Reduction of CO2 emission as a result of the use of 48-volt electrical installations in passenger cars

Q2 Engineering Archives of Transport Pub Date : 2023-06-30 DOI:10.5604/01.3001.0016.3124
J. Kozyra, Z. Łukasik, A. Kuśmińska-Fijałkowska, A. Janota
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Abstract

The introduction of a new standard of 48-volt electrical systems in cars comes at an additional cost to the vehicle. Acceptance of these costs is justified because it becomes a way to achieve lower CO2 emissions and lower fuel consumption. An important factor in favor of adopting 48-volt systems is the reduction in CO2 due to the use of a highly efficient 48-volt motor-generator unit coupled to a DC/DC converter. A methodology for testing new solu-tions to quantify CO2 savings and reductions therefore becomes crucial. This methodology must be capable of demonstrating the CO2 benefits primarily of the innovative technology proven in real-world driving conditions and with a large amount of realistic statistical data. The introduction of new eco-innovations must take into ac-count the linkage and impact on other environmentally oriented eco-innovative solutions. When implementing new technical solutions, a necessary aspect is the interaction with other innovations installed in vehicles with new electrical installation standards. Therefore, for the expected synergy of solutions to occur, two or more innovative technologies must be installed. Then the combined savings from one of them will affect the performance of the other technologies, and vice versa. The new technology of a high-efficiency 48-volt motor-generator unit cooperat-ing with a 48V/12V DC/DC converter fits very well in creating interactions with other implemented solutions aimed at reducing CO2 emissions. The article discusses the problems of the introduced new technology of a high-efficiency 48-volt motor-generator unit cooperating with a 48V/12V DC/DC converter. The publication analyzes the impact of increasing the voltage rating of current passenger car installations to 48V. Based on the methodolo-gy for determining the reduction of CO2 emissions of a vehicle with a 48V/12V DC/DC voltage converter installed, the mass of fuel per unit of engine operation time was determined. The amount of fuel saved was determined, and CO2 emission reductions were calculated for the three adopted passenger vehicles tested.
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由于在乘用车中使用48伏电力装置,减少了二氧化碳排放
在汽车中引入新标准的48伏电气系统需要增加车辆的成本。接受这些成本是合理的,因为这是实现低二氧化碳排放和低燃料消耗的一种方式。采用48v系统的一个重要因素是,由于使用了高效的48v电机发电机组和DC/DC转换器,可以减少二氧化碳的排放。因此,测试新解决方案以量化二氧化碳减排的方法变得至关重要。这种方法必须能够证明创新技术在实际驾驶条件和大量实际统计数据中证明的二氧化碳效益。引入新的生态创新必须考虑到对其他面向环境的生态创新解决方案的联系和影响。在实施新的技术解决方案时,一个必要的方面是与安装在具有新电气安装标准的车辆上的其他创新进行互动。因此,为了实现预期的解决方案协同作用,必须安装两种或两种以上的创新技术。然后,其中一种技术的综合节省将影响其他技术的性能,反之亦然。高效48伏电机发电机组的新技术与48V/12V DC/DC转换器配合使用,非常适合与其他旨在减少二氧化碳排放的实施解决方案进行交互。本文讨论了引进的48V/12V DC/DC变换器配合48V/12V高效48V发电机组新技术存在的问题。该出版物分析了将当前乘用车装置的额定电压提高到48V的影响。基于安装48V/12V DC/DC电压转换器的车辆二氧化碳减排的确定方法,确定了发动机每单位工作时间的燃油质量。确定了节省的燃油量,并计算了测试中采用的三种乘用车的二氧化碳减排量。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Archives of Transport
Archives of Transport Engineering-Automotive Engineering
CiteScore
2.50
自引率
0.00%
发文量
26
审稿时长
24 weeks
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