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Performance analysis of source ranging by use of virtual receiver technique under different frequency bands 被引量:1
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作者 YAO Meijuan MA Li +1 位作者 LU Licheng GUO Shengming 《Chinese Journal of Acoustics》 CSCD 2015年第4期387-400,共14页
The traditional matched field processing localization need complicated computation to get the replica field and has high dependence on environment parameters and acoustic field model. To overcome the shortcoming, virt... The traditional matched field processing localization need complicated computation to get the replica field and has high dependence on environment parameters and acoustic field model. To overcome the shortcoming, virtual receiver technique is used for source ranging. A virtual receiver is constructed by correlating the two signals of the guide source and the objective source received by a vertical line array. Then, the slope of the interference striation of the virtual field is estimated using relevant signal processing method. Combining with the waveguide invariant/3, the range of the objective source is determined. Through the numerical simulations and data processing collected from the experiment carried out in the South China Sea in 2004, the virtual receiver technique for broadband source ranging under the slope- bottom shallow water environment is discussed. As the frequency increases, the frequency bands should be broadened to obtain complete interference striation for good ranging results. In data processing, the receiving array spacing is too large to promise the orthogonality of the modes as the frequency increases and ranging results become worse. 展开更多
关键词 Performance analysis of source ranging by use of virtual receiver technique under different frequency bands
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Ultra Dense Network:Challenges,Enabling Technologies and New Trends 被引量:21
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作者 HAO Peng YAN Xiao +1 位作者 Yu-Ngok Ruyue YUAN Yifei 《China Communications》 SCIE CSCD 2016年第2期30-40,共11页
5G sets an ambitious goal of increasing the capacity per area of current 4G network by 1000 fold. Due to the high splitting gain of dense small cells, ultra dense network(UDN) is widely considered as a key component i... 5G sets an ambitious goal of increasing the capacity per area of current 4G network by 1000 fold. Due to the high splitting gain of dense small cells, ultra dense network(UDN) is widely considered as a key component in achieving this goal. In this paper, we outline the main challenges that come with dense cell deployment, including interference, mobility, power consumption and backhaul. Technologies designed to tackle these challenges in long term evolution system(LTE) and their deficiencies in UDN context are also analyzed. To combat these challenges more efficiently, a series of technologies are introduced along with some of our initial research results. Moreover, the trends of user-centric and peer-to-peer design in UDN are also elaborated. 展开更多
关键词 5G ultra dense network cellvirtualization virtual receiver self-backhaul user-centric access
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