Driving information process system-based real-time energy management for the fuel cell bus to minimize fuel cell engine aging and energy consumption
Author:
Publisher
Elsevier BV
Subject
General Energy,Pollution,Mechanical Engineering,Building and Construction,Electrical and Electronic Engineering,Industrial and Manufacturing Engineering,Civil and Structural Engineering
Reference32 articles.
1. Deployment of fuel cell vehicles in China: greenhouse gas emission reductions from converting the heavy-duty truck fleet from diesel and natural gas to hydrogen[J];Liu;Int J Hydrogen Energy,2021
2. Investigating the impact of ageing and thermal management of a fuel cell system on energy management strategies[J];Kandidayeni;Appl Energy,2020
3. Electric powertrain: energy systems, power electronics and drives for hybrid, electric and fuel cell vehicles [book review][J];Miller;IEEE Power Electronics Magazine,2018
4. The impact of fuel cell vehicle deployment on road transport greenhouse gas emissions: the China case[J];Liu;Int J Hydrogen Energy,2018
5. Fuel cell application in the automotive industry and future perspective[J];Olabi;Energy,2021
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