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Safety Interlock System Integration With A PC Based Distributed Control Model

机译:与基于PC的分布式控制模型的安全联锁系统集成

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The use of Chlorine Dioxide for water treatment in North America can be traced back to 1947 when it was first used to control phenol-related taste and odor concerns in drinking water supplied from the Niagara River in New York State. In recent years, the use of chlorine dioxide as a primary disinfectant, replacing chlorine in the water treatment industry has seen growing interest due to increasing regulatory pressures. These regulatory issues have caused many Municipalities to review their treatment programs and in some cases forced them to seek alternative treatment solutions, or to better control their existing systems. ERCO Worldwide has integrated a number of control system elements, along with novel chlorine dioxide generator technologies to provide Municipalities with chlorine dioxide systems that will help them address these regulatory pressures. The resulting control strategy, while developed for a specific series of generators, would lend itself to almost any small to medium scale control system for standalone OEM packages. This control system philosophy has been based upon an open networking strategy coupled with a number of digital communication protocols, and facilitates the integration of this standalone system into the larger Municipal Water Plant Enterprise. ERCO's control system design philosophy is born out of its experiences in the chemical industry, in which large scale DCS systems are integrated with standalone safety interlock systems. However, this level of complexity and system cost were neither warranted, nor would they be supported at the Municipal Water Treatment Plant level. A control system philosophy had to be developed that could be implemented cost effectively, easily supported in the field, and would be scalable to suite anticipated requirements. It was imperative that the control system be easily integrated into the Municipal Water Plant's control scheme, despite the wide range of applied technologies implemented across North America and the diverse nature of the requirements of each customer. A PC-Based control system was designed utilizing commercially available software that integrated the system Human Machine Interface, Control Logic, Alarming, Data Logging, OPC Server and Clients, and HTML Reporting into a single development package. The PC-Based control package was linked to a programmable I/O system, via a Modbus TCP interface. The selected I/O system was modular in nature allowing the vendor to optimize the I/O capabilities of the control package with the required field instruments. The PC-Based control system was programmed with the process interlocks, while the programmable I/O was configured to run the safety interlocks. By isolating the process logic and safety interlock logic between two separate controllers; this control system enables this family of generator technology to address a number of the issues raised through the ANSI ISA S84.01 standard. The integration of PC-Based control with a programmable I/O system enabled the development of a control system that was based solely on commercially available elements which supports a number of different digital bus technologies. This package can be readily integrated into existing and anticipated plant control schemes, to facilitate the integration of the standalone controller into the overall plant control strategy.
机译:当它首次用于控制从纽约州尼亚加拉河供应的饮用水中的饮用水中,它可以追溯到1947年的氯化二氧化氯用于水处理。近年来,使用二氧化氯作为主要消毒剂,取代水处理行业的氯由于增加的调节压力而产生的兴趣。这些监管问题导致许多市政当局审查其治疗方案,并在某些情况下迫使他们寻求替代治疗解决方案,或者更好地控制其现有系统。 ERCO全球已经综合了许多控制系统元素,以及新的二氧化氯发电机技术,提供了与二氧化氯系统的城市,这将有助于他们解决这些监管压力。由此产生的控制策略,虽然为特定系列发电机开发,但是对于独立OEM包的几乎任何小于中等规模控制系统。该控制系统哲学一直基于与许多数字通信协议耦合的开放式网络策略,并促进该独立系统将该独立系统集成到较大的市政水厂企业中。 ERCO的控制系统设计理念源于其在化学工业中的经验,其中大规模的DCS系统与独立的安全联锁系统集成。然而,这种复杂程度和系统成本既没有保证,也不是市政水处理厂水平的支持。必须制定控制系统理念,可以在现场有效地实现成本,并且可以在该领域中易于支持,并且可以扩展到套件预期的要求。仍然必须轻松地集成到市政水厂的控制方案中,尽管遍及北美各种应用技术以及各客户要求的多样性性质,但是仍然集成到市政水厂的控制方案中。设计了基于PC的控制系统,利用商用软件,集成了系统人机界面,控制逻辑,报警,数据记录,OPC服务器和客户端以及HTML报告到单个开发包中。基于PC的控制包通过Modbus TCP接口链接到可编程I / O系统。所选的I / O系统是模块化的,允许供应商使用所需的现场仪器优化控制包的I / O功能。基于PC的控制系统与过程互锁编程,而可编程I / O配置为运行安全互锁。通过隔离两个单独的控制器之间的过程逻辑和安全互锁逻辑;该控制系统使该系列的发电机技术能够解决通过ANSI ISA S84.01标准提出的许多问题。使用可编程I / O系统的基于PC的控制集成使得能够开发仅基于市售元件的控制系统,该元素支持多种不同的数字总线技术。该包装可以很容易地集成到现有和预期的工厂控制方案中,以便于将独立控制器集成到整个工厂控制策略中。

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