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Smart energy management of HESS-based electric propulsion systems for urban mobility

机译:基于HESS的电动推进系统的智能能源管理,以实现城市机动性

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This paper presents a smart energy management of a Hybrid Energy Storage System (HESS) that supplies a highly integrated electric propulsion system. The HESS consists of Batteries (BT) and Supercapacitors (SC), which are integrated to each other through the traction inverter, namely a Three-level Neutral-Point Clamped Converter (NPC). The proposed management strategy consists of exploiting SC over the low-speed operating range, thus coping with vehicle acceleration and deceleration needs for urban mobility mostly. Consequently, BT is preserved successfully from excessive cycling, it being also supported over the mid speed range. Both these goals are achieved by suitable SC sizing, which accounts for both energy and voltage constraints. The proposed energy management is validated through a simulation study, which refers to vehicle acceleration and stop.
机译:本文提出了一种混合动力储能系统(HESS)的智能能源管理,该系统可提供高度集成的电力推进系统。 HESS由电池(BT)和超级电容器(SC)组成,它们通过牵引逆变器(即三级中性点钳位转换器(NPC))相互集成在一起。拟议的管理策略包括在低速运行范围内开发SC,从而满足大多数城市机动性车辆的加速和减速需求。因此,BT可以成功避免过度循环,并且在中速范围内也得到了支持。这两个目标均通过适当的SC尺寸实现,该尺寸考虑了能量和电压约束。拟议的能源管理通过仿真研究得到验证,仿真研究涉及车辆的加速和停止。

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