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      • Theoretical Research on the Time Delay and Corresponding Issues for the Novel Category of Internet of Things Control System

        Yucheng Zhang,Guoyong Liu,Luming Tan 보안공학연구지원센터 2016 International Journal of Future Generation Communi Vol.9 No.10

        In this paper, we theoretically and numerically analyze the time delay and corresponding issues for the novel category of Internet of things control system. At present, the Internet of things technology progress and mature, people also gradually combine control system and Internet connection and make them to give full play to their strengths. Internet of things has great innovation in goods intelligent network, and the general Internet of things in the motion control system has a great development space, the future of control system is applied to the large number of the wireless fieldbus and sensor networks. To overcome the severe issues of the IOT system denoted as the time delay, we conduct research from following perspectives. (1) The control system modelling and analysis. Compared in the actual control system in an event-driven clock driver has many advantages such as when the controller equipment or setting of event-driven actuators equipment. (2) The time delay analysis with mathematical modelling. Due to the signal delay, controller cannot receive timely feedback information of the object which will seriously affect the dynamic performance of the remote control system. Complex math model is proposed to deal with the issues. In the final part, we numerically simulation the proposed model and theory compared with other famous methods, the result indicates that the proposed method obtain better performance and feasibility.

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        Synthesis and Properties of Cellulose-based Superabsorbent Hydrogel by a New Crosslinker

        Heng-Xiang Li,Xin Tian,Luming Zhang,Leili Wang,Li’e Jin,Qing Cao 한국섬유공학회 2020 Fibers and polymers Vol.21 No.7

        Cellulose-based superabsorbent hydrogel (SAH) has been successfully prepared by the grafting method withcellulose and sodium acrylate as well as aluminum hydroxide as a novel crosslinker. The factors influencing water absorptionsuch as the neutralization degree of acrylic acid (AA), the amount of initiator ammonium persulfate (APS) and crosslinker,and the proportion of cellulose to AA were investigated. The chemical structure and thermal behavior of the SAH wereanalyzed by fourier-transform infrared spectrometry, field-emission scanning electron microscopy, and thermal gravimetry,respectively. Results showed that the water absorbency of the SAH in distilled water and 0.9 wt% NaCl solution reached 922and 118 g/g when the mass ratio of cellulose to AA, APS to AA, Al(OH)3 to AA, and the neutralization degree of AA was39 wt%, 0.67 wt%, 0.89 %, and 76 %, respectively. Under the same condition, the hydrogel synthesized by traditionalcrosslinker N,N-methylenebisacrylamide was only 530 and 84 g/g in distilled water and 0.9 wt% NaCl solution, respectively. The mechanism of polymerization reaction was analyzed. And the cost and feasibility for the mass-producing the hydrogelwere analyzed.

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