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非線性裂紋轉(zhuǎn)子密封混沌系統(tǒng)自適應(yīng)控
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Control of Nonlinear Cracked Rotor Seal Chaotic System
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    摘要:

    應(yīng)用Muszynska非線性密封力模型,建立了在氣流激振力作用下的裂紋轉(zhuǎn)子系統(tǒng)耦合動力學(xué)方程。根據(jù)自適應(yīng)控制理論,給出一種多重參數(shù)自適應(yīng)控制算法。利用此方法對裂紋轉(zhuǎn)子密封系統(tǒng)進行了研究,研究結(jié)果表明,所提出的參數(shù)自適應(yīng)控制律具有較強的穩(wěn)定控制能力,該方法適合于多重參數(shù)非自治復(fù)雜混沌系統(tǒng),在外界干擾下引起混沌狀態(tài)的情況,可自適應(yīng)地調(diào)整到正常的工作狀態(tài)。

    Abstract:

    With the increase of structural parameters of a rotary machine, the sealing induced airflow excitation on the rotor increases significantly. By taking Muszynska’s model for sealing force, the nonlinear dynamic equation of a rotor with cracked foundation was derived. According to adaptive control theory, a multi-parametric adaptive algorithm was presented. Numerical simulations on the rotor system were performed with this method. The results show that the parametric adaptive control method possesses strong capability of stability in control. The methodology is appropriate to the complexity of multiple parameters of non-self-governing chaotic system, when the system goes into chaos by outside disturb, and the working state can be adjusted to normal timely. The research results also provide the theoretical foundation for theory design of rotary machine and fault dynamic monitoring, and have high practical value. 

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殷玉楓,姚德臣,李捷.非線性裂紋轉(zhuǎn)子密封混沌系統(tǒng)自適應(yīng)控[J].農(nóng)業(yè)機械學(xué)報,2009,40(7):203-207. Control of Nonlinear Cracked Rotor Seal Chaotic System[J]. Transactions of the Chinese Society for Agricultural Machinery,2009,40(7):203-207.

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