4 层建筑的 LVMDP 面板规划

Achmad Arif Dwi, Agus Hayatal Falah
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引用次数: 0

摘要

工业实习计划是西多约穆罕默迪亚大学学生必修的一门课程,电气工程专业的学生在此课程中参加了配电盘生产建设领域的实习。配电盘是配电系统的重要工具,配电盘的需求对于确保电力供应平稳安全运行非常重要。常用的一种配电板是 LVMDP 配电板,这种配电板可将负载分配给容量更大的配电板。本文采用的方法是描述法,通过观察来收集数据。这一活动的结果就是建筑物所需的电量。从 R-S-T 相负载分担值可以看出负载分担是否平衡。从 RST 相位划分可知,R 相的功率为 12944.00W,S 相的功率为 12912.00W,T 相的功率为 13032.00W。亮点: 实践培训:学生可获得配电盘制造方面的实践经验,提高他们的技能和对实际应用的理解。关键基础设施:LVMDP 配电板在确保建筑物内高效、安全的配电方面发挥着至关重要的作用,强调了其建造和维护的重要性。数据驱动分析:通过描述性方法和观察数据收集,可深入了解电力需求和负荷分担情况,从而为优化电力系统做出明智决策。 关键词面板、LVMDP、规划
本文章由计算机程序翻译,如有差异,请以英文原文为准。
LVMDP Panel Planning on a 4 Storey Building
The industrial internship program is a course that must be taken by students of Universitas Muhammadiyah Sidoarjo, in this context Electrical Engineering students take an internship in the field of electrical panel manufacturing construction. Electrical panels are a vital tool for electricity distribution systems, the need for electrical panels is very important to ensure electricity supply runs smoothly and safely. One type of panel that is commonly used is the LVMDP panel, a panel that distributes loads to panels with more capacity. The method used in this article is descriptive method, data collection is done by observation. The result of this activity is the amount of power needed in the building. Balanced load sharing can be seen from the R-S-T phase load sharing value. From the RST phase division, it is known that the power in phase R 12944,00W, in phase S 12912,00W, and in phase T 13032,00W. Highlights: Hands-on Training: Students gain practical experience in electrical panel manufacturing, enhancing their skills and understanding of real-world applications. Critical Infrastructure: LVMDP panels play a crucial role in ensuring efficient and safe electricity distribution within buildings, emphasizing the importance of their construction and maintenance. Data-Driven Analysis: The descriptive method and observational data collection provide insights into power needs and load sharing, facilitating informed decision-making for electrical system optimization. Keywords: Panel, LVMDP, Planning
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