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A backup data network for power system automations based on satellite communication

机译:基于卫星通信的电力系统自动化备份数据网络

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Power system automations technologies are essential for power system operations and controls. A variety of communication systems including optical fiber, microwave and power line communications are used to transmit these EMS/SCADA data. In these communication modes, fiber communication is used to transmit IEC 101/104 protocol data in most power grids due to its large bandwidth and high reliability. However, fiber is very fragile when large natural disasters happen. Earthquake, snow-ice strike, hurricane would probably destroy the infrastructures of the fiber systems. In some tough geographical areas such as mountainous West Sichuan Plateaus, the construction and operation of fiber communications are very costly and difficult. After 2008 5.12 Sichuan Earthquake Sichuan Electric Power Corporations started to investigate some alternative communication systems against natural disasters. Compared to traditional fiber communications, VSAT communication (Very Small Aperture Terminal for satellite communications) has 3 advantages: (1) The setup of a VSAT station is convenient and flexible. (2) The VSAT system is robust against natural disasters since it does not need wired cable or fiber. (3) The setup and operation of VSAT system is cost effective in some tough geographic areas. In Sichuan Power, we proposed an new data networks for EMS/SCADA data transmission based on VSAT systems. The structure of our system is a star-like topology: we place the VSAT communication terminals to some substations and power plants in areas which cannot afford fiber infrastructures economically or geographically. A central VSAT station is set on Power Dispatching Center. All data in VSAT system are based on TCP/IP protocol. The first problem for such a system is to select suitable VSAT communication modalities. We chose SCPC (Single Carrier per Channel) over TDMA (Time-Division Multiplex Access) as our favorable modality because SCPC could provide reliable and persistent data link and easy to-- manage. A detailed analysis will be included in full text. For IEC 101 protocol, the traditional 2M channel is transferred to IP packets to access the VSAT system. For IEC 104 protocol, data is directly accessed to VAST system through Ethernet connections. Since the satellite link is not stable due to a variety of environmental reasons, traditional TCP may have large transmission delay or even cannot be used in such environments. To meet the requirements of IEC protocols in transmission delay, we developed a TCP/IP accelerator dedicated for satellite communication based on SCPS-TP (Space Communication Protocol Standards - Transport Protocol). The SCPS-TP is modified version of traditional TCP/IP protocol adapted to space communications and it considers the effects of packet loss due to satellite link outage. A SCPS-TP based TCP/IP accelerator is added to each VSAT terminal in order to minimize the transmission delay. Our experiences showed that such VSAT system a very useful and robust in power systems against disasters.
机译:电力系统自动化技术对于电力系统的操作和控制至关重要。包括光纤,微波和电力线通信在内的各种通信系统都用于传输这些EMS / SCADA数据。在这些通信模式中,由于光纤通信的大带宽和高可靠性,因此它们被用来在大多数电网中传输IEC 101/104协议数据。但是,当发生大型自然灾害时,光纤非常脆弱。地震,冰雪罢工,飓风可能会破坏光纤系统的基础设施。在一些艰苦的地理区域,如川西高原山区,光纤通信的建设和运营非常昂贵且困难。 2008年之后的5.12四川地震四川省电力公司开始研究一些针对自然灾害的替代通信系统。与传统的光纤通信相比,VSAT通信(用于卫星通信的超小孔径终端)具有3个优点:(1)VSAT站的设置既方便又灵活。 (2)由于VSAT系统不需要有线电缆或光纤,因此具有强大的抵御自然灾害的能力。 (3)在某些困难的地理区域中,VSAT系统的建立和运行具有成本效益。在四川电力,我们提出了一种基于VSAT系统的新数据网络,用于EMS / SCADA数据传输。我们系统的结构是一个星形拓扑:我们将VSAT通信终端放置在经济或地理上无法承受光纤基础设施的地区的一些变电站和发电厂。电源调度中心上设有中央VSAT站。 VSAT系统中的所有数据均基于TCP / IP协议。这种系统的第一个问题是选择合适的VSAT通信方式。我们选择SCPC(每通道单个载波)而不是TDMA(时分多路复用访问)作为我们的有利方式,因为SCPC可以提供可靠且持久的数据链接,并且易于- -- 管理。详细分析将包含在全文中。对于IEC 101协议,传统的2M信道被传输到IP数据包以访问VSAT系统。对于IEC 104协议,数据通过以太网连接直接访问VAST系统。由于由于多种环境原因,卫星链路不稳定,因此传统的TCP可能具有较大的传输延迟,甚至无法在此类环境中使用。为了满足IEC协议在传输延迟方面的要求,我们开发了一种基于SCPS-TP(空间通信协议标准-传输协议)的专用于卫星通信的TCP / IP加速器。 SCPS-TP是适用于空间通信的传统TCP / IP协议的修改版本,它考虑了由于卫星链路中断而造成的数据包丢失的影响。基于SCPS-TP的TCP / IP加速器已添加到每个VSAT终端,以最大程度地减少传输延迟。我们的经验表明,这样的VSAT系统在电力系统中非常有用,并且可以抵御灾难。

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