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Design and Characterization of an Actively Controlled Hybrid Energy Storage Module for High-Rate Directed Energy Applications

机译:用于高速率定向能量应用的主动控制混合储能模块的设计与表征

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摘要

There is considerable need for a mobile, reliable, efficient, and compact prime power supply for a host of applications, including directed energy and electrical grid backup among others. Electrochemical energy storage devices, which possess either high-power density or high-energy density, have been developed recently and are very applicable for use in these applications. The need for both high energy and high power, however, makes the design and implementation of such a prime power supply a nontrivial task. While lithium-ion batteries (LIBs) are available, which possess both high power and energy density, operation at high power reduces their cycle life, decreasing the reliability and increasing the cost of the system when replacement becomes necessary more frequently. One proposed method involves optimally combining high-energy batteries with high-power electric double layer capacitors (EDLCs) using actively controlled power electronics to regulate the current to and from each respective device. In such a scheme, energy can be slowly sourced to and from the batteries, while the capacitors are used to supply or accept the bulk of the current when the demand is high, especially during fast transients. This type of scheme should not only maximize the batteries’ cycle life and ensure that both the energy and power required of the load(s) is always available, but will also increase the instantaneous power capabilities of the system, offering a well-rounded solution to sourcing steady and/or transient loads. When augmenting a fossil fuel generator with a hybrid energy storage module (HESM), the HESM has the ability to act as a high-energy reservoir that can harvest energy from the generator when the loads are in short periods of inactivity. This enables the generator to be continuously base loaded, thereby maintaining a high level of efficiency at all times, while theoretically maintaining the required power quality of the main ac bus. At the University of Tex- s at Arlington (UTA), an actively controlled, high-rate HESM has been constructed to evaluate its performance under the typical load condition presented by directed energy weapons. It has been assembled using LIBs, EDLCs, and commercial off-the-shelf power electronic converters. A discussion about the future of HESMs, the experimental setup at UTA, and the results obtained thus far will be presented here.
机译:非常需要用于许多应用的移动,可靠,高效和紧凑的主要电源,包括定向能源和电网备用。具有高功率密度或高能量密度的电化学能量存储设备最近已经开发,并且非常适用于这些应用。然而,对高能量和高功率的需求使得这种主要电源的设计和实施成为不平凡的任务。尽管可以使用既具有高功率又具有能量密度的锂离子电池(LIB),但在需要更频繁地更换时,以高功率运行会缩短其循环寿命,降低可靠性并增加系统成本。一种提出的方​​法涉及使用主动控制的功率电子器件来调节流入和流出各个设备的电流,从而将高能电池与高功率双电层电容器(EDLC)进行最佳组合。在这种方案中,能量可以缓慢地从电池中获取或从电池中获取,而当需求高时,尤其是在快速瞬变期间,电容器可以用来提供或接受大部分电流。这种类型的方案不仅应最大程度地延长电池的循环寿命,并确保负载所需的能量和功率始终可用,而且还应增加系统的瞬时功率能力,从而提供完善的解决方案采购稳定和/或瞬态负载。当使用混合储能模块(HESM)增添化石燃料发电机时,HESM可以充当高能蓄能器,当负载处于不活动状态时,可以从发电机中收集能量。这使发电机能够连续地承受基本负载,从而始终保持高效率,同时在理论上保持主交流母线所需的电能质量。德克萨斯大学阿灵顿分校(UTA)建造了一种主动控制的高速率HESM,以评估其在定向能武器所呈现的典型载荷条件下的性能。它是使用LIB,EDLC和商用现成的功率电子转换器组装而成的。这里将介绍有关HESM的未来,UTA的实验装置以及迄今为止获得的结果的讨论。

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