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大型多板造波系统的多控制器同步技术研究 被引量:2
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作者 李木国 刘壮 杜海 《计算机测量与控制》 2020年第4期95-99,共5页
针对海洋工程实验室中大型多板造波系统的控制同步问题,基于多PLC控制结构提出了一种新型的同步补偿方法;首先利用EtherCAT网络的实时通信特点,通过网络分布时钟精确计算控制器间的延迟;其次使用主动补偿方式处理多时钟系统间的同步问题... 针对海洋工程实验室中大型多板造波系统的控制同步问题,基于多PLC控制结构提出了一种新型的同步补偿方法;首先利用EtherCAT网络的实时通信特点,通过网络分布时钟精确计算控制器间的延迟;其次使用主动补偿方式处理多时钟系统间的同步问题;该方法将造波系统的控制结构特点与EtherCAT控制网络技术优势机密地结合在一起,在提高整个系统同步性能的同时也增加了系统的灵活性,并满足了大型人工模型造波的运动控制要求;最后设计控制器实验对所提方法进行验证,实验结果表明所提的多控制器同步方法可以有效地补偿延迟,系统的同步误差小于10μs,完全符合造波系统的技术要求。 展开更多
关键词 造波系统 多控制器同步 EtherCAT网络 延迟补偿
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Synchronization of two different chaotic systems using Legendre polynomials with applications in secure communications 被引量:1
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作者 Saeed KHORASHADIZADEH Mohammad-Hassan MAJIDI +2 位作者 Faculty of Electrical and Computer Engineering University of Birjand 《Frontiers of Information Technology & Electronic Engineering》 SCIE EI CSCD 2018年第9期1180-1190,共11页
In this study, a new controller for chaos synchronization is proposed. It consists of a state feedback controller and a robust control term using Legendre polynomials to compensate for uncertainties. The truncation er... In this study, a new controller for chaos synchronization is proposed. It consists of a state feedback controller and a robust control term using Legendre polynomials to compensate for uncertainties. The truncation error is also considered. Due to the orthogonal functions theorem, Legendre polynomials can approximate nonlinear functions with arbitrarily small approximation errors. As a result, they can replace fuzzy systems and neural networks to estimate and compensate for uncertainties in control systems. Legendre polynomials have fewer tuning parameters than fuzzy systems and neural networks. Thus, their tuning process is simpler. Similar to the parameters of fuzzy systems, Legendre coefficients are estimated online using the adaptation rule obtained from the stability analysis. It is assumed that the master and slave systems are the Lorenz and Chen chaotic systems, respectively. In secure communication systems, observer-based synchronization is required since only one state variable of the master system is sent through the channel. The use of observer-based synchronization to obtain other state variables is discussed. Simulation results reveal the effectiveness of the proposed approach. A comparison with a fuzzy sliding mode controller shows that the proposed controller provides a superior transient response. The problem of secure communications is explained and the controller performance in secure communications is examined. 展开更多
关键词 Observer-based synchronization Chaotic systems Legendre polynomials Secure communications
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