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带有滑行能量回收的怠速启停系统复合储能控制策略研究 被引量:2
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作者 刘少波 陈综合 陈庆樟 《微电机》 2017年第5期58-62,共5页
对滑行能量回收控制流程进行了分析,并在ADVISOR上进行二次开发,建立了带有滑行能量回收的复合储能系统仿真模型。提出了能量管理的模糊控制策略,并在城郊道路循环工况中进行仿真,仿真结果表明:该模糊控制策略能降低大电流对蓄电池的冲... 对滑行能量回收控制流程进行了分析,并在ADVISOR上进行二次开发,建立了带有滑行能量回收的复合储能系统仿真模型。提出了能量管理的模糊控制策略,并在城郊道路循环工况中进行仿真,仿真结果表明:该模糊控制策略能降低大电流对蓄电池的冲击、减少蓄电池放电次数、延长蓄电池使用寿命,提高了整车燃油经济性能。搭建试验台架利用惯性飞轮模拟汽车滑行能量回收电机发电,验证复合储能系统回收及利用效果。 展开更多
关键词 怠速启停系统 复合储能控制策略 滑行能量回收
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基于商用车气刹特性的混合动力制动能量回收
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作者 马明霞 王朝辉 +1 位作者 安宁 银铭强 《汽车电器》 2022年第7期15-17,共3页
传统商用车一般采用气刹,利用制动气罐气压产生制动力,使车辆达到需求制动效果。混合动力系统因为增加电机,可利用电机发电和传统机械制动共同作用使车辆达到想要的制动效果。本文基于商用车气刹静态特性、迟滞特性,给出基于试验数据和... 传统商用车一般采用气刹,利用制动气罐气压产生制动力,使车辆达到需求制动效果。混合动力系统因为增加电机,可利用电机发电和传统机械制动共同作用使车辆达到想要的制动效果。本文基于商用车气刹静态特性、迟滞特性,给出基于试验数据和驾驶员行为的制动踏板开度电压与制动踏板开度、滑行能量回收、制动能量回收的基本实现方法。 展开更多
关键词 混合动力系统 气刹 制动踏板开度 滑行能量回收 制动能量回收
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电动汽车单踏板驾驶模式控制原理分析
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作者 吴格 杜瑞 +3 位作者 李锦 周衡 党鑫 魏俊天 《汽车电器》 2024年第5期6-8,共3页
电动汽车单踏板驾驶模式通过加速踏板,可控制车辆加速、匀速行驶和减速停车过程,简化驾驶操作并在实际使用时可增大能量回收比例,给用户带来全新的驾驶体验。文章介绍单踏板驾驶功能的控制原理,并对单踏板驾驶模式下车辆常见工况的控制... 电动汽车单踏板驾驶模式通过加速踏板,可控制车辆加速、匀速行驶和减速停车过程,简化驾驶操作并在实际使用时可增大能量回收比例,给用户带来全新的驾驶体验。文章介绍单踏板驾驶功能的控制原理,并对单踏板驾驶模式下车辆常见工况的控制过程进行分析和总结。 展开更多
关键词 单踏板 纯电动汽车 滑行能量回收
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Monotricat, Innovative Displacement Hull High Hydrodynamic Efficiency and Energy Recovery, Navigating at Speeds of Planing Hulls on Spray Self-produced
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作者 Luigi MASCELLARO 《Journal of Shipping and Ocean Engineering》 2015年第5期229-241,共13页
The need to have naval units ever faster pushed the ship design to design hull shapes with increasingly higher performance thanks to the use of lightweight materials such as aluminum, and more powerful engines, etc., ... The need to have naval units ever faster pushed the ship design to design hull shapes with increasingly higher performance thanks to the use of lightweight materials such as aluminum, and more powerful engines, etc., but without substantially modifying the traditional forms of hull. The hull patented Monotricat high hydrodynamic efficiency and energy saving it represents an evolution of the traditional architectures of the hulls, as its shape is adapted to recover wave formation engendered from the bow and sprays associated with it so as to reduce the resistance to the benefit of the speed, and navigating in displacement at speeds of planing hulls with an efficiency of about 20%. The patented hull Monotricat represents the overcoming of distinction between displacement and planing hulls, because, unlike previous solutions, the hull conventionally called Monotricat is the first displacement hull that can navigate at both displacement and planning speeds, with a resistance curve almost straight, maintaining the characteristics of a displacement hull, since it combines the characteristics of displacement and planning hull. It presents an innovative architecture that could be defined as a hybrid between a monohull and catamaran, navigating on spray self-produced. The combination of these three types of naval hulls allows it to ensure: safety, comfort navigation, best seakeeping and maneuverability in restricted waters, stability, reduction of resistance to motion, cost management, regularity on the routes even in adverse weather-sea. These characteristics of the hull have been studied, tested and validated by leading research institutes and universities with more ameliorative results in each subsequent experimentation, reported in the present work, which demonstrated a greater hydrodynamic efficiency compared to conventional hulls of 20%. 展开更多
关键词 Innovative naval hull energy recovery hydrodynamic efficiency displacement hull planing hull spray self-produced resistance curve straight line.
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