Construction of the Geometrical Models of a Multiple-Factor Optimization of the Technical and Operating Parameters of the Trolleybuses with an Autonomous Move Margin

https://doi.org/10.26552/com.C.2022.1.B29-B40

Keywords: trolleybus, autonomous move, multidimensional space, multiple-factor optimization model, passenger capacity, electrical energy store

Abstract

While introducing into a system of passenger traffic the ecologically clean vehicles, namely the electric buses, a task of providing them with a rational move margin is actual. This problem is especially acute while using the trolleybuses with an autonomous move at urban and suburban routes.

A constructed multiple-factor model and a proposed algorithm of finding the main parameters allow forming the offers concerning a constructive providing of an additional equipment process with the means of autonomous move. Based on a visual presentation of the multidimensional spaces at Radishchev drawing an effective way is offered of a geometrical interpretation of mutual influence of the optimization factors set on the operating characteristics of the additionally equipped vehicles.

Author Biographies

Serhii Pustiulha

Department of Architecture and Design, Lutsk National Technical University, Lutsk, Ukraine

Volodymyr Samchuk

Department of Building and Civil Engineering, Lutsk National Technical University, Lutsk, Ukraine

Valerii Dembitskyi

Department of Automobiles and Transport Technologies, Lutsk National Technical University, Lutsk, Ukraine

Viktor Samostian

Department of Automobiles and Transport Technologies, Lutsk National Technical University, Lutsk, Ukraine

Valentyn Prydiuk

Department of Automobiles and Transport Technologies, Lutsk National Technical University, Lutsk, Ukraine

Published
2022-01-01
How to Cite
Serhii Pustiulha, Volodymyr Samchuk, Valerii Dembitskyi, Viktor Samostian, & Valentyn Prydiuk. (2022). Construction of the Geometrical Models of a Multiple-Factor Optimization of the Technical and Operating Parameters of the Trolleybuses with an Autonomous Move Margin. Communications - Scientific Letters of the University of Zilina, 24(1), B29-B40. https://doi.org/10.26552/com.C.2022.1.B29-B40
Section
Mechanical Engineering in Transport