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非平衡宽覆盖像面扫描系统的神经网络控制 被引量:1
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作者 徐正平 李友一 葛文奇 《光学精密工程》 EI CAS CSCD 北大核心 2010年第12期2680-2687,共8页
为扩大遥感仪器像面覆盖宽度,从现有的CCD拼接方法入手,提出了凸轮驱动的动态扫描拼接方法。将电机与凸轮同轴安装,两者做等速旋转运动,带动4片线阵TDI CCD在像面上做往复直线运动,相邻线阵CCD在扫描方向上的成像区域保持一定重叠率,从... 为扩大遥感仪器像面覆盖宽度,从现有的CCD拼接方法入手,提出了凸轮驱动的动态扫描拼接方法。将电机与凸轮同轴安装,两者做等速旋转运动,带动4片线阵TDI CCD在像面上做往复直线运动,相邻线阵CCD在扫描方向上的成像区域保持一定重叠率,从而实现了动态扫描拼接。分析了由凸轮结构的特殊性造成的系统负载力矩的非平衡特性进行了分析,针对采用常规稳速方法时,凸轮转速在负载变化阶段产生较强波动的情况,提出了常规稳速控制和神经网络相结合的自适应控制方法,并进行了实验分析。分析表明:作用于凸轮轴上的负载力矩与相机位角、凸轮转速成正比。与常规稳速方法相比,应用神经网络自适应控制方法后,系统稳速精度提高了41%,非平衡负载引起的速度波动降低了20%,满足工程需要。 展开更多
关键词 像面扫描系统 非平衡负载 宽覆盖 神经网络控制
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A STUDY ON NONEQUILIBRIUM TRANSPORT OF NONUNIFORM BEDLOAD IN STEADY FLOW 被引量:5
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作者 Lu Yong-jun Zhang Hua-qing, Tianjin Research Institute of Water Transport Engineering, Tianjin 300456, P. R. China 《Journal of Hydrodynamics》 SCIE EI CSCD 1992年第2期111-118,共8页
In the case of steady flow, an equilibrium state for an alluvial reach referring to the input of sediment over a sufficiently long time (time interval in the order of months) is equal to the output of sediment. A none... In the case of steady flow, an equilibrium state for an alluvial reach referring to the input of sediment over a sufficiently long time (time interval in the order of months) is equal to the output of sediment. A nonequilibrium state exists under steady flow when the sediment transport rate changes with time and space, so that there is no balance between input and output of sediment. The experiments were performed in an open circuit tilting flume with the bed slope of 0. 001-0. 009, the flume length of 30m and flume width of 0. 5m. The boundary condition at upstream and in all experiments, the rate of sedimant supply was zero. The coal or sand was se- lected as the Wed material. The grain diameter of the bed material varied in the range of 0.05- 20. 00ram. The equation of nonequilibrium transport of nonuniform bedload is derived. The grain distribution of the size distribution of bedload is calculated by modified Gessler's formula. The grain size distribution of bed material is calculated by CARICHAR mixed layer model. These equations are applied to numerical simulation of armoring of riverbeds. The results of the bedload transport rate and the grain size distribution of the bedload at the end of the down- stream in the process of time, as well as the grain size distribution of the bed material in the pro- cess of time and distance are all in close agreement with the measurements. 展开更多
关键词 nonuniform bed load nonequilibrium transport armoring of riverbeds size distribution
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