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首页> 外文期刊>Universal Journal of Electrical and Electronic Engineering >Coordinated Power Management for Variable Speed Diesel Generator and Lithium-ion Battery Hybrid System
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Coordinated Power Management for Variable Speed Diesel Generator and Lithium-ion Battery Hybrid System

机译:变速柴油发电机与锂离子电池混合动力系统的协调电源管理

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This paper presents coordinated operation of power management strategies for a hybrid system. This hybrid system is modeled based on dynamic variation of load power and its effective distribution strategy. The proposed hybrid system consists of variable speed diesel generator (VSDG) and lithium-ion battery which is able to supply electric power for Power, Water and Communication (PWC) economically and efficiently in rural areas. The variation of power demand in PWC load is highlighted in load profile. The total PWC load is effectively shared by two VSDGs and one Lithium-Ion battery bank. The use of advanced VSDG helps hybrid system to reduce fuel consumption as its speed varies with load demand. The proposed segmentation of high frequency and low frequency components of load currents and their assignation to suitable source helps to reduce the transients during load variations. Also, one of the generators will be switched off when the total power demand goes below specified level and hence significant fuel savings can be achieved. The execution of proposed system is assessed through MATLAB/Simulink model and its validation by experimental test bench.
机译:本文提出了混合系统电源管理策略的协调操作。基于负载功率的动态变化及其有效分配策略对混合系统进行建模。拟议的混合动力系统由变速柴油发电机(VSDG)和锂离子电池组成,该电池能够经济有效地为农村地区的电力,水和通信(PWC)提供电力。负载配置文件中突出显示了PWC负载中的电力需求变化。 PWC的总负载由两个VSDG和一个锂离子电池组有效地共享。先进的VSDG的使用有助于混合动力系统降低燃油消耗,因为其速度随负载需求而变化。负载电流的高频和低频分量的拟议分段以及将其分配给合适的电源有助于减少负载变化期间的瞬变。同样,当总功率需求低于指定水平时,其中一台发电机将关闭,因此可以节省大量燃料。拟议系统的执行通过MATLAB / Simulink模型进行评估,并通过实验测试台进行验证。

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