Please use this identifier to cite or link to this item: http://hdl.handle.net/10397/106810
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Title: Optimizing sulfur emission control areas for shipping
Authors: Zhen, L
Zhuge, D 
Zhang, S
Wang, Shuaian 
Psaraftis, HN
Issue Date: 2024
Source: Transportation science, Published Online:1 Apr 2024, Ahead of Print, https://doi.org/10.1287/trsc.2023.0278
Abstract: The design of emission control areas (ECAs), including ECA width and sulfur limits, plays a central role in reducing sulfur emissions from shipping. To promote sustainable shipping, we investigate an ECA design problem that considers the response of liner shipping companies to ECA designs. We propose a mathematical programming model from the regulator’s perspective to optimize the ECA width and sulfur limit, with the aim of minimizing the total sulfur emissions. Embedded within this regulator’s model, we develop an internal model from the shipping liner’s perspective to determine the detoured voyage, sailing speed, and cargo transport volume with the aim of maximizing the liner’s profit. Then, we develop a tailored hybrid algorithm to solve the proposed models based on the variable neighborhood search meta-heuristic and a proposition. We validate the effectiveness of the proposed methodology through extensive numerical experiments and conduct sensitivity analyses to investigate the effect of important ECA design parameters on the final performance. The proposed methodology is then extended to incorporate heterogeneous settings for sulfur limits, which can help regulators to improve ECA design in the future.
Keywords: Cargo allocation
Emission control area design
Path and speed optimization
Sulfur emissions
Sustainable shipping
Publisher: Institute for Operations Research and the Management Sciences (INFORMS)
Journal: Transportation science 
ISSN: 0041-1655
EISSN: 1526-5447
DOI: 10.1287/trsc.2023.0278
Rights: Copyright: © 2024 INFORMS
This is the accepted manuscript of the following article: Zhen, L., Zhuge, D., Zhang, S., Wang, S., & Psaraftis, H. N. (2024). Optimizing Sulfur Emission Control Areas for Shipping. Transportation Science, which is available at https://doi.org/10.1287/trsc.2023.0278.
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