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28篇 您的检索式:作者名="Masouros"
    题名 作者 年代 出处 被引量
1Comparison of 1-and 2-knot,4-strand,double-modified kessler tendon repairs in a porcine model显示文摘Rees L Matthews A Masouros SD 2009J Hand Surg Am2009,34,4:1
2Biomechanics of the meniscus-meniscal ligament construct of the knee显示文摘Masouros SD McDermott ID Amis AA 2008Knee Surg Sports Traumatol Arthrosc2008,16,:1
3Biomechanics of the meniscus-meniscal ligament construct of the knee显示文摘Masouros SD Mc Dermott ID Amis AA 2008Knee Surg Sports Traumatol Arthrosc2008,16,12:1
4Biomechanics of the meniscus-meniscal ligament construct of the knee显示文摘Masouros S D McDermott I D Amis A A 0,,12:1
5Interference optimization for transmit power reduction in tomlinson-harashima precoded MIMO downlinks显示文摘Masouros C Sellathurai M Ratnarajah T 2012IEEE Trans on Signal Processing2012,60,5:1
6Dynamic linear precoding for the exploitation of known interference in MIMO broad- cast systems 显示文摘MASOUROS C ALSUSA E 2009IEEE Transactions on Wireless Com- munication2009,8,3:1
7Correlation rotation linear precoding for MIMO broadcast communications 显示文摘MASOUROS C 2011IEEE Transactions on Signal Processing2011,59,1:1
8Interference optimization for transmit power reduction in tomlison harashima precoded MIMO downlinks显示文摘Masouros C Sellathurai M Ratnarajah T 2012IEEE Transactions on Signal Proceesing2012,60,5:1
9Large-scale MIMO transmitters in fixed physical spaces: The effect of transmit correlation and mutual coupling 显示文摘MASOUROS C SELLATHURAI M RATNARAJ- AH T 2013Communications IEEE Transactions on2013,61,7:1
10Correlation Rotation Linear PrecodlnB for MIMO Broadcast Communications 显示文摘C Masouros 2011IEEE Transactions on Signal Process- ing2011,59,1:1
11Biomechanics of the menisci of the knee 显示文摘McDermott I D Masouros S D Amis A A 2008Current Orthopaedics2008,22,:1
12Biomechanics of the meniscus-meniscal ligament construct of the knee显示文摘Masouros S D McDermott I D Amis A A 0,,12:1
13The Compressive Behavior of the Human Glenoid Labrum May Explain the Common Patterns of SLAP Lesions显示文摘Chris D. Smith Spyridon D. Masouros Adam M. Hill Andrew L. Wallace Andrew A. Amis Anthony M.J. Bull 2009Arthroscopy: The Journal of Arthroscopic and Related Surgery2009,,5:1
14Large-scale MIMO transmitters in fixed phys- ical spaces: the effect of transmit correlation and mutual coupling 显示文摘MASOUROS C SELLATHURAI M RATNARAJAH T 2013IEEE Transactions on Communications2013,61,7:1
15Dynamic linear precoding for the exploitation of known interference in MIMO broadcast systems显示文摘Masouros C and Alsusa E 2009IEEE Transactions on Wireless Communications2009,8,3:1
16Correlation rotation linear precoding for MIMO broadcast communications显示文摘Masouros C 2011IEEE Transactions on Signal Processing2011,59,1:1
17Interference as a source of green signal power in cognitive relay assisted co-existing MIMO wireless transmissions显示文摘Masouros C and Ratnarajah T 2012IEEE Transactions on Communications2012,60,2:1
18Interference-Driven linear Precoding in Multiuser MISO Downlink Cognitive Radio Network显示文摘KHAN F A MASOUROS C RATNARAJAH T 2012IEEE Transactions on Vehicular Technology2012,61,6:1
19Interference Optimization for Transmit Power Reduction in Tomlison-Harashima Precoded MIMO Downlinks显示文摘Christos Masouros Mathini Sellathurai Tharmalingam Ratnarajah 2012IEEE Transactions on Signal Processing2012,60,5:1
20Large Scale Antenna Arrays with Increasing Antennas in Limited Physical Space显示文摘Large Scale multiple input multiple output(MIMO) systems have recently emerged as a promising technology for 5G communications.While they have been shown to offer significant performance benefits in theoretical studies,the large scale MIMO transmitters will have to be deployed in the limited physical space of today's base stations(BSs).Accordingly,this paper examines effects of deploying increasing numbers of antennas in fixed physical space,by reducing the antenna spacing.We focus on the resulting performance of large-scale MIMO transmitters using low complexity closed form precoding techniques.In particular,we investigate the combined effect of reducing the distance between the antenna elements with increasing the number of elements in a fixed transmitter space.This gives rise to two contradicting phenomena:the reduction of spatial diversity due to reducing the separation between antennas and the increase in transmit diversity by increasing the number of elements.To quantify this tradeoff,we investigate densely deployed uniform antenna arrays modelled by detailed electromagnetic simulation.Our results show the somewhat surprising result that,by reducing the separations between the antennas to significantly less than the transmit wavelength to fit more antennas,the resulting system performance improves.Christos Masouros CHEN Jianling Kenneth Tong Mathini Sellathurai Tharmalingam Ratnaraiah WANG Junhong 2014China Communications2014,11,11:1
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