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Understanding short circuit currents in DC power systems when used in conjunction with standby batteries

机译:与备用电池一起使用时,了解直流电源系统中的短路电流

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As the telecommunications power environment is changing from one of regulated public utility companies with well-established engineering practices to one of unregulated investors supplying telecommunications infrastructure, it is apparent that a number of unknowns exist regarding DC power systems. Since traditional DC power systems were normally engineered and operated by the public utilities or a Government agency, they did not fall under the jurisdiction of local electrical codes or the National Electrical Code (NEC) in the United States. In today's marketplace things are changing. The end installation and applied engineering practices may not be controlled or reviewed by any local jurisdiction. The trend in the power industry is to have the manufacturer submit these DC power systems for review by Nationally Recognized Testing Laboratories (NRTL) but no site testing is typically performed to check compliance. Being able to define and better understand the magnitude of the possible short circuit currents that may be encountered in these systems during a fault condition is now, more than ever, a requirement for safe equipment installation and overall system design. In this paper, we will analyze a centralized power system and smaller remote power applications. These would be representative of typical installations found in various telecommunications sites. We will analyze the possible short circuit currents that may be encountered in these applications and run short circuit simulations to verify the calculated results. The importance of correctly specifying and properly coordinating overcurrent protection devices from an overall Systems design standpoint will also be addressed.
机译:由于电信电力环境从监管的公用事业公司之一改变,为提供电信基础设施的一个不受调查的投资者的工程实践,这很明显,存在关于直流电力系统的许多未知数。由于传统的直流电力系统通常由公用事业或政府机构设计并运营,因此他们并未属于美国的当地电气代码或国家电气代码(NEC)的管辖范围。在今天的市场上发生了变化。任何当地管辖权都可能无法控制或审查最终安装和应用工程实践。电力行业的趋势是制造商提交这些直流电力系统,以供国家公认的测试实验室(NRTL)进行审查,但通常没有进行网站测试以检查合规性。能够定义和更好地了解在故障条件期间可能在这些系统中可能遇到的可能短路电流的幅度,这一点超过以往,这是安全设备安装和整体系统设计的要求。在本文中,我们将分析集中功率系统和较小的远程电源应用。这些将代表各种电信站点中发现的典型装置。我们将分析可能在这些应用中遇到的可能的短路电流,并运行短路模拟以验证计算结果。从整体系统设计角度来看,还可以解决正确指定和正确协调过电流保护设备的重要性。

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