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Cost-Benefit Analysis for Ship Automation Retrofit: The Case of Icebreaker Frej

机译:船舶自动化改造的成本效益分析:Frej破冰船案例

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A detailed cost-benefit analysis of a retrofit of the Advanced Technology to Optimise Maritime Operational Safety (ATOMOS) platform on board icebreaker Frej is presented. After accurately determining the relationship between the costs and benefits, an analysis is implemented in order to assess the most basic advantages and disadvantages of the suggested retrofitting action in monetary terms. A two-step approach is adopted. The first step is to define the major categories of the ship operational aggregate costs and benefits (for example, the actual cost of the ATOMOS platform and of equipment not part of the ATOMOS platform but still necessary for its installation and operation, or the expected crew decrease because of the higher degree of automation). The second step is to examine the various basic components of these categories (for example, administration and training cost, required automatic radar plotting aid [ARPA] and electronic chart display and information system [ECDIS] equipment acquisition cost, fuel benefits, and insurance benefits). The cost-benefit analysis performed is followed by a sensitivity analysis of the most important factors affecting the net present value of the investment. It is shown that it takes about 5 years for the ATOMOS retrofit to be fully paid back by the annual savings it offers and it takes about 6.5 years for the net present value of the investment to turn positive. This coupled by the increased vessel safety justifies the decision to retrofit Frej with the ATOMOS platform. Furthermore, it is found that the cost of the ATOMOS platform, the benefits from crew decrease, and the interest rate are those factors that essentially determine the profitability of the investment. In the case of Frej, it is concluded that the retrofit is worth undertaking for the majority of future scenarios.
机译:提出了对破冰船Frej上用于优化海上操作安全(ATOMOS)平台的先进技术进行改造的详细成本收益分析。在准确确定成本与收益之间的关系之后,将进行分析,以便从货币角度评估建议的改造措施的最基本的利弊。采用两步法。第一步是定义船舶运营总成本和收益的主要类别(例如,ATOMOS平台和不属于ATOMOS平台的一部分但对于其安装和运行仍是必需的设备或预期船员的实际成本)降低,因为自动化程度更高)。第二步是检查这些类别的各个基本组成部分(例如,管理和培训成本,所需的自动雷达绘图辅助工具[ARPA]以及电子海图显示和信息系统[ECDIS]设备购置成本,燃料收益和保险收益) )。进行成本效益分析后,再进行影响投资净现值的最重要因素的敏感性分析。结果表明,ATOMOS改造需要大约5年的时间才能从其提供的年度节省中完全收回,而投资的净现值则需要大约6.5年才能恢复正值。再加上船只安全性的提高,就决定了将Frej改装为ATOMOS平台的决定。此外,发现ATOMOS平台的成本,机组人员的收益减少以及利率是从根本上决定投资收益性的那些因素。对于Frej,可以得出结论,对于大多数未来方案而言,改造是值得的。

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