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Automatic communication system ship to shipping terminal, for reporting potential malfunctions of a ballast water treatment system operation

机译:自动通信系统运送到运输码头,用于报告压载水处理系统操作的潜在故障

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This research paper reviews ballast water treatment systems in two parts regarding data and methods: multi-criteria analysis and reliability study. The problem is how to timely recognize failure or operation stoppage of a ballast water treatment system. In the first part the multi-criteria analysis parameters and scenarios have considered the functional and operational problems of the systems. Aim of the study was to determine the most optional system from the maintenance point of view related to data transfer amount. The best score was 62% and it was the system that uses filtration, electrolysis and UV generator. Ballast water treatment systems could be in failure or under repair. That was confirmed and mathematically verified in the second part of the study. Reliability of the systems was calculated and total reliability value was 0.7 for each of the two computing systems individually, where one is redundant. New invented volumetric sensors should indirectly automatically report malfunctions through wireless and wire communications and that was suggested and ascertained in this paper.
机译:本研究论文从数据和方法两方面回顾了压载水处理系统:多标准分析和可靠性研究。问题是如何及时识别压载水处理系统的故障或操作停止。在第一部分中,多标准分析参数和方案已考虑了系统的功能和操作问题。该研究的目的是从维护角度确定与数据传输量相关的最可选系统。最高分是62%,是使用过滤,电解和紫外线发生器的系统。压载水处理系统可能出现故障或正在维修。研究的第二部分对此进行了确认并进行了数学验证。计算了系统的可靠性,对于两个计算系统中的每一个,总可靠性值为0.7,其中一个是冗余的。新发明的体积传感器应通过无线和有线通信间接自动报告故障,这在本文中已提出并确定。

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