Institute of New Energy and Low-Carbon Technology, Sichuan University, Chengdu, 610064, People's Republic of China.
Uncertainty Decision-Making Laboratory, Sichuan University, Chengdu, 610064, People's Republic of China.
Environ Sci Pollut Res Int. 2018 Mar;25(9):8512-8531. doi: 10.1007/s11356-017-1163-z. Epub 2018 Jan 8.
Carbon emissions in air passenger transport have become increasing serious with the rapidly development of aviation industry. Combined with a tripartite equilibrium strategy, this paper proposes a multi-level multi-objective model for an air passenger transport carbon tax setting problem (CTSP) among an international organization, an airline and passengers with the fuzzy uncertainty. The proposed model is simplified to an equivalent crisp model by a weighted sum procedure and a Karush-Kuhn-Tucker (KKT) transformation method. To solve the equivalent crisp model, a fuzzy logic controlled genetic algorithm with entropy-Bolitzmann selection (FLC-GA with EBS) is designed as an integrated solution method. Then, a numerical example is provided to demonstrate the practicality and efficiency of the optimization method. Results show that the cap tax mechanism is an important part of air passenger trans'port carbon emission mitigation and thus, it should be effectively applied to air passenger transport. These results also indicate that the proposed method can provide efficient ways of mitigating carbon emissions for air passenger transport, and therefore assist decision makers in formulating relevant strategies under multiple scenarios.
随着航空业的飞速发展,航空客运中的碳排放问题日益严重。本文结合三方均衡策略,提出了一个国际组织、航空公司和乘客之间的多级别多目标航空客运碳税设置问题(CTSP)的多层次多目标模型,其中包含模糊不确定性。通过加权和程序和 Karush-Kuhn-Tucker(KKT)变换方法,将所提出的模型简化为等效的清晰模型。为了解决等效的清晰模型,设计了一种具有熵-玻尔兹曼选择的模糊逻辑控制遗传算法(FLC-GA with EBS)作为综合解决方案方法。然后,提供了一个数值实例来验证优化方法的实用性和效率。结果表明,总量管制与交易制度是航空客运碳减排的重要组成部分,因此应有效地应用于航空客运。这些结果还表明,所提出的方法可以为航空客运的碳排放减排提供有效的途径,从而帮助决策者在多种情况下制定相关策略。