Development of fuel cell system for long cruising lange Autonomous Underwater Vehicle

T. Hyakudome, T. Nakatani, H. Yoshida, Toshihiro Tani, Hideki Ito, Koki Sugihara
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引用次数: 8

Abstract

The use of Autonomous Underwater Vehicles (AUVs) is now widespread among the underwater observation and survey. Because AUVs are not restricted by an umbilical cable, we think that AUVs have the most suitable form to collect ocean data or work depending on subjects of survey efficiently in the same way as the sea lives with various forms. For example, form to collect ocean data while cruising in a huge range, form to collect the topography data of the seafloor and under the bottom of the sea while cruising with following seafloor, form to work such as the collection of the rock of the seafloor or the setting of the sensor on the seafloor, form to collect ocean data slowly and carefully without moving the investigation spot against the current and so on. Underwater power source is one of very important elements to operate electrically driven underwater vehicles. Because there are no energy supply places in underwater. Many research and development about the underwater power source are carried out in all over the world. When the research and development of the power source, following things need to be considered: small and light weight, put in a pressure vessel or resist against water pressure, work against low water temperature, without vibration and noise, reliability and ease of maintenance. The power source has heaviest weight with the components of the underwater vehicles. The paper reported that concepts of the body design and model experimental results show specification of fuel cell system and several experimental results.
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长巡航距离自主水下航行器燃料电池系统的研制
自主水下航行器(auv)在水下观测和测量中得到了广泛的应用。由于auv不受脐带电缆的限制,我们认为auv具有最适合收集海洋数据或根据调查对象高效工作的形式,就像各种形式的海洋生物一样。例如,在大范围巡航时收集海洋数据的形式,在跟随海底巡航时收集海底和海底下的地形数据的形式,收集海底岩石或在海底设置传感器等工作的形式,缓慢而仔细地收集海洋数据的形式,而不移动调查点逆流等等。水下动力源是驱动电动水下航行器的重要组成部分之一。因为水下没有能源供应的地方。世界各国对水下动力源进行了大量的研究和开发。在研制动力源时,需要考虑以下几点:体积小、重量轻、装入压力容器或抗水压、抗低水温工作、无振动和噪音、可靠性和维修方便。在水下航行器的部件中,电源的重量最大。本文介绍了车身设计的概念和模型实验结果,展示了燃料电池系统的规格和几个实验结果。
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