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The use of industrial wireless networks based on standard ISA-100.11a and protocol WirelessHART in process control

机译:在过程控制中使用基于标准ISA-100.11a和协议WirelessHART的工业无线网络

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This article considers wireless technologies in the field of automation of technological processes and production in the energy, chemical, petrochemical and oil refining, gas, railway, mining, metallurgical and other industries where the use of wireless industrial devices is necessary due to specific features. Wireless technologies provide the ability to connect measuring devices directly to the wireless network with further transfer of information through a wireless gateway to an automated control system. This article will discuss the types of wireless networks that are classified according to the possible range of action (Wireless Wide area network, Wireless Local Area Network, Wireless Personal Area Network). The most common standards of organization of wireless industrial networks, including IEEE 802.11 b/g, IEEE 802.15.1, IEEE 802.15.4, IEEE 802.16 e, will also be considered, including in the field of management of chemical-technological processes and productions. Data transmission protocols ISA-100.11.a and WirelessHART and a number of their features will be analyzed. The basic standard network structures based on the ISA-100.11.a and WirelessHART protocols, their typical components, will be considered. The article provides an analytical comparison of the ISA100.11a and WirelessHART over the OSI network model layers, including the physical layer, the link layer, the network layer, the transport layer, the session layer, the presentation layer and the application layer (process control, management, security, application sublayer). The main stages of calculation of wireless industrial network are given, in particular: calculation of the network information load, calculation of the network’s energy parameters, frequency-territorial planning, development of the communication scheme and interface with external networks. The formulas for calculating the network information load using Nazarov’s methodology, calculating the network’s energy parameters, taking into account the overall losses in the propagation of radio waves, including losses in free space, losses in partitions and walls inside the building, losses due to interference and signal fading are given.
机译:本文考虑了在能源,化工,石化和炼油,天然气,铁路,采矿,冶金和其他行业的工艺过程和生产自动化领域中的无线技术,这些技术由于特定的功能而必须使用无线工业设备。无线技术提供了将测量设备直接连接到无线网络的能力,并通过无线网关将信息进一步传输到自动控制系统。本文将讨论根据可能的作用范围分类的无线网络的类型(无线广域网,无线局域网,无线个人局域网)。也将考虑无线工业网络的最常见组织标准,包括IEEE 802.11 b / g / n,IEEE 802.15.1,IEEE 802.15.4,IEEE 802.16 e,包括在化学工艺过程管理领域和产品。将分析数据传输协议ISA-100.11.a和WirelessHART及其许多功能。将考虑基于ISA-100.11.a和WirelessHART协议的基本标准网络结构及其典型组件。本文通过OSI网络模型层(包括物理层,链路层,网络层,传输层,会话层,表示层和应用程序层(过程),对ISA100.11a和WirelessHART进行了分析比较。控制,管理,安全,应用子层)。给出了无线工业网络计算的主要阶段,特别是:网络信息负载的计算,网络能量参数的计算,频域规划,通信方案的开发以及与外部网络的接口。使用Nazarov方法计算网络信息负载的公式,计算网络的能量参数,并考虑到无线电波传播的总体损失,包括自由空间的损失,建筑物内的分隔壁和墙壁的损失,干扰造成的损失和信号衰落。

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