Archive for Январь 18th, 2012

Research on Analysis Method and Principle of DualMode Electromechanical Variable Transmission Program

Дата: Январь 18th, 2012 Автор:
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  • Тип контента: Научная статья
  • Номер документа: 6492
  • Название документа: Research on Analysis Method and Principle of DualMode Electromechanical Variable Transmission Program
  • Номер (DOI, IBSN, Патент): Не заполнено
  • Изобретатель/автор: YAN Qingdong, XIANG Changle, WANG Weida, LI Hongcai
  • Правопреемник/учебное заведение: Beijing Institute of Technology, Beijing, China
  • Дата публикации документа: 2012-01-18
  • Страна опубликовавшая документ: Китай
  • Язык документа: Английский
  • Наименование изделия: Не заполнено
  • Источник: CHINESE JOURNAL OF MECHANICAL ENGINEERING
  • Вложения: Да
  • Аналитик: Глаголева Елена

Automotive industry, as an important pillar of the national economy, has been rapidly developing in recent years. But proplems such as energy comsumption and environmental pullution are posed at the same time. Electromechanical variable transmission system is con-sidered one of avilable workarounds. It is brought forward a kind of design methods of dualmode electrome-chanical variable transmission system rotational speed characteristics and dualmode drive diagrams. With the motor operating behavior of running in four quadrants and the speed characteristics of the simple in-ternal and external meshing single planetary gear train, four kinds of dualmode electromechanical transmis-sion system scheme are designed. And the velocity, torque and power characteristics of one of the programs are analyzed. The magnitude of the electric splitflow power is an important factor which influences the system performance, so in the parameters matching design, it needs to reduce the power needs under the first mode of the motor. The motor, output rotational speed range and the position of the mode switching point have relationships with the characteristics design of the planetary gear set. The analysis method is to provide a reference for hybrid vehicles’ design. As the involved rotational speed and torque relation-ships are the natural contact of every part of transmission system, a theory basis of system program and performance analysis was provided.

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