针对Hubing电流驱动模型中认为电流在辐射线缆中是均一分布的,幅值和相位保持不变即未考虑辐射线缆共模电流频率效应给辐射电磁干扰噪声预估带来的误差的问题.文中利用电流传输波动特性建立了辐射线缆长度与共模电流波长为同一数量级时...针对Hubing电流驱动模型中认为电流在辐射线缆中是均一分布的,幅值和相位保持不变即未考虑辐射线缆共模电流频率效应给辐射电磁干扰噪声预估带来的误差的问题.文中利用电流传输波动特性建立了辐射线缆长度与共模电流波长为同一数量级时的辐射线缆共模电流分布模型,并设计电路模型进行测试预估.实验结果表明:采用文中方法预估辐射电磁干扰噪声与Hubing电流驱动模型预估方法相比能提高20.12dB_μV/m,更加接近标准暗室测试结果,从而为辐射电磁干扰(Electro Magnetic Interference,EMI)测试与分析提供理论依据.展开更多
随着医疗器械行业电磁兼容标准YY0505-2012的发布实施,其电磁兼容问题迫切需要解决.针对复杂医疗电子设备产生的辐射EMI噪声,本文建立两种辐射噪声理论模型,即芯片晶振时钟信号引起的辐射噪声模型以及PCB板软线路板(FPC)引起的辐射噪声...随着医疗器械行业电磁兼容标准YY0505-2012的发布实施,其电磁兼容问题迫切需要解决.针对复杂医疗电子设备产生的辐射EMI噪声,本文建立两种辐射噪声理论模型,即芯片晶振时钟信号引起的辐射噪声模型以及PCB板软线路板(FPC)引起的辐射噪声模型,并提出相应噪声抑制方法.实验结果表明,采用文中方法,某型医疗微波治疗仪、医疗尿量监测仪能够通过医疗器械行业电磁兼容标准YY0505-2012标准测试,噪声抑制效果可达10 d BμV/m以上,从而验证了文中方法的有效性.展开更多
Intra-body communication (IBC) is a new,emerging,short-range and human body based communication methodology.It is a technique to network various devices on human body,by utilizing the conducting properties of human ti...Intra-body communication (IBC) is a new,emerging,short-range and human body based communication methodology.It is a technique to network various devices on human body,by utilizing the conducting properties of human tissues,suitable for currently fast developing Body area network (BAN)/Body sensor network (BSN).IBC is believed to have advantages in power consumption,electromagnetic radiation,interference from external electromagnetic noise,security,and restriction in spectrum resource.In this article,the authors develop two models,which are analytical and empirical approaches,for comparing the performance and accuracy of IBC on a human limb.Through in vivo experiment of five volunteers,both models basically match with the experimental result with equivalent circuit model superior than electromagnetic model in term of maximum error.展开更多
文摘针对Hubing电流驱动模型中认为电流在辐射线缆中是均一分布的,幅值和相位保持不变即未考虑辐射线缆共模电流频率效应给辐射电磁干扰噪声预估带来的误差的问题.文中利用电流传输波动特性建立了辐射线缆长度与共模电流波长为同一数量级时的辐射线缆共模电流分布模型,并设计电路模型进行测试预估.实验结果表明:采用文中方法预估辐射电磁干扰噪声与Hubing电流驱动模型预估方法相比能提高20.12dB_μV/m,更加接近标准暗室测试结果,从而为辐射电磁干扰(Electro Magnetic Interference,EMI)测试与分析提供理论依据.
文摘随着医疗器械行业电磁兼容标准YY0505-2012的发布实施,其电磁兼容问题迫切需要解决.针对复杂医疗电子设备产生的辐射EMI噪声,本文建立两种辐射噪声理论模型,即芯片晶振时钟信号引起的辐射噪声模型以及PCB板软线路板(FPC)引起的辐射噪声模型,并提出相应噪声抑制方法.实验结果表明,采用文中方法,某型医疗微波治疗仪、医疗尿量监测仪能够通过医疗器械行业电磁兼容标准YY0505-2012标准测试,噪声抑制效果可达10 d BμV/m以上,从而验证了文中方法的有效性.
基金supported by The Science and Technology Development Fund of Macao under grant 014/2007/A1,063/2009/A and 024/2009/A1the Research Committee of the University of Macao under Grants UL012/09-Y1/EEE/VMI01/FST,RG077/09-10S/ VMI/FST,RG075/07-08S/10T/VMI/FST,and RG072/09-10S/ MPU/FSTthe Funds of Fujian Provincial Department of Science & Technology as 2007Y0024,2007T0009,2007I0018 and 2008J1005
文摘Intra-body communication (IBC) is a new,emerging,short-range and human body based communication methodology.It is a technique to network various devices on human body,by utilizing the conducting properties of human tissues,suitable for currently fast developing Body area network (BAN)/Body sensor network (BSN).IBC is believed to have advantages in power consumption,electromagnetic radiation,interference from external electromagnetic noise,security,and restriction in spectrum resource.In this article,the authors develop two models,which are analytical and empirical approaches,for comparing the performance and accuracy of IBC on a human limb.Through in vivo experiment of five volunteers,both models basically match with the experimental result with equivalent circuit model superior than electromagnetic model in term of maximum error.