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首页> 外文期刊>International Journal of Advanced Computer Research >Electric vehicle power electronics cooling system pump control using fuzzy logic
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Electric vehicle power electronics cooling system pump control using fuzzy logic

机译:电动汽车电力电子冷却系统泵的模糊逻辑控制

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摘要

Electric vehicles rely exclusively on electrical energy not only for propulsion, but also to power all of the vehicle subsystems. It then becomes critical that each subsystem is controlled in the most energy efficient manner possible. Some of the most energy consuming elements of a vehicle are the electric pumps that circulate coolant through an electric vehicle’s coolant loop. Typically, these pumps are controlled through nothing more than simple temperature switch points, creating a sink for electrical energy. To improve the overall energy consumption, a fuzzy logic control (FLC) strategy for controlling an automotive coolant pump has been proposed. The power electronics coolant loop, which can be found in most hybrid/electric vehicles, have been examined as a temperature-based strategy which is formulated to control an industry standard pulse-width-modulated (PWM) fluid pump. Simulation of the proposed FLC has shown improvement of the overall efficiency of the coolant pump and has also reduced the overall energy consumption of the vehicle-thereby improving the electric propulsion range.
机译:电动汽车不仅依靠电能来推进,而且还为所有汽车子系统供电。因此,至关重要的是以尽可能最节能的方式控制每个子系统。车辆中一些最耗能的元件是使冷却液通过电动车辆的冷却液回路循环的电动泵。通常,这些泵仅通过简单的温度开关点进行控制,从而形成电能吸收器。为了改善总体能耗,已经提出了用于控制汽车冷却剂泵的模糊逻辑控制(FLC)策略。在大多数混合动力/电动汽车中都可以找到的电力电子冷却剂回路已作为基于温度的策略进行了检验,该策略被制定为控制行业标准的脉宽调制(PWM)流体泵。拟议的FLC的仿真表明,冷却液泵的整体效率有所提高,并且还降低了车辆的总体能耗,从而改善了电推进范围。

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