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首页> 外文期刊>IEEE Transactions on Aerospace and Electronic Systems >Spacecraft Hovering Flight in a Binary Asteroid System by Using Fuzzy Logic Control
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Spacecraft Hovering Flight in a Binary Asteroid System by Using Fuzzy Logic Control

机译:通过采用模糊逻辑控制,宇宙飞船在二元小行星系统中徘徊飞行

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摘要

Fuzzy logic controllers are designed for spacecraft hovering flight in a binary asteroid system. The binary asteroid system is modeled as an ellipsoid-sphere system where the spherical harmonics method is adopted to represent the gravitational field of the asteroids. The method to design the fuzzy logic controllers is introduced in detail. Hovering flight about the inner collinear equilibrium point L-1 of binary asteroid Didymos is numerically presented. Detailed steps on roughly estimating the scaling gains of fuzzy logic controllers are also summarized. Numerical simulations are performed to show the effectiveness of the proposed method. Moreover, the aforementioned fuzzy logic controllers can be used for both continuous and impulsive thrusters. The fuzzy controllers with continuous thrust, the fuzzy controllers with fixed thrust, and the other two kinds of sliding-mode controllers are optimized in the same way and compared in the same simulation environment together, to show tremendous advantages of fuzzy logic controllers and continuous thrusters on both control performance and propellant consumption.
机译:模糊逻辑控制器是为斯通规悬停飞行的飞船悬停在二元小行星系统中而设计。二进制小行星系统被建模为椭圆形 - 球体系统,其中采用球形谐波方法来表示小行星的引力场。详细介绍了设计模糊逻辑控制器的方法。悬停围绕内部共线性平衡点L-1的飞行数在数值上呈现。还概述了大致估计模糊逻辑控制器的缩放收益的详细步骤。执行数值模拟以显示所提出的方法的有效性。此外,上述模糊逻辑控制器可用于连续和脉冲推进器。具有连续推力的模糊控制器,具有固定推力的模糊控制器,以及另外两种滑模控制器的优化方式在相同的仿真环境中,以显示模糊逻辑控制器和连续推进器的巨大优势关于控制性能和推进剂消费。

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