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Modeling of a Chaotic Gyrostat System and Mechanism Analysis of Dynamics Using Force and Energy

机译:混沌Gyrostat系统的建模与使用力和能量动态的机制分析

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Incorporating both viscous friction torque and external torque, a mathematical model of a gyrostat system consisting of three rotors and a fixed outer frame is configured. This model is transformed into a Kolmogorov-type system for force analysis. The force field in the gyrostat system includes four different torques—inertial, internal, dissipative, and external. Correspondingly, four different energies are identified and the interconversion of energies is analyzed. The Casimir power being equivalent to the error power between the supplied power and the dissipative power is found and used to analyze the mechanism underlying the different dynamical behaviors. A four-wing chaotic attractor is found when the gyrostat is subject to a combination of inertial, internal, and dissipative torques as well as the addition of an external torque. The bifurcation of the Casimir power and leaps in Casimir energy level are used as indicators of the different definitive dynamics, which is demonstrated to be identical to that appearing in the state bifurcation and the Lyapunov exponent spectrum.
机译:包括粘性摩擦扭矩和外部扭矩,构造了由三个转子和固定外框架组成的Gyrostat系统的数学模型。该模型转换为Kolmogorov型系统,用于力分析。 Gyrostat系统中的力场包括四个不同的扭矩 - 惯性,内部,耗散和外部。相应地,识别出四种不同的能量,并分析能量的互连。 Casimir功率相当于所提供的电源和耗散功率之间的误差功率,并用于分析不同动态行为的基础。当Gyrostat受到惯性,内部和耗散扭矩的组合以及添加外部扭矩时,发现了四翼混沌吸引子。 Casimir功率和跳跃在Casimir能级中的分叉被用作不同的明确动态的指标,这被证明与出现在状态分叉和Lyapunov指数谱中的相同。

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