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Mission Profile Based Optimization of a Wearable Power System

机译:基于任务描述的可穿戴电源系统优化

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A Wearable Power System (WPS) is a portable power source utilized primarily to power the modern soldier's electronic equipment. Such a system has to satisfy output power demands in the range of 20 W...200 W, specified as a 4-day mission profile and has a weight limit of 4 kg. To meet these demands, an optimization of a WPS, comprising an internal combustion (IC) engine, permanent magnetic three-phase electrical motor/generator, inverter, Li-batteries, DC-DC converters, and controller, is performed in this paper. The mechanical energy extracted from the fuel by IC engine is transferred to the generator that is used to recharge the battery and provide the power to the electrical output load. The main objectives are to select the engine, fuel and battery type, to match the weight of fuel and the number of battery cells, to find the optimal working point of engine and to minimize the system weight. To provide the second output voltage level of 14 V_(DC), a separate DC-DC converter is connected between the battery and the load, and optimized for the specified mission profile. A prototype of the WPS based on the optimization presented in the paper results in a total system weight of 3.9 kg and fulfils the mission profile.
机译:可穿戴电源系统(WPS)是一种便携式电源,主要用于为现代士兵的电子设备供电。这样的系统必须满足20 W ... 200 W的输出功率要求,指定为4天任务配置,重量限制为4 kg。为了满足这些需求,本文对WPS进行了优化,包括内燃机(IC),永磁三相电动机/发电机,逆变器,锂电池,DC-DC转换器和控制器。 IC发动机从燃料中提取的机械能被传递到发电机,该发电机用于为电池充电并为输出电力提供功率。主要目标是选择发动机,燃料和电池类型,以匹配燃料的重量和电池单元的数量,找到发动机的最佳工作点,并使系统重量最小化。为了提供14 V_(DC)的第二输出电压电平,在电池和负载之间连接了一个单独的DC-DC转换器,并针对指定的任务配置进行了优化。 WPS的原型基于本文提出的优化技术,其总系统重量为3.9 kg,可满足任务要求。

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