Performance Evaluation of IEC 61850-90-5 over a latency optimized 3GPP LTE Network

G. Bag, Morgan E. Johansson, Luka Lednicki, J. Neander, Linus Eriksson, Rajendra Bogati, P. Hovila, Juha Saarinen, J. Torsner
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引用次数: 6

Abstract

This paper evaluates the performance of the IEC 61850-90-5 protocol stack transmitted over a latency optimized non-commercial 3GPP LTE network through experiments in a lab environment. IEC 61850-90-5 is designed for Phasor Measurement Unit (PMU) communication but can also be extended to other areas of control and protection in smart grids, using the routable GOOSE and routable sample value features. The test was carried out using a PC that emulated a PMU in sending periodic IEC61850-90-5 packets. Different IEC 61850-905 packet sizes and transmission rates were considered to determine the availability, throughput and latency of the LTE based network. The latency was minimized by applying a low latency scheduling mechanism and local breakout where user plane functionality of the core network is located at the edge of the Radio Access network. From the results it can be seen that an LTE network with latency optimized configuration performs well in terms of throughput and latency whereas a reference network without local breakout show significantly higher latency and jitter.
IEC 61850-90-5在延迟优化3GPP LTE网络上的性能评估
本文通过实验室环境实验,评估了IEC 61850-90-5协议栈在延迟优化的非商业3GPP LTE网络上传输的性能。IEC 61850-90-5专为相量测量单元(PMU)通信而设计,但也可以扩展到智能电网中的其他控制和保护领域,使用可路由的GOOSE和可路由的样本值特征。测试是用PC机模拟PMU周期性发送IEC61850-90-5数据包进行的。考虑了不同的IEC 61850-905数据包大小和传输速率来确定基于LTE的网络的可用性、吞吐量和延迟。通过将核心网的用户平面功能置于无线接入网的边缘,采用低延迟调度机制和本地断接,将延迟降至最低。从结果可以看出,具有延迟优化配置的LTE网络在吞吐量和延迟方面表现良好,而没有本地断接的参考网络则表现出明显更高的延迟和抖动。
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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