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Ð’ ходе магиÑтерÑкой работы предложена ÑлектромеханичеÑÐºÐ°Ñ Ñ‚Ñ€Ð°Ð½ÑмиÑÑиÑ, Ñ€ÐµÐ°Ð»Ð¸Ð·ÑƒÑŽÑ‰Ð°Ñ Ð¿Ñ€Ð¸Ð½Ñ†Ð¸Ð¿ параллельного гибрида. Показано, что внедрение гибридной Ñиловой уÑтановки (ГСУ) на оÑнове двухпоточных Ñхем ÑвлÑетÑÑ Ð¿ÐµÑ€Ñпективным. Показано, что иÑпользование такой транÑмиÑÑии целеÑообразно Ð´Ð»Ñ Ð¿Ð¾Ð²Ñ‹ÑˆÐµÐ½Ð¸Ñ Ð½Ð°Ð´ÐµÐ¶Ð½Ð¾Ñти шаÑÑи и ÑоздаÑÑ‚ дополнительные преимущеÑтва по качеÑтву ÑƒÐ¿Ñ€Ð°Ð²Ð»ÐµÐ½Ð¸Ñ Ð¿Ð¾Ð²Ð¾Ñ€Ð¾Ñ‚Ð¾Ð¼ гуÑеничных машин и индивидуального ÑƒÐ¿Ñ€Ð°Ð²Ð»ÐµÐ½Ð¸Ñ Ñилой Ñ‚Ñги Ð´Ð»Ñ ÐºÐ¾Ð»ÐµÑных платформ. Показано, что предложенный принцип раÑпроÑтраним на гуÑеничные и колеÑные шаÑÑи практичеÑки любого Ð½Ð°Ð·Ð½Ð°Ñ‡ÐµÐ½Ð¸Ñ Ð¸ маÑÑÑ‹.
In the course of the master's work, an electromechanical transmission implementing the principle of a parallel hybrid was proposed. It is shown that the introduction of a hybrid power plant (HSU) based on two-stream circuits is promising. It is shown that the use of such a transmission is advisable to increase the reliability of the chassis and will create additional advantages in terms of the quality of turn control of tracked vehicles and individual traction control for wheeled platforms. It is shown that the proposed principle is applicable to tracked and wheeled chassis of almost any purpose and weight.
turn control, energy storage, ÐÑÑениÑнÑе маÑинÑ, ТÑанÑмиÑÑии, ÐлекÑÑодвигаÑели ÑÑговÑе, ÑпÑавление повоÑоÑом, накопиÑели ÑнеÑгии
turn control, energy storage, ÐÑÑениÑнÑе маÑинÑ, ТÑанÑмиÑÑии, ÐлекÑÑодвигаÑели ÑÑговÑе, ÑпÑавление повоÑоÑом, накопиÑели ÑнеÑгии
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