Rivers and groundwater are the main water sources for cities.The mutual transformation between river water and groundwater makes it difficult to accurately evaluate and rationally utilize water resources.Scientificall...Rivers and groundwater are the main water sources for cities.The mutual transformation between river water and groundwater makes it difficult to accurately evaluate and rationally utilize water resources.Scientifically quantifying the interaction of surface water and groundwater remains challenging.Taking Chan River Basin as an example,this study aimed to determine the interconversion processes of groundwater and surface water by hydrogeochemical genesis mechanism analysis,isotope tracing,and end-member mixing analysis(EMMA).28 surface water samples and 23 groundwater samples were collected and analyzed during December 2023 and January 2024.Results showed thewater bodies in the study area were dominated by the HCO_(3)-Ca,HCO_(3)-Ca·Mg·Na,and HCO_(3)·SO_(4)-Ca·Na types,with hydrogeochemical processes controlled by the weathering and dissolution of both carbonate and silicate rock minerals.The river water in the upper reaches of the study area is mainly recharged by groundwater,with the average recharge ratio of 54.10%.Similarly,river water is still recharged by groundwater in the middle reaches,the average recharge ratio changes to 28.61%.In the downstream area,where Xi’an City located,due to the heavy exploitation of groundwater,the river water recharges to groundwater with an average recharge ratio of 85.23%,although in the immediate middle reaches,groundwater still replenishes surface waterwith a recharge rate of 75.00%.The results laid the bases for the reasonable utilization of water resources in the Chan River Basin and also served as a reference in other regions of the world.展开更多
针对农业温室复杂环境中的超宽带(Ultra wide band,UWB)定位精度受非视距(Non line of sight,NLOS)效应和多路径影响的问题,本文提出了一种融合Chan-Taylor与改进沙猫群优化粒子滤波(Chan-Taylor and improved sand cat swarm intellige...针对农业温室复杂环境中的超宽带(Ultra wide band,UWB)定位精度受非视距(Non line of sight,NLOS)效应和多路径影响的问题,本文提出了一种融合Chan-Taylor与改进沙猫群优化粒子滤波(Chan-Taylor and improved sand cat swarm intelligence optimization particle filter,CT+ISCSO-PF)定位算法。首先,利用Chan-Taylor算法实现对目标初始位置的快速估算,为粒子滤波提供准确初值;随后,引入ISCSO(Improved sand cat swarm optimization particle filter)引导粒子向高似然区域移动,通过三角游走策略提升全局搜索能力,结合Levy飞行机制增强局部收敛效率,从而有效抑制粒子退化问题。本文模拟了3种不同噪声水平的环境。仿真结果表明,CT+ISCSO-PF算法在3种环境下,相比于传统的粒子滤波(Particle filter,PF)、Chan-Taylor与粒子滤波(Chan-Taylor and particle filter,CT+PF)、Chan-Taylor与沙猫群优化粒子滤波(Chan-Taylor and sand cat swarm intelligence optimization particle filter,CT+SCSO-PF)、Chan-Taylor与灰狼优化粒子滤波(Chan-Taylor and grey wolf optimizer particle filter,CT+GWO-PF)均表现出明显优势。进一步以农用履带车辆为载体开展温室环境定位试验,结果显示:在LOS场景下,该算法较PF、CT+PF、CT+SCSO-PF和CT+GWO-PF的均方根误差分别降低27.9%、17.8%、7.8%和10.2%;在NLOS场景下,均方根误差降幅分别达21.4%、15.6%、7.6%和5.2%。展开更多
Regarding the Chan Buddhism lamp records from the Song Dynasty and starting from Jing De Zhuan Deng Lu,the category of“enlightened masters in Chan Buddhism”禪門達者was listed separately,meaning a separate category w...Regarding the Chan Buddhism lamp records from the Song Dynasty and starting from Jing De Zhuan Deng Lu,the category of“enlightened masters in Chan Buddhism”禪門達者was listed separately,meaning a separate category was established for eccentric monks who pretended to be crazy,had unknown inheritance and miraculous deeds,and were difficult to classify.The following lamp records named this category of eccentric monks as“sages”散聖,or“saints”應化聖賢,which constructed another historical genealogy for the special Chan Buddhism eccentric monks.Moreover,the early lamp records included mostly idiosyncratic mad monks from previous dynasties.Since the Southern Song Dynasty,Chan Buddhism historical materials included many sages from the current dynasty.Therefore,this study mainly examines how the genealogy of Chan Buddhism eccentric monks was constructed in Song Dynasty Chan Buddhism lamp records,including quotations,and organizes the images of eccentric monks in the Song Dynasty,as written in Chan Buddhism historical materials,in order that the meaning of existence of these enlightened masters,sages,saints,etc.,included in the genealogy of Song Dynasty eccentric monks in the history of Chan Buddhism can be reflected.展开更多
在基于时间到达差(Time Difference Of Arrival,TDOA)的定位估计算法中,CHAN算法计算量小,能够在视距(Line Of Sight,LOS)传播环境下获得较高的定位精度,因而被广泛应用。但是在非视距传播环境(Non-Line Of Sight,NLOS)下,该算法的定位...在基于时间到达差(Time Difference Of Arrival,TDOA)的定位估计算法中,CHAN算法计算量小,能够在视距(Line Of Sight,LOS)传播环境下获得较高的定位精度,因而被广泛应用。但是在非视距传播环境(Non-Line Of Sight,NLOS)下,该算法的定位性能会明显下降。因为在非视距情况,尤其是密集城区,由于建筑物等障碍物的存在使得无线电信号无法直线传播,这就引入了NLOS误差;而CHAN算法中的加权矩阵只考虑了系统误差,无法消除NLOS误差。文中在基于视距环境下CHAN算法的研究基础上,对非视距引入的NLOS误差的统计特性进行分析,给出一种在NLOS情况下,通过优化非视距TDOA测量值误差的方法来改善非视距下的CHAN算法性能,并通过仿真分析了CHAN算法在不同环境模型下的定位性能。仿真结果表明,改善的CHAN算法在NLOS环境下能取得较好的定位性能。展开更多
基金supported by the National Natural Science Foundation of China(Nos.42341102 and 42102288)the Forestry Science and Technology Innovation Project of Shaanxi Province(No.SXLK2023–02–1)+1 种基金the Fundamental Research Funds for the Central Universities,China(No.300102263401)the Fundamental Research Funds for the Central Universities,China(No.300102294905).
文摘Rivers and groundwater are the main water sources for cities.The mutual transformation between river water and groundwater makes it difficult to accurately evaluate and rationally utilize water resources.Scientifically quantifying the interaction of surface water and groundwater remains challenging.Taking Chan River Basin as an example,this study aimed to determine the interconversion processes of groundwater and surface water by hydrogeochemical genesis mechanism analysis,isotope tracing,and end-member mixing analysis(EMMA).28 surface water samples and 23 groundwater samples were collected and analyzed during December 2023 and January 2024.Results showed thewater bodies in the study area were dominated by the HCO_(3)-Ca,HCO_(3)-Ca·Mg·Na,and HCO_(3)·SO_(4)-Ca·Na types,with hydrogeochemical processes controlled by the weathering and dissolution of both carbonate and silicate rock minerals.The river water in the upper reaches of the study area is mainly recharged by groundwater,with the average recharge ratio of 54.10%.Similarly,river water is still recharged by groundwater in the middle reaches,the average recharge ratio changes to 28.61%.In the downstream area,where Xi’an City located,due to the heavy exploitation of groundwater,the river water recharges to groundwater with an average recharge ratio of 85.23%,although in the immediate middle reaches,groundwater still replenishes surface waterwith a recharge rate of 75.00%.The results laid the bases for the reasonable utilization of water resources in the Chan River Basin and also served as a reference in other regions of the world.
文摘Regarding the Chan Buddhism lamp records from the Song Dynasty and starting from Jing De Zhuan Deng Lu,the category of“enlightened masters in Chan Buddhism”禪門達者was listed separately,meaning a separate category was established for eccentric monks who pretended to be crazy,had unknown inheritance and miraculous deeds,and were difficult to classify.The following lamp records named this category of eccentric monks as“sages”散聖,or“saints”應化聖賢,which constructed another historical genealogy for the special Chan Buddhism eccentric monks.Moreover,the early lamp records included mostly idiosyncratic mad monks from previous dynasties.Since the Southern Song Dynasty,Chan Buddhism historical materials included many sages from the current dynasty.Therefore,this study mainly examines how the genealogy of Chan Buddhism eccentric monks was constructed in Song Dynasty Chan Buddhism lamp records,including quotations,and organizes the images of eccentric monks in the Song Dynasty,as written in Chan Buddhism historical materials,in order that the meaning of existence of these enlightened masters,sages,saints,etc.,included in the genealogy of Song Dynasty eccentric monks in the history of Chan Buddhism can be reflected.
文摘在基于时间到达差(Time Difference Of Arrival,TDOA)的定位估计算法中,CHAN算法计算量小,能够在视距(Line Of Sight,LOS)传播环境下获得较高的定位精度,因而被广泛应用。但是在非视距传播环境(Non-Line Of Sight,NLOS)下,该算法的定位性能会明显下降。因为在非视距情况,尤其是密集城区,由于建筑物等障碍物的存在使得无线电信号无法直线传播,这就引入了NLOS误差;而CHAN算法中的加权矩阵只考虑了系统误差,无法消除NLOS误差。文中在基于视距环境下CHAN算法的研究基础上,对非视距引入的NLOS误差的统计特性进行分析,给出一种在NLOS情况下,通过优化非视距TDOA测量值误差的方法来改善非视距下的CHAN算法性能,并通过仿真分析了CHAN算法在不同环境模型下的定位性能。仿真结果表明,改善的CHAN算法在NLOS环境下能取得较好的定位性能。