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高效能数字风机系统概述 被引量:1
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作者 刘常亮 刘旭东 陈吉林 《风机技术》 2020年第S01期29-33,共5页
安装数字风机系统使风机运行更加智能化和高效化。文章重点介绍了数字风机系统的工作原理及各项优势。
关键词 数字风机 风机系统 高效能 高可靠性 节能降耗 大数据
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Adaptive Fuzzy Backstepping Output Feedback Control of Nonlinear Time-delay Systems with Unknown High-frequency Gain Sign 被引量:1
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作者 chang-liang liu Shao-Cheng Tong +1 位作者 Yong-Ming Li Yuan-Qing Xia 《International Journal of Automation and computing》 EI 2011年第1期14-22,共9页
In this paper, an adaptive fuzzy robust feedback control approach is proposed for a class of single-input and singleoutput (SISO) strict-feedback nonlinear systems with unknown nonlinear functions, time delays, unkn... In this paper, an adaptive fuzzy robust feedback control approach is proposed for a class of single-input and singleoutput (SISO) strict-feedback nonlinear systems with unknown nonlinear functions, time delays, unknown high-frequency gain sign, and without the measurements of the states. In the backstepping recursive design, fuzzy logic systems are employed to approximate the unknown smooth nonlinear functions, K-filters is designed to estimate the unmeasured states, and Nussbaum gain functions are introduced to solve the problem of unknown sign of high-frequency gain. By combining adaptive fuzzy control theory and adaptive backstepping design, a stable adaptive fuzzy output feedback control scheme is developed. It has been proven that the proposed adaptive fuzzy robust control approach can guarantee that all the signals of the closed-loop system are uniformly ultimately bounded and the tracking error can converge to a small neighborhood of the origin by appropriately choosing design parameters. Simulation results have shown the effectiveness of the proposed method. 展开更多
关键词 Nonlinear systems adaptive fuzzy control time-delay high-frequency gain sign BACKSTEPPING K-filters stability.
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