Skip to content
IONI ENGINEERING ™EV BOXCASE
  • ΝΕΑ ΣΥΣΤΗΜΑΤΑ & EV
  • ΑΚΑΔΗΜΑΪΚΗ ΚΑΙΝΟΤΟΜΙΑ
  • ΕΠΙΚΟΙΝΩΝΙΑ
  • E-SHOP & ΠΑΡΑΓΓΕΛΙΕΣ
    • ΦΟΡΤΙΣΤΕΣ AC & ΚΑΛΩΔΙΩΣΗ
    • ΦΟΡΤΙΣΤΕΣ DC
ΕΠΙΣΤΗΜΟΝΙΚΕΣ ΔΗΜΟΣΙΕΥΣΕΙΣ

Investigating heterogeneous car-following behaviors of different vehicle types, traffic…

Investigating heterogeneous car-following behaviors of different vehicle types, traffic densities and road types

Jinghua Wang, Zhao Zhang, Feng Liu, Guangquan Lu

School of Transportation Science and Engineering, Beihang University, China

For realistic traffic flow simulation and analysis, it is essential to discuss car‐following behaviors in detail, while most studies only concentrate on the heterogeneity according to vehicle types based on the unstable observable variables. To overcome such shortcoming, this paper introduces car‐following properties to represent car‐following behaviors in different driving conditions. Based on a naturalistic trajectory dataset named The Next Generation Simulation Program (NGSIM), vehicles are divided into 7 classes based on driving conditions. The car‐following model parameters of each vehicle, which have practical meanings, are considered as the car‐following properties, and are calibrated by genetic algorithm (GA). And then, the heterogeneity of property is discussed based on Kolmogorov‐Smirnov test (KS‐test) and the rangeability to understand carfollowing behaviors. Results show the heterogeneity of car‐following behaviors according to vehicle type and road type, while traffic density has tiny effect on car‐following behaviors. And car‐following properties are also heterogeneous, as the comfortable deceleration is stable, while other properties change differently with driving conditions. Besides, there is a similar pattern of change on vehicle properties and vehicle trajectories. Furthermore, potential applications of the research are provided, for instance, model more realistic traffic simulations and give support to adaptive cruise control systems (ACC) for vehicles in different conditions.

ΕΠΙΣΤΗΜΟΝΙΚΕΣ ΔΗΜΟΣΙΕΥΣΕΙΣ

Impacts of Driving Conditions on EV Battery Pack Life…

Impacts of Driving Conditions on EV Battery Pack Life Cycle

Huijun Liu, Fenfang Chen, Yuxiang Tong, Zihang Wang, Xiaoli Yu and Rui Huang

World Electric Vehicle Journal

The aging of lithium-ion batteries (LIBs) is a crucial issue and must be investigated. The aging rate of LIBs depends not only on the material and electrochemical performance but also on the working conditions. In order to assess the impact of vehicle driving conditions, including the driving cycle, ambient temperature, charging mode, and trip distance on the battery life cycle, this paper first establishes an electric vehicle (EV) energy flow model to solve the operating parameters of the battery pack while working. Then, a powertrain test is carried out to verify the simulation model. Based on the simulated data under different conditions, the battery capacity fade process is estimated by using a semi-empirical aging model. The mileage (Ф) traveled by the vehicle before the end of life (EOL) of the battery pack is then calculated and taken as the evaluation index. The results indicate that the Ф is higher when the vehicle drives the Japanese chassis dynamometer test cycle JC08 than in the New European Driving Cycle (NEDC) and the Federal Test Procedure (FTP-75). The Ф will be dramatically reduced at both low and high ambient temperatures. Fast charging can increase the Ф at low ambient temperatures, whereas long trip driving can always increase Ф to varying degrees.

EV BOXCASE - IONI ENGINEERING

2021 FORMULA-E

https://www.youtube.com/watch?v=BtpLZYmUQ84

ΘΕΜΑΤΑ ΑΝΑ ΚΑΤΗΓΟΡΙΑ

ΝΕΑ ΣΥΣΤΗΜΑΤΑ & ΜΟΝΤΕΛΑ EV

  • Κατασκευή οθόνης πολλαπλών ενδείξεων για ηλεκτρικό όχημα
  • Audi A6 E-Tron Concept
  • Τι Ισχύει Πραγματικά για τα Ηλεκτροκίνητα Οχήματα
  • What does an electric vehicle replace?
  • Mapping the technology diffusion of battery electric vehicle based on patent analysis: A perspective of global innovation systems

Η ΔΙΚΗ ΜΟΥ ΛΥΣΗ EV BOXCASE

Ολοκληρωμένο Σύστημα Μελέτης, Σχεδιασμού και Εγκατάστασης Σταθμών Φόρτισης για Οικιακές, Επαγγελματικές και Κοινόχρηστες Εφαρμογές στο Δημόσιο Χώρο
Η υποβολή της φόρμας επικοινωνία συνεπάγεται ανεπιφύλακτη αποδοχή επεξεργασίας προσωπικών δεδομένων αποκλειστικά για ενημερωτικούς σκοπούς τώρα ή στο μέλλον. Ως αποτέλεσμα της επεξεργασίας ενδέχεται να λαμβάνεται ηλεκτρονικές μορφές επικοινωνίας από τις οποίες μπορείτε ανά πάσα στιγμή να παραιτηθείτε.

ΕΙΔΑΤΕ ΠΡΟΣΦΑΤΑ

  • Academia in Action
  • COMMUNICATION FORM
  • EVBOX HMP
  • NEWS ON EV SYSTEMS
  • Privacy Policy
  • SAY YES TO EV
  • Store

ΟΛΟΚΛΗΡΩΜΕΝΟ ΣΥΣΤΗΜΑ ΜΕΛΕΤΗΣ ΣΤΑΘΜΩΝ ΦΟΡΤΙΣΗΣ EV

ΝΕΑ ΣΥΣΤΗΜΑΤΑ & EV

  • Κατασκευή οθόνης πολλαπλών ενδείξεων για ηλεκτρικό όχημα 09/05/2021
  • Audi A6 E-Tron Concept 19/04/2021
  • Τι Ισχύει Πραγματικά για τα Ηλεκτροκίνητα Οχήματα 18/04/2021
  • What does an electric vehicle replace? 17/04/2021
  • Mapping the technology diffusion of battery electric vehicle based on patent analysis: A perspective of global innovation systems 13/04/2021

ΘΕΜΑΤΟΛΟΓΙΑ

MENU ΠΛΟΗΓΗΣΗΣ

  • ΝΕΑ ΣΥΣΤΗΜΑΤΑ & EV
  • ΑΚΑΔΗΜΑΪΚΗ ΚΑΙΝΟΤΟΜΙΑ
  • ΕΠΙΚΟΙΝΩΝΙΑ
  • E-SHOP & ΠΑΡΑΓΓΕΛΙΕΣ
    • ΦΟΡΤΙΣΤΕΣ AC & ΚΑΛΩΔΙΩΣΗ
    • ΦΟΡΤΙΣΤΕΣ DC

IONI ENGINEERING

ΦΟΡΤΙΖΕΙ ΤΗΝ ΗΛΕΚΤΡΟΚΙΝΗΣΗ

COPYRIGHT 2003-2021 | IONI ENGINEERING LLC | All rights reserved
Theme by Colorlib Powered by WordPress