Simulink 和 PSIM 分析法可让人们记住,95% 的数据量都是通过网络传输的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
IIUM Engineering Journal
IIUM Engineering Journal ENGINEERING, MULTIDISCIPLINARY-
CiteScore
2.10
自引率
20.00%
发文量
57
审稿时长
40 weeks
期刊介绍: The IIUM Engineering Journal, published biannually (June and December), is a peer-reviewed open-access journal of the Faculty of Engineering, International Islamic University Malaysia (IIUM). The IIUM Engineering Journal publishes original research findings as regular papers, review papers (by invitation). The Journal provides a platform for Engineers, Researchers, Academicians, and Practitioners who are highly motivated in contributing to the Engineering disciplines, and Applied Sciences. It also welcomes contributions that address solutions to the specific challenges of the developing world, and address science and technology issues from an Islamic and multidisciplinary perspective. Subject areas suitable for publication are as follows: -Chemical and Biotechnology Engineering -Civil and Environmental Engineering -Computer Science and Information Technology -Electrical, Computer, and Communications Engineering -Engineering Mathematics and Applied Science -Materials and Manufacturing Engineering -Mechanical and Aerospace Engineering -Mechatronics and Automation Engineering
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