The Design of Wind Power Plant (WPP) for Conveyor Lighting using Wind Turbine Method
風力タービン方式を用いたコンベヤ照明用風力発電所(WPP)の設計 (AI 翻訳)
B. Husodo, L. M. Silalahi, Ahmad Rizal, I. Simanjuntak
🤖 gxceed AI 要約
日本語
ベルトコンベヤのトリアッパーエリアの公共街路灯の視認性問題に対し、4基の垂直軸風力タービンを用いた風力発電所を設計・試験した。平均風速6.7m/sの環境で、シミュレーションと実測を比較し、400W負荷で21.2分、800Wで13.48分、1600Wで7.1分の電圧降下までの給電時間を確認。バッテリー容量200x4AHで、PSLへの電力供給に成功し、将来のCO2排出量測定や蓄電スケールアップの課題を提案している。
English
This study designs and tests a wind power plant using four vertical-axis wind turbines to power public street lighting in a belt conveyor tripper area. With average wind speed 6.7 m/s, it compares simulation and measured outputs, finding discharge times of 21.2 min at 400W, 13.48 min at 800W, and 7.1 min at 1600W load. Battery capacity is 200x4AH. The system successfully supplies PSL, and future work suggests measuring CO2 emissions and scaling up storage.
Unofficial AI-generated summary based on the public title and abstract. Not an official translation.
📝 gxceed 編集解説 — Why this matters
日本のGX文脈において
日本では再生可能エネルギーの地産地消や離島・産業施設での自立電源導入が進む中、小規模風力の実証事例として参考になる。ただし、日本の風況や系統連系要件とは異なる点に注意が必要。
In the global GX context
This paper provides a practical example of small-scale wind power for industrial lighting, relevant to global efforts in decentralized renewable energy and energy access. It adds empirical data on VAWT performance under specific load conditions, though its direct applicability to large-scale grid systems is limited.
👥 読者別の含意
🔬研究者:小規模風力の負荷特性とバッテリー放電時間の実測データを参照できる。
🏢実務担当者:産業施設の照明電源として風力発電を検討する際の設計参考になる。
📄 Abstract(原文)
This research addresses the issue of poor Public Street Lighting (PSL) in the Belt Conveyor (BC) tripper area, which causes limited visibility. So, this research proposes the design of a Wind Power Plant (WPP) using the 4-wind turbine method. The purpose of this research is the use of WPP technology for PSL development. The research hypothesis is supported by the local environmental conditions, with an average wind speed of 6.7 m/s. This research was conducted by Vertical Axis Wind Turbine (VAWT). The research test uses simulator software to display the voltage and current outputs, and then the output is compared with the results of direct measurements. There are 3 measurement points, namely the inverter output voltage of 226 VAC, the battery output voltage of 51.18VDC, and the full loading current of 7.48A. Significant results occurred at 400W load, because the reliability time to distribute electrical energy to a normal load took 21.2 minutes until the voltage drop was 48VDC, then 800Watt load for 13.48 minutes, and 1600W load for 7.1 minutes. And it is informed that the battery capacity is 200x4AH. Finally, the power output and system efficiency have succeeded in adding value to the diversification of the plant because the burden for PSL has used WPP as the power supply. Suggestions for potential improvements in future work are to measure the environmental impact, especially CO2 emissions, then the challenge of scaling up energy storage and infrastructure improvements as well as the development of maintenance strategies.
🔗 Provenance — このレコードを発見したソース
- semanticscholar https://wydawnictwo.pan.pl/index.php/ijet/article/download/1730/2303first seen 2026-08-05 05:14:51
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