P. Pavarangkoon, K. Murata, Yasushi Inoyama, Takamichi Mizuhara, Yuya Kagebayashi, Kazunori Yamamoto, K. Muranaga, E. Kimura
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引用次数: 0
摘要
卫星技术在救灾和农村电信基础设施建设中发挥着重要作用。由于发送和接收信号的主要中继器位于地球大气层之外,卫星只是不容易受到灾害破坏的无线通信基础设施。本文提出了一种基于卫星通信的电厂实时远程控制与监控系统。提出的系统提供两种类型的流量:优先流量和最佳努力流量。控制信号、音频信号等优先级流量支持QoS (quality of service),由高性能灵活协议(HpFP)承载。另一方面,诸如用于监控的图像/视频和数据文件等最优流量不支持QoS,并且由传统的传输协议承载。HpFP通过其目标吞吐量来维护流量的吞吐量。我们在实际环境中对系统进行了评估。结果表明,该系统能够有效地用于变电站和站网发生重大故障时的监控。
Design of Satellite Network-Based Remote Control and Monitoring System for Power Plants
Satellite technology plays an important role in providing disaster relief and rural telecommunications infrastructure. Since the main repeaters sending and receiving signals are located outside the Earth's atmosphere, the satellites are only wireless communications infrastructure not susceptible to damage from disasters. In this paper, we propose a real-time remote control and monitoring system for power plants via satellite communications. The proposed system provides two types of traffic: priority traffic and best-effort traffic. The priority traffic such as control and audio signals supports quality of service (QoS) and is carried by high-performance and flexible protocol (HpFP). On the other hands, the best-effort traffic such as image/video for monitoring and data files does not support QoS and is carried by conventional transport protocols. The HpFP maintains the throughput of traffic by its target throughput. We evaluate our system in real environment. The results show that the proposed system is able to be used effectively in monitoring and controlling of substations and stations during a major network failure.