Reliable and Low-cost SCADA-RTU Communications Using GPRS and Dynamic JP

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Introduction

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Reliable and Low-cost SCADA-RTU Communications Using GPRS and Dynamic IP

This application note provides an overview of communications between remote terminal units (RTUs) and supervisory control and data acquisition (SCADA) systems. In addition to covering the General Packet Radio 

The cost reduction achieved by using GPRSService (GPRS) telemetry communications link between Yokogawa's STARDOM FCN/FCJ intelligent RTUs and FAST/TOOLS SCADA package, this document discusses the following:

  • Support of various internet service provider (ISP) configurations
  • The failover communications capability of GPRS

Expected Benefits

  • Reduction of initial costs by using commercial off-the-shelf (COTS) network components
  • Reduction of communications costs by reducing the number of data packets

Background

Remote data monitoring is required in many industries and applications such as oil & gas, power, waste water treatment, and environmental monitoring. In these applications, a fairly large number of RTUs in remote and/or hazardous locations collect data from devices and send log data and alarms to a SCADA terminal in a central control room (CCR). Telemetry devices installed between the RTUs and the SCADA system send and receive the data. Some big concerns about using telemetry are cost (initial expenditure and communications fees) and communications stability. As the IT network infrastructure improves in remote areas, commodity network infrastructure can be more readily used in telemetry applications, reducing initial startup costs and affording relatively stable communications.

Cost Reduction by Using GPRS

Conventional telephone lines are billed per minute of connection time regardless of whether data is actually sent. On the other hand, when using the GPRS mobile data service on a Global System for Mobile Communications (GSM) system, billing is based on the number of communication packets and is independent of connection time. To make the most of the advantages of GPRS, Yokogawa's STARDOM FCN/FCJ intelligent RTUs and FAST/TOOLS SCADA package have several functions that reduce the number of packets that must be sent. This dramatically lowers communication fees while no concessions are made in response time (e.g. for alarming). In a recent project, this succeeded in reducing the number of packets by 80%.

System Configuration

System Configuration

Note: Transfer rates of GPRS are theoretically up to 171.2kbps. However, transfer rates of between 30-50 kbps are common because they are depend on several factors such as distance to the base transfer station (BTS) and numbers of users in the same area.

Report by Exception

The amount of log data on an RTU would be huge if all data were stored. To reduce the amount of stored data, the FCN/FCJ logs only the data that has changed since the last time stamp. FAST/ TOOLS periodically monitors for changed data on the FCN/FCJ and acquires the log data only in situations such as when there is some change in the data, an alarm occurs, or the refresh button is pressed by the operator. When FAST/TOOLS reads the log data, it is timestamped and merged into its trend data buffer to ensure a seamless trend data graph, even if the network fails and needs to be recovered.

Support of Various ISP Configuration

The FCN/FCJ RTUs can connect to the GPRS/GSM networks provided by ISPs. Though the types of services vary according to country and region, ISPs typically perform internet protocol (IP) address assignment.

IP Address

An IP address is a unique address that is assigned to devices so that they can identify and communicate with each other on a network. There are two types of IP addresses: a static IP address, which is a unique and fixed IP address on a network, and a dynamic IP address, which is assigned by means of the Dynamic Host Configuration Protocol (DHCP) every time a device starts.

RTU and SCADA Communication Using a Static IP Address

An RTU and a SCADA send and receive data based on a statc IP address.

Static IP address

Static IP address
A SCADA station acquires log data from an RTU by using static IP address.

RTU and SCADA Communication Using a Dynamic IP Address

The use of a dynamic IP address is often necessary if an ISP does not provide a static IP address service or if the cost of a static IP address service is much higher than a dynamic IP, making the provision of a static IP to every RTU commercially unfeasible. In this case, the Dynamic Domain Name System (DDNS) is required to convert the host name to a dynamic IP address so that the RTUs and SCADA can communicate with each other using a fixed host name. Even if a local provider cannot provide DDNS service, FAST/TOOLS and the FCN/FCJ RTU can communicate with each other via a DDNS server that is located in the same computer room as the FAST/TOOLS system. The FCN/FCJ RTU autonomously sends its own host name and IP address to the DDNS server, which has a fixed IP address, and then the DDNS manages the FCN/FCJ RTU's host name and IP address.

Dynamic IP address
Dynamic IP address
A SCADA station acquires log data from an RTU by using fixed host name.

Failover Communication of GPRS

As you may already know, GSM cellular phone networks can be affected by weather conditions or electrical interference, and in the worst case, communications can be lost. In the same way, a GPRS link over a GSM network connecting a SCADA system to RTUs can be cut at any time. However, the FCN/FCJ RTUs can automatically reestablish the communications link if this occurs.

Reconnection by Monitoring Point-to-Point (PPP) Status

The FCN/FCJ intelligent RTUs establish a connection with the GPRS network using an embedded PPP protocol. If the PPP communications link is lost, the FCN/FCJ RTUs monitor the PPP status and at regular intervals attempt to re-establish the connection with the GPRS network. With this function, the connection between FAST/TOOLS and the FCN/FCJ RTUs is guaranteed. This, combined with the system's capability to keep a log, ensures that data is never lost: FAST/TOOLS will automatically "catch-up" as soon as a communications link is reestablished.

Conclusion

SCADA telemetry systems used in oil & gas, environment monitoring, and water distribution applications have to be capable of covering a wide area and functioning under harsh conditions, and must be at the same time affordable and inexpensive to operate. With its FAST/TOOL SCADA package and FCN/FCJ intelligent RTUs, Yokogawa is helping its customers improve cost competitiveness and improve quality.

Additional Industries: Environment Monitoring

產業別

  • 上游

    上游業包含海上和陸上活動,包括井口自動化,分餾,完井和分離,回收和製備地下或水下原油和天然氣。

    當石油被帶到地表時,在運輸之前必須將其分離。在三相分離中,一級和二級分離階段通常分佈有氣體流量,水流量和油流量,氣體的輸送需要管道,並且在輸送之前的上游階段需要進行分餾。液體需要通過罐和管道輸送並處理,這就需要精確的液位測量。

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  • 水和廢水

    橫河電機通製開發更節能的技術,幫助減少運營的碳排放,以及構建保護環境免受污染的堅固建築,為可持續水生產提供控制解決方案。橫河憑借先進的技術和廣泛的應用專業知識與客戶合作,提供可持續水生產的解決方案,促進客戶的業務,並讓整個工廠在生命周期中增加價值。橫河的技術和產品可提高工廠的性能,確保它們在當今的水處理領域中具有競爭力,並降低運營成本。橫河支持市政和工業水處理領域的各種水控制方面的應用。

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  • 近海 (FPSO FLNG & FSRU)

    近海的勘探和生產需要在惡劣的條件下最大限度地保障正常運行時間。載人和無人駕駛設施需要可靠的綜合控制和安全系統(ICSS),並且需要具有先進的遠程監控能力。橫河電機擁有先進技術和豐富經驗,可以執行各種規模及自動化程度複雜的離岸項目。

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    FAST/TOOLS始於靈活的先進系統技術(FAST)項目,如今已發展為綜合且完全集成的SCADA應用套包。強大且靈活的FAST/TOOLS可以為各種應用提供安裝服務,從50點的單元製程到數百萬點的海上生產,以及延伸數千英裡的管道系統。

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