Mikołaj Bartłomiejczyk - Publikacje - MOST Wiedzy

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Rok 2023
  • Terminal charging scheduling of battery electric buses based on vehicle routing problem
    Publikacja

    - Rok 2023

    Electric buses are considered to be a viable solution for reducing emission in dense urban areas. However, the greater charging time is a huge challenge for operators. In this paper, charging scheduling method was elaborated based on vehicle routing problem using mixed-integer linear programming model. The main novelty of the paper is the combination of modelling aspect, namely flexible turn sequence and heterogeneous shared charging...

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Rok 2022
  • Application of Traction Supply System for Charging Electric Cars
    Publikacja

    - ENERGIES - Rok 2022

    The development of electromobility involves the development of electric cars charging infrastructure. The increase of the number of chargers poses new demands for the AC power grid, especially in regard to its capacity of delivering high peak power. As an alternative for the public AC power grid, urban electrified transportation systems (trams, trolleybuses, and metro) can be used for supplying electric cars chargers. The article...

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  • Compensation of Voltage Drops in Trolleybus Supply System Using Battery-Based Buffer Station
    Publikacja

    This paper analyzes the results of a trial operation of a battery-based buffer station supporting a selected section of trolleybus power supply systems in Pilsen, Czech Republic. The buffer station aims to prevent the catenary from excessive voltage drops in a part of the route that is most remote from the traction substation. Compensation of voltage drops is carried out by continuously measuring the catenary voltage and injecting...

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  • Innovative Bidirectional Isolated High-Power Density On-Board Charge for Vehicle-to-Grid
    Publikacja
    • R. Hrbáč
    • L. Hrdina
    • V. Kolar
    • Z. Slanina
    • V. Blazek
    • T. Vantuch
    • M. Bartłomiejczyk
    • S. Misak

    - SENSORS - Rok 2022

    This paper deals with developing and implementing a bidirectional galvanically isolated on-board charger of a high-power density. The power density of the new charger was 4 kW/kg and 2.46 kW/dm3, and the maximum efficiency was 96.4% at 3.4 kW. Due to the requirement to achieve a high-power density, a single-stage inverter topology was used. Regarding switching losses, due to the topology of the circuit with so-called hard switching,...

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