Experimental Test Bed to Enable Realistic Evaluations for Direct Transfer Trip Relaying via Private Wireless LTE Communications

Emma Raszmann, K. Prabakar, B. Mather, Jim Li
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引用次数: 1

Abstract

Increasing penetration levels of inverter-based distributed energy resources (DERs) in distribution systems are creating challenges in system operation. Currently, wired or proprietary wireless communications are used by advanced distribution management systems (ADMS) to detect the state of the system and control the DERs for optimal operation. Wireless communications are an alternative solution that can enable connectivity between the dispersed assets used in distribution system applications. This paper demonstrates an experimental test bed to enable the realistic evaluation of communications system characteristics for direct transfer trip (DTT) relaying of a photovoltaic inverter system using a private 900-MHz spectrum wireless LTE network. Private LTE network communications can be deployed to many remote DERs and other grid-edge devices to prevent costly infrastructure upgrades across distribution systems. In addition, this paper provides a framework for evaluating the impact of signal strength and network traffic in communications systems. The results shown develop a better understanding of the best practices for using LTE communications systems across multiple utility applications, such as protective relaying, voltage regulation, and supervisory control and data acquisition system messages.
通过专用无线LTE通信实现直接传输行程中继的现实评估的实验测试平台
基于逆变器的分布式能源在配电系统中的渗透水平不断提高,给配电系统的运行带来了挑战。目前,先进的配电管理系统(ADMS)使用有线或专有无线通信来检测系统状态并控制der以实现最佳运行。无线通信是另一种解决方案,它可以实现配电系统应用程序中使用的分散资产之间的连接。本文演示了一个实验测试平台,以实现使用专用900 mhz频谱无线LTE网络的光伏逆变器系统的直接传输跳闸(DTT)中继的通信系统特性的现实评估。专用LTE网络通信可以部署到许多远程der和其他电网边缘设备上,以防止配电系统之间昂贵的基础设施升级。此外,本文还提供了一个评估通信系统中信号强度和网络流量影响的框架。所显示的结果有助于更好地理解跨多个公用事业应用(如保护继电器、电压调节、监控和数据采集系统消息)使用LTE通信系统的最佳实践。
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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