The Xiuyan Jade samples were treated under thermal conditions. By polarizing microscope, the three kinds of jade were choosed. With DTA-TG analysis, three transition temperatures were obtained which were 600℃, 770℃ ...The Xiuyan Jade samples were treated under thermal conditions. By polarizing microscope, the three kinds of jade were choosed. With DTA-TG analysis, three transition temperatures were obtained which were 600℃, 770℃ and 840℃. The study interpreted the mechanism of Xiuyan Jade under thermal condition through XRD analysis results. The mechanism of antigorite thermal activation was as following: when the temperature reached 600℃, the hydroxyl in octahedral sheet began dehydrating, and the new mineral phase forsterite was found, but the layer structure was maintained; when the temperature reached 770℃, the layer structure of antigorite was destroyed; when the temperature reached 840℃, the crystallinity of forsterite was improved, then another new mineral phase enstatite appeard. For talc, it was likely turn to enstatite directly while the temperature rising, and the appearance of SiO2 was most likely due to the conversion of talc.展开更多
针对扩展移相控制下混合三电平双有源桥直流电/直流电(Direct current direct current,DC-DC)变换器普遍存在回流功率大、动态响应慢、鲁棒性不强等问题,提出一种基于输出电压动态矩阵控制与卡罗需-库恩-塔克条件(Karush-Kuhn-Tucker,K...针对扩展移相控制下混合三电平双有源桥直流电/直流电(Direct current direct current,DC-DC)变换器普遍存在回流功率大、动态响应慢、鲁棒性不强等问题,提出一种基于输出电压动态矩阵控制与卡罗需-库恩-塔克条件(Karush-Kuhn-Tucker,KKT)实现回流功率优化的混合控制策略。建立了传输功率数学模型,对回流功率特性进行分析,并推导了在不同工作模式下实现最小回流功率的最优移相比组合;从预测模型、滚动优化和反馈校正三个步骤阐述了动态矩阵控制预测电压实现过程,提高系统的动态性能。最后,通过与传统扩展移相控制以及传输功率误差最小控制进行比较,仿真和试验结果表明,所提控制策略可以在全功率范围内实现回流功率的优化,同时也改善了变换器的动态响应性能,验证了该方法的正确性与有效性。展开更多
针对间歇采样转发干扰产生的假目标和目标高速运动产生的多普勒频移导致雷达脉压性能急剧下降的问题,提出一种高多普勒容限的线性调频离散相位编码(linear frequency modulation-discrete phase coding,LFM-DPC)复合调制相干波形集设计...针对间歇采样转发干扰产生的假目标和目标高速运动产生的多普勒频移导致雷达脉压性能急剧下降的问题,提出一种高多普勒容限的线性调频离散相位编码(linear frequency modulation-discrete phase coding,LFM-DPC)复合调制相干波形集设计方法。在一定多普勒频移范围内,以最小化未转发信号自模糊函数旁瓣能量以及未转发信号与转发信号互模糊函数能量建立优化模型,并设计一种基于KKT(Karush-Kuhn-Tucker)最优性条件的迭代算法对模型求解。仿真实验表明,相比于遗传算法和单一调制的LFM和DPC信号,基于KKT最优性条件的交替迭代优化算法优化的LFM-DPC波形集有更好的抗间歇采样转发干扰性能。展开更多
基金Supported by National Natural Science Foundation (Grant No.:40872045 41172047)The Opening Project of Key Laboratory of Solid Waste Treatment and Resource Recycle (SWUST), Ministry of Education (12zxgk01)
文摘The Xiuyan Jade samples were treated under thermal conditions. By polarizing microscope, the three kinds of jade were choosed. With DTA-TG analysis, three transition temperatures were obtained which were 600℃, 770℃ and 840℃. The study interpreted the mechanism of Xiuyan Jade under thermal condition through XRD analysis results. The mechanism of antigorite thermal activation was as following: when the temperature reached 600℃, the hydroxyl in octahedral sheet began dehydrating, and the new mineral phase forsterite was found, but the layer structure was maintained; when the temperature reached 770℃, the layer structure of antigorite was destroyed; when the temperature reached 840℃, the crystallinity of forsterite was improved, then another new mineral phase enstatite appeard. For talc, it was likely turn to enstatite directly while the temperature rising, and the appearance of SiO2 was most likely due to the conversion of talc.
文摘针对扩展移相控制下混合三电平双有源桥直流电/直流电(Direct current direct current,DC-DC)变换器普遍存在回流功率大、动态响应慢、鲁棒性不强等问题,提出一种基于输出电压动态矩阵控制与卡罗需-库恩-塔克条件(Karush-Kuhn-Tucker,KKT)实现回流功率优化的混合控制策略。建立了传输功率数学模型,对回流功率特性进行分析,并推导了在不同工作模式下实现最小回流功率的最优移相比组合;从预测模型、滚动优化和反馈校正三个步骤阐述了动态矩阵控制预测电压实现过程,提高系统的动态性能。最后,通过与传统扩展移相控制以及传输功率误差最小控制进行比较,仿真和试验结果表明,所提控制策略可以在全功率范围内实现回流功率的优化,同时也改善了变换器的动态响应性能,验证了该方法的正确性与有效性。
文摘针对间歇采样转发干扰产生的假目标和目标高速运动产生的多普勒频移导致雷达脉压性能急剧下降的问题,提出一种高多普勒容限的线性调频离散相位编码(linear frequency modulation-discrete phase coding,LFM-DPC)复合调制相干波形集设计方法。在一定多普勒频移范围内,以最小化未转发信号自模糊函数旁瓣能量以及未转发信号与转发信号互模糊函数能量建立优化模型,并设计一种基于KKT(Karush-Kuhn-Tucker)最优性条件的迭代算法对模型求解。仿真实验表明,相比于遗传算法和单一调制的LFM和DPC信号,基于KKT最优性条件的交替迭代优化算法优化的LFM-DPC波形集有更好的抗间歇采样转发干扰性能。