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Station-keeping control design of double balloon system based on horizontal region constraints

机译:基于水平区域约束的双气囊系统站控控制设计

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Stratospheric balloons can be used as a cost-effective platform for commercial and military applications. One of the technical challenges of balloon system is the station-keeping ability in the wind field. In order to realize station-keeping, a double-balloon system was provided in this paper. By adjusting the connecting rope length between main balloon with assistant balloon, double-balloon system uses different altitude wind layers to full advantages. A theoretical model which consists of atmospheric model, thermal model and dynamic model was proposed. A program was developed to simulate the performance of double-balloon system in real wind field. The effects of wind force acting on balloons, the assistant balloon motion properties and the double-balloon system station-keeping performance were investigated in detail. The results showed that the change of double-balloon system horizontal velocity direction over a short period of time is attributed to the forces pulse, the horizontal force acting on double-balloon system changes with the variation of the connecting rope length, which provides a possibility to retain the double-balloon system within a specific region. The double-balloon system provided in our study adjusts balloon system horizontal movement continuously and save more weight for effective payload, which has valuable reference in design of stratospheric balloons for station-keeping for a long time. (C) 2020 Elsevier Masson SAS. All rights reserved.
机译:平流层气球可以用作商业和军事应用的低成本平台。气球系统的技术挑战之一是在风场中的驻站能力。为了实现站位维护,本文提出了一种双气球系统。通过调节主气囊与辅助气囊之间的连接绳长度,双气囊系统利用了不同高度的风层,从而充分发挥了优势。提出了由大气模型,热模型和动力学模型组成的理论模型。开发了一个程序来模拟双气球系统在实际风场中的性能。详细研究了风力对气球的影响,辅助气球的运动特性和双气球系统的驻站性能。结果表明,双气囊系统水平速度方向在短时间内的变化是由于力脉冲引起的,作用在双气囊系统上的水平力随连接绳长度的变化而变化,这提供了可能在特定区域内保留双气囊系统。我们的研究中提供的双气囊系统可连续调节气囊系统的水平运动并节省更多的重量,以提供有效载荷,这对于平流层气囊的长期保持设计具有参考价值。 (C)2020年Elsevier Masson SAS。版权所有。

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