IEEE 1683的制作-介绍和幕后观察

M. Valdes, R. Bugaris, C. Wellman
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引用次数: 3

摘要

符合众所周知的共识标准和国家规范的电气设备和系统设计的安装将达到或超过安全性和可靠性的最低准则。然而,许多业内人士认为,应进一步关注“设计安全”和“设计预防”原则。作为回应,IEEE 1683, IEEE电机控制中心指南额定电压不超过600 V交流或1000 V直流,建议有助于减少电气危险[1],已经编写,以解决低压电机控制中心的电气安全问题,类似的标准正在为其他类型的设备开发。IEEE 1683是第一个专门针对设备设计、选择和安装实践而开发的IEEE标准,重点是减少接触冲击和电弧闪光危险的方法。本文概述了IEEE 1683标准的发展历史和原因,并介绍了其在低压电机控制中心应用中的应用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The making of IEEE 1683 — An introduction and behind the scenes look
Installations of electrical equipment and system designs that comply with well-known consensus standards and national codes will meet or exceed minimum guidelines for safety and reliability. However, many within industry hold the belief that further attention should be paid to "safety by design" and "prevention through design" principles. In response, IEEE 1683, IEEE Guide for Motor Control Centers Rated up to and Including 600 V AC or 1000 V DC with Recommendations Intended to Help Reduce Electrical Hazards [1], has been written to address electrical safety for low voltage motor control centers and similar standards are in development for other types of equipment. IEEE 1683 is the first IEEE standard developed to specifically address equipment design, selection and installation practices with emphasis on methods to reduce exposure to shock and arc flash hazards. This paper is summary of the history and reasons that lead to the development of IEEE 1683 and an introduction to its application for safer low voltage motor control center applications.
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