期刊文献+
共找到3篇文章
< 1 >
每页显示 20 50 100
天线阵列方位对MIMO无线信道性能的影响 被引量:4
1
作者 李忻 聂在平 《电子与信息学报》 EI CSCD 北大核心 2005年第9期1433-1436,共4页
分析收发天线阵列的方位对MIMO无线信道的卒域相关性及其容量的影响,得出在散射信号角度扩展较小时, 这种影响不容忽视,为得到更大的信道容量,应使阵列法线尽可能指向来波/去波平均方向。数值结果证实了天线阵列方位对相关系数的影响,... 分析收发天线阵列的方位对MIMO无线信道的卒域相关性及其容量的影响,得出在散射信号角度扩展较小时, 这种影响不容忽视,为得到更大的信道容量,应使阵列法线尽可能指向来波/去波平均方向。数值结果证实了天线阵列方位对相关系数的影响,并指出这种影响随天线阵列法线偏离其信号平均方向而增大。仿真结果表明信号角度扩展较小的阵列的方位对信道容量影响更大,增大信号角度扩展可以削弱以至消除这种影响。 展开更多
关键词 阵列方位 MIMO信道 窄域相关性 信道容量 角度扩展
在线阅读 下载PDF
新型贴井壁式阵列方位侧向测井数值模拟与响应特性 被引量:5
2
作者 高建申 孙建孟 +2 位作者 于其蛟 崔利凯 姜艳娇 《地球物理学报》 SCIE EI CAS CSCD 北大核心 2016年第3期1131-1142,共12页
在现有侧向测井仪器基础上,提出了一种新型贴井壁式阵列方位侧向测井电极系,该仪器能提供径向和周向方位电阻率测量.该电极系采用贴井壁测量方式,提供5种径向探测深度.利用三维有限元方法模拟了阵列方位侧向测井电极系的井眼影响特性、... 在现有侧向测井仪器基础上,提出了一种新型贴井壁式阵列方位侧向测井电极系,该仪器能提供径向和周向方位电阻率测量.该电极系采用贴井壁测量方式,提供5种径向探测深度.利用三维有限元方法模拟了阵列方位侧向测井电极系的井眼影响特性、径向探测特性、纵向分层能力、方位分辨能力,并模拟其对井周地层、水平井非对称泥浆侵入和倾斜地层的响应.在导电泥浆中最大探测深度为1.23m,纵向分辨率为0.3m,可以识别出0.1m薄层,方位分辨率为20°.贴井壁测量时,纵向分辨率不受泥浆和围岩电阻率的影响,能够准确测量井周方位电阻率,较不贴井壁测量具有很大优势,同时利用12条方位电阻率曲线能够反映出水平井泥浆非对称侵入特性,倾斜地层倾角和倾斜方向. 展开更多
关键词 阵列方位侧向测井 贴井壁 方位电阻率 有限元方法 倾斜地层
在线阅读 下载PDF
Sensor array calibration for uniform rectangular array in presence of mutual coupling and sensor gain-and-phase errors
3
作者 王鼎 姚晖 吴瑛 《Journal of Central South University》 SCIE EI CAS 2014年第6期2228-2239,共12页
The sensor array calibration methods tailored to uniform rectangular array(URA)in the presence of mutual coupling and sensor gain-and-phase errors were addressed.First,the mutual coupling model of the URA was studied,... The sensor array calibration methods tailored to uniform rectangular array(URA)in the presence of mutual coupling and sensor gain-and-phase errors were addressed.First,the mutual coupling model of the URA was studied,and then a set of steering vectors corresponding to distinct locations were numerically computed with the help of several time-disjoint auxiliary sources with known directions.Then,the optimization modeling with respect to the array error matrix(defined by the product of mutual coupling matrix and sensor gain-and-phase errors matrix)was constructed.Two preferable algorithms(called algorithm I and algorithm II)were developed to minimize the cost function.In algorithm I,the array error matrix was regarded as a whole parameter to be estimated,and the exact solution was available.Compared to some existing algorithms with the similar computation framework,algorithm I can make full use of the potentially linear characteristics of URA's error matrix,thus,the calibration precision was obviously enhanced.In algorithm II,the array error matrix was decomposed into two matrix parameters to be optimized.Compared to algorithm I,it can further decrease the number of unknowns and,thereby,yield better estimation accuracy.However,algorithm II was incapable of producing the closed-form solution and the iteration operation was unavoidable.Simulation results validate the excellent performances of the two novel algorithms compared to some existing calibration algorithms. 展开更多
关键词 array calibration uniform rectangular array (URA) mutual coupling sensor gain-and-phase errors closed-form solution Newton-type iteration
在线阅读 下载PDF
上一页 1 下一页 到第
使用帮助 返回顶部