首页> 外文期刊>Mathematical Problems in Engineering: Theory, Methods and Applications >Multitechnique Concise Robust Control for the Insulation Containment Space Pressure Control of LNG Carrier
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Multitechnique Concise Robust Control for the Insulation Containment Space Pressure Control of LNG Carrier

机译:LNG载体绝缘容纳空间压力控制的多书简洁的鲁棒控制

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In this note, a novel multitechnique concise robust control scheme, based on the mirror mapping technique (MMT), closed-loop gain shaping algorithm (CGSA), Smith predictor (SP), and nonlinear feedback technique (NFT), is proposed for the pressure control of the liquefied natural gas (LNG) carrier insulation containment space. Firstly, a kind of integral unstable time-delay model is obtained by linearizing the nonlinear model of the pressure maintenance system around its equilibrium. By using the MMT and CGSA, one acquires the corresponding stable mirror mapping model of the unstable linear model and the designed controller. And the SP is introduced to tackle the time-delay problem. In addition, for the purpose of energy saving, the NFT is added into the control scheme. Finally, a set of experiments has been employed to illustrate the control effects, and the results show that it can achieve satisfying performance in aspects of disturbance rejection and energy saving.
机译:在本说明中,提出了一种基于镜像映射技术(MMT),闭环增益整形算法(CGSA),史密斯预测器(SP)和非线性反馈技术(NFT)的新型多书简洁鲁棒控制方案。液化天然气(LNG)载体绝缘容纳空间的压力控制。首先,通过线性化压力维护系统的均衡系统的非线性模型来获得一种整体不稳定的时滞模型。通过使用MMT和CGSA,可以获取不稳定的线性模型和设计控制器的相应稳定镜像映射模型。引入SP以解决时间延误问题。另外,为了节能,将NFT添加到控制方案中。最后,已经采用了一组实验来说明对照效果,结果表明它可以在干扰抑制和节能方面实现满意的性能。

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