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A bilevel hybrid economic approach for optimal deployment of onshore power supply in maritime ports

机译:海港船舶电力供应最优部署的双级混合经济方法

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Onshore power supply (OPS) is an effective measure to curb at-berth emissions by allowing berthed ships to switch off their auxiliary engines and plug into the shore-side electric grid for their power demand. Despite OPS's proven benefits in reducing emissions, port entities are often reluctant to adopt OPS technology due to the expensive electrical infrastructure retrofitting process. Hence, regulatory subsidies often play a key role in the promotion of OPS. This paper proposes a novel bilevel hybrid economic approach to jointly aid both the regulatory agency and the port entity to holistically increase OPS uptake. In the proposed model, the regulatory authority on the upper level acts first and develops the optimal hybrid incentive policy to minimize the negative environmental impacts caused by ships at berth. The port entity on the lower level then decides the most financially favorable and economically viable investment decisions regarding the selection and installation of OPS. The problem is formulated as a mixed-integer bilevel programming model and solved using a column and constraint generation method. The simulation-based case study shows the environmental and economic strength of the proposed hybrid economic approach compared to the conventional regulatory and market-based approaches.
机译:陆上电源(OPS)是通过允许拆卸的船只关闭其辅助发动机并插入岸侧电网以供其电力需求来遏制泊位排放的有效措施。尽管OPS在减少排放方面的经过验证的好处,但由于昂贵的电气基础设施改装过程,港口实体往往不愿意采用OPS技术。因此,监管补贴经常在促进OPS中发挥关键作用。本文提出了一种新的贝韦杂交经济方法,共同援助监管机构和港口实体,以全面增加OPS摄取。在拟议的模型中,上层的监管机构首先行动,并开发最佳的混合动力激励政策,以尽量减少泊位船舶造成的负面环境影响。较低级别的港口实体决定了有关选择和安装的最具资金上有利和经济上可行的投资决策。该问题被配制为混合整数Bilevel编程模型,并使用列和约束生成方法进行解决。基于仿真的案例研究表明,与传统的监管和基于市场的方法相比,拟议的混合经济方法的环境和经济实力。

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    《Oceanographic Literature Review 》 |2021年第5期| 1106-1106| 共1页
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