目的:为满足高压氧治疗信息管理系统便携性的需求,设计一种基于Android的手持智能终端。方法:硬件采用MT6582处理器作为主控,集成显示、通信、输入输出等模块;软件使用RAD Studio XE7开发环境编辑程序代码,主体界面主要设计为计费和预约...目的:为满足高压氧治疗信息管理系统便携性的需求,设计一种基于Android的手持智能终端。方法:硬件采用MT6582处理器作为主控,集成显示、通信、输入输出等模块;软件使用RAD Studio XE7开发环境编辑程序代码,主体界面主要设计为计费和预约2个功能。结果:手持智能终端与服务器链接稳定,响应迅速,大大地提高了高压氧治疗信息管理系统的工作效率。结论:该智能终端的应用能够进一步提高高压氧治疗信息管理系统的便携性,值得推广应用。展开更多
An algorithm for retrieving the surface pressure from oxygen A-band measurements in the future Chinese CO2satellite(CarbonSpec/TanSat)was developed.The ful physical radiative transfer model,vector radiative transfe mo...An algorithm for retrieving the surface pressure from oxygen A-band measurements in the future Chinese CO2satellite(CarbonSpec/TanSat)was developed.The ful physical radiative transfer model,vector radiative transfe model based on successive order of scattering,which i based on the successive order of scattering approach,wa used to simulate the measurements of CarbonSpec/TanSat as well as the kernel matrix in the inversion algorithm,and then the surface pressure and other related atmospheric parameters such as aerosol optical depth(AOD),surface albedo,and temperature were derived through optima estimation theory.Sensitivities of the algorithm to surface albedo,solar zenith angle(SZA),viewing zenith angle(VZA),aerosol type,and AOD were investigated,and the results showed that the absolute error of retrieved surface pressure increases with decreasing surface albedo o increasing SZA and VZA.An accuracy of\4 hPa ove bright surfaces(surface albedo C0.15)could be derived fo various SZAs and viewing geometries.Moreover,the algorithm can simultaneously retrieve the surface albedo AOD,and its vertical distribution indicated by scale展开更多
文摘目的:为满足高压氧治疗信息管理系统便携性的需求,设计一种基于Android的手持智能终端。方法:硬件采用MT6582处理器作为主控,集成显示、通信、输入输出等模块;软件使用RAD Studio XE7开发环境编辑程序代码,主体界面主要设计为计费和预约2个功能。结果:手持智能终端与服务器链接稳定,响应迅速,大大地提高了高压氧治疗信息管理系统的工作效率。结论:该智能终端的应用能够进一步提高高压氧治疗信息管理系统的便携性,值得推广应用。
基金supported by the Strategic Priority Research Program-Climate Change:Carbon Budget and Relevant Issues(XDA05040300)the National High-Tech R&D Program(2011AA12A104)of Chinathe National Natural Sience Foundation of China(41305030)
文摘An algorithm for retrieving the surface pressure from oxygen A-band measurements in the future Chinese CO2satellite(CarbonSpec/TanSat)was developed.The ful physical radiative transfer model,vector radiative transfe model based on successive order of scattering,which i based on the successive order of scattering approach,wa used to simulate the measurements of CarbonSpec/TanSat as well as the kernel matrix in the inversion algorithm,and then the surface pressure and other related atmospheric parameters such as aerosol optical depth(AOD),surface albedo,and temperature were derived through optima estimation theory.Sensitivities of the algorithm to surface albedo,solar zenith angle(SZA),viewing zenith angle(VZA),aerosol type,and AOD were investigated,and the results showed that the absolute error of retrieved surface pressure increases with decreasing surface albedo o increasing SZA and VZA.An accuracy of\4 hPa ove bright surfaces(surface albedo C0.15)could be derived fo various SZAs and viewing geometries.Moreover,the algorithm can simultaneously retrieve the surface albedo AOD,and its vertical distribution indicated by scale