A SOI material with thick BOX (2.2 μm) was successfully fabricated using the Smart-cut technology. The thick BOX SOI microstructures were investigated by high resolution cross-sectional transmission electron microsco...A SOI material with thick BOX (2.2 μm) was successfully fabricated using the Smart-cut technology. The thick BOX SOI microstructures were investigated by high resolution cross-sectional transmission electron microscopy (XTEM), while the electrical properties were studied by the spreading resistance profile (SRP). Experimental results demonstrate that both structural and electrical properties of the SOI structure are very good.展开更多
随着智慧供热系统建设的不断推进,我国北方地区冬季供热的智能化水平得到重大提升。作为智慧供热系统实现智能化运行的基础,如何实现高效、精准的供热效果评估成为重要的研究课题。该文针对现有评估方法在快速性和准确性方面存在的缺陷...随着智慧供热系统建设的不断推进,我国北方地区冬季供热的智能化水平得到重大提升。作为智慧供热系统实现智能化运行的基础,如何实现高效、精准的供热效果评估成为重要的研究课题。该文针对现有评估方法在快速性和准确性方面存在的缺陷,提出一种基于快速导数动态时间规整(fast derivative dynamic time warping,FDDTW)的供热效果在线评估方法。利用箱线图获取最优参考供温曲线,再将终端用户室温计量装置实时采集到的数据进行滑窗处理,并利用FDDTW计算当前窗口供温曲线和最优参考供温曲线之间的距离,通过FDDTW评估得分判断当前供温效果是否满足实际要求。相较于传统的动态时间规整算法,该算法改善奇异性、提高效率,为智慧供热系统提供切实可行的供热效果在线评估方法。展开更多
基金Supported by the National Natural Science Foundation of China(No.69906005)and the Shanghai Youth Foundation(No.01 QMH1403)
文摘A SOI material with thick BOX (2.2 μm) was successfully fabricated using the Smart-cut technology. The thick BOX SOI microstructures were investigated by high resolution cross-sectional transmission electron microscopy (XTEM), while the electrical properties were studied by the spreading resistance profile (SRP). Experimental results demonstrate that both structural and electrical properties of the SOI structure are very good.
文摘随着智慧供热系统建设的不断推进,我国北方地区冬季供热的智能化水平得到重大提升。作为智慧供热系统实现智能化运行的基础,如何实现高效、精准的供热效果评估成为重要的研究课题。该文针对现有评估方法在快速性和准确性方面存在的缺陷,提出一种基于快速导数动态时间规整(fast derivative dynamic time warping,FDDTW)的供热效果在线评估方法。利用箱线图获取最优参考供温曲线,再将终端用户室温计量装置实时采集到的数据进行滑窗处理,并利用FDDTW计算当前窗口供温曲线和最优参考供温曲线之间的距离,通过FDDTW评估得分判断当前供温效果是否满足实际要求。相较于传统的动态时间规整算法,该算法改善奇异性、提高效率,为智慧供热系统提供切实可行的供热效果在线评估方法。