Urban areas are negatively impacted by Carbon Dioxide (CO2 ) and Nitrogen Oxide (NOx) emissions. In order to achieve a cost-effective reduction of greenhouse gas emissions and to combat climate change, the European Union (EU) introduced an Emissions Trading System (ETS) where organizations can buy or receive emission allowances as needed. The current ETS is a centralized one, consisting of a set of complex rules. It is currently administered at the organizational level and is used for fixed-point sources of pollution such as factories, power plants, and refineries. However, the current ETS cannot efficiently cope with vehicle mobility, even though vehicles are one of the primary sources of CO2 and NOx emissions. In this study, we propose a new distributed Blockchain-based emissions allowance trading system called B-ETS. This system enables transparent and trustworthy data exchange as well as trading of allowances among vehicles, relying on vehicle-to-vehicle communication. In addition, we introduce an economic incentive-based mechanism that appeals to individual drivers and leads them to modify their driving behavior in order to reduce emissions. The efficiency of the proposed system is studied through extensive simulations, showing how increased vehicle connectivity can lead to a reduction of the emissions generated from those vehicles. We demonstrate that our method can be used for full life-cycle monitoring and fuel economy reporting. This leads us to conjecture that the proposed system could lead to important behavioral changes among the drivers
翻译:碳二氧化物(CO2)和氧化氮(NOx)排放对城市地区造成负面影响。为了以成本效益高的方式减少温室气体排放并应对气候变化,欧洲联盟(欧盟)引入了一个新的排放交易系统(ETS),各组织可以根据需要购买或获得排放配额;目前的排放交易系统是一个中央化系统,由一套复杂的规则组成;目前是在组织一级管理,用于工厂、发电厂和炼油厂等固定点污染源;然而,目前的排放交易系统无法有效地应对车辆流动性,尽管车辆是二氧化碳和氮氧化物排放的主要来源之一。在本研究中,我们建议采用一个新的分布式排放交易系统(ETS),使各组织能够根据需要购买或接受排放配额;目前的排放交易系统是一个中央化系统,由一套复杂的规则组成;目前,在组织一级管理该系统,用于工厂、发电厂和炼油厂等固定点污染源;然而,目前的排放交易系统无法有效应对车辆流动,即使车辆是二氧化碳排放的主要来源之一;我们通过广泛模拟,正在研究拟议系统的效率,表明如何提高车辆的连通性,从而减少燃料循环系统。我们拟议采用的方法,从而减少燃料循环产生的排放。