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Evaluation of some effective parameters on the energy efficiency of on-board photovoltaic array on an unmanned surface vehicle

机译:评估无人水面车辆上光伏阵列能量效率的一些有效参数

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摘要

Providing energy for an unmanned robot boat, which should work autonomously for hours on water, requires some special attentions. To increase generated energy, some excellent options are evaluated in on-board photovoltaic system of an unmanned robot boat. The research is initiated by simulating the energy generation system of the unmanned surface vehicle (USV), then study of some effective parameters on the efficiency of photovoltaic array on the USV. Temperature, sun tracking and glass transparence are three factors that are evaluated by simulation and experimental tests to obtain their effects on the PV efficiency. Temperature analysis illustrated that generated energy can increase to 12.9%, by controlling thermal effect. Furthermore, one-axial sun tracking system would increase the amount of energy up to 20% in some cases. Cleaning panels is another effective parameter that can raise daily average of harvested energy by 15.7%. Finally, it is concluded that total PV efficiency on the USV can improve up to 50% by accurate tracking and well maintenance.
机译:为无人驾驶的机器人船提供能量,该机器人应在水中自主工作数小时,需要特别注意。为了增加产生的能量,在无人机器人船的机载光伏系统中评估了一些出色的选择。该研究是通过模拟无人水面载具(USV)的能量产生系统开始的,然后研究一些有关USV光伏阵列效率的有效参数。温度,太阳追踪和玻璃透明度是通过仿真和实验测试评估的三个因素,以获得它们对PV效率的影响。温度分析表明,通过控制热效应,产生的能量可以增加到12.9%。此外,在某些情况下,单轴太阳跟踪系统会将能量增加最多20%。清洁面板是另一个有效参数,可使每日平均采集能量提高15.7%。最后,得出的结论是,通过精确的跟踪和井维护,USV上的总PV效率可提高高达50%。

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