Coordinated Control of Pressure Difference and Rising Velocity for Stratospheric Airship with Thermal Effects

Author:

Hong Luhe1,Jin Hui-Yu1,Lin Xianwu1,Lan Weiyao1

Affiliation:

1. Department of Automation, Xiamen University, Xiamen 361005, China

Abstract

Ascending control of stratospheric airship is a challenging control problem, especially if both the rising velocity and the pressure difference between the inside and outside of the airship are required to be controlled simultaneously during ascending. In this paper, a coordinated scheme to control pressure difference and rising velocity of stratospheric airship with vector thrust is presented. With the control scheme, the airship maintains the pressure difference by exhausting air with feedback control. At the same time, the supplemental thrust is generated to compensate the buoyancy fluctuation caused by exhausting air so that the airship’s vertical velocity can track a given reference trajectory. Simulations show that the coordinated control scheme ensures that the airship rises to the altitude of 20 km steadily and rapidly while the pressure difference is always in the safe range. Furthermore, the control scheme is robust enough to the thermal disturbance caused by solar radiation and other thermal processes, which is calculated with partial differential equations.

Funder

National Natural Science Foundation of China

Publisher

Hindawi Limited

Subject

General Engineering,General Mathematics

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2. Multilayer nanoparticle-polymer metamaterial for radiative cooling of the stratospheric airship;Advances in Space Research;2023-07

3. Design and Energy Systems of Stratospheric Airships;2021 IEEE 8th International Workshop on Metrology for AeroSpace (MetroAeroSpace);2021-06-23

4. Output performance analyses of solar array on stratospheric airship with thermal effect;Applied Thermal Engineering;2016-07

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