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特种构件卷绕机计算机控制系统 被引量:2
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作者 杨公源 陈云军 杨玉光 《仪器仪表学报》 EI CAS CSCD 北大核心 2004年第z1期839-841,共3页
本文介绍特种构件(即非圆截面构件)卷绕机计算机控制系统。控制的难度比圆形截面卷绕要大得多,为此,采用了系统辨识、自动增益控制、动态补偿和自适应控制技术,设计了层内调节、逐层调节及顶点调节的特殊卷绕速度控制算法和退绕张力控... 本文介绍特种构件(即非圆截面构件)卷绕机计算机控制系统。控制的难度比圆形截面卷绕要大得多,为此,采用了系统辨识、自动增益控制、动态补偿和自适应控制技术,设计了层内调节、逐层调节及顶点调节的特殊卷绕速度控制算法和退绕张力控制算法。本系统在现场已运行二年多,企业取得了明显的经济效益和社会效益。 展开更多
关键词 特种构件 系统辨识 自动增益控制 动态补偿 自适应控制
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特种构件缠绕机控制系统
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作者 刘海涛 蒋秀明 《仪器仪表用户》 2008年第4期54-55,共2页
本文介绍特种构件(即非圆截面构件)缠绕机计算机控制系统。控制的难度比圆形截面缠绕要大得多,为此,采用了系统辨识、自动增益控制、动态补偿和自适应控制技术,设计了层内调节、逐层调节及顶点调节的特殊缠绕速度控制算法和退绕张力控... 本文介绍特种构件(即非圆截面构件)缠绕机计算机控制系统。控制的难度比圆形截面缠绕要大得多,为此,采用了系统辨识、自动增益控制、动态补偿和自适应控制技术,设计了层内调节、逐层调节及顶点调节的特殊缠绕速度控制算法和退绕张力控制算法。 展开更多
关键词 特种构件 系统辨识 自动增益控制 动态补偿 自适应控制
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Allometric equations of select tree species of the Tibetan Plateau, China 被引量:2
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作者 RAN Fei CHANG Rui-ying +3 位作者 YANG Yang ZHU Wan-ze LUO Ji WANG Gen-xu 《Journal of Mountain Science》 SCIE CSCD 2017年第9期1889-1902,共14页
The Tibetan forest is one of the most important national forest zones in China. Despite the potentially important role that Tibetan forest will play in the Earth?s future carbon balance and climate regulation, few all... The Tibetan forest is one of the most important national forest zones in China. Despite the potentially important role that Tibetan forest will play in the Earth?s future carbon balance and climate regulation, few allometric equations exist for accurately estimating biomass and carbon budgets of this forest. In the present study, allometric equations,both species-specific and generic, were developed relating component biomass(DW) to diameter at breast height(DBH) and tree height(H) for six most common tree species in Tibetan forest. The 6 species were Abies georgei Orr., Picea spinulosa(Griff.)Henry, Pinus densata Mast., Pinus yunnanensis Franch., Cypresses funebris Endl. and Quercus semecarpifilia Smith.. The results showed that, both DBH-only and DBH2 H based species-specific equations showed a significant fit(P<0.05) for all tree species and biomass components. The DBH-only equations explained more than 80% variability of the component biomass and total biomass, adding H as a second independent variable increased the goodness of fit, while incorporating H into the term DBH2 H decreased the goodness of fit. However, not all DBH-H combined equations showed a significant fit(P<0.05) for all tree species and biomass components. Hence, the suggested species-specific allometric equations for the six most common tree species are of the form ln(DW) = c + αln(DBH). The generalized equations of mixed coniferous component biomass against DBH, DBH2 H and DBH-H also showed a significant fit(P<0.05) for all biomass components. However, due to significant species effect, the relative errors of the estimates were very high. Hence, generalized equations should only be used when there are too many different tree species, or there is no species-specific model of the same species or similar growth form in adjacent area. 展开更多
关键词 Tibetan forest Allometric models Species-specific Mixed coniferous forest Model evaluation
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