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并行FDTD和IBM BlueGene/L巨型计算机结合求解电大尺寸的电磁问题 被引量:6
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作者 余文华 杨小玲 +2 位作者 刘永俊 苏涛 raj mittra 《电波科学学报》 EI CSCD 北大核心 2006年第4期562-566,共5页
高性能巨型计算机的快速发展正在改变着人们在计算电磁学方面的一些传统观念,特别是IBMBlueGene/L巨型计算机的出现使计算电磁学所解决的问题尺寸和时间发生了巨大的变化。IBMBlueGene/L巨型计算机可以包括多达65,536处理器和32TB内存,... 高性能巨型计算机的快速发展正在改变着人们在计算电磁学方面的一些传统观念,特别是IBMBlueGene/L巨型计算机的出现使计算电磁学所解决的问题尺寸和时间发生了巨大的变化。IBMBlueGene/L巨型计算机可以包括多达65,536处理器和32TB内存,更重要的是由于它所使用的特殊体系结构使它在4000个处理器时时域有限差分程序的并行效率仍然在百分之九十左右。测试显示,在单个CPU速度接近的情况下,一台奔腾4计算机上运行五十二天的工作量在一个包含有4000个处理器的BlueGene/L巨型计算机上仅需10min左右。虽然普通的PC机群与单个处理器相比也能快速地求解相对大的问题,但是无论是使用千兆Ethernet、Foundry、Myrinet或者Infiniband,普通PC机群的效率都会在处理其数量超过几十个的时候快速下降。为了验证并行时有预先差分程序的正确性,我们使用并行时域有限差分程序在巨型计算机IBMBlueGene/L上模拟一个144单元的对偶极化Viv-aldi阵列的抛物面天线馈源。 展开更多
关键词 并行时域有限差分 BlueGene/L巨型计算机 计算电磁学 天线阵列 MPI MPICH
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Wide-Angle Scanning Antennas for Millimeter-Wave 5G Applications 被引量:3
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作者 raj mittra Abdelkhalek Nasri Ravi Kumar Arya 《Engineering》 SCIE EI 2022年第4期60-71,共12页
The fifth generation(5G)network communication systems operate in the millimeter waves and are expected to provide a much higher data rate in the multi-gigabit range,which is impossible to achieve using current wireles... The fifth generation(5G)network communication systems operate in the millimeter waves and are expected to provide a much higher data rate in the multi-gigabit range,which is impossible to achieve using current wireless services,including the sub-6 GHz band.In this work,we briefly review several existing designs of millimeter-wave phased arrays for 5G applications,beginning with the low-profile antenna array designs that either are fixed beam or scan the beam only in one plane.We then move on to array systems that offer two-dimensional(2D)scan capability,which is highly desirable for a majority of 5G applications.Next,in the main body of the paper,we discuss two different strategies for designing scanning arrays,both of which circumvent the use of conventional phase shifters to achieve beam scanning.We note that it is highly desirable to search for alternatives to conventional phase shifters in the millimeter-wave range because legacy phase shifters are both lossy and costly;furthermore,alternatives such as active phase shifters,which include radio frequency amplifiers,are both expensive and power-hungry.Given this backdrop,we propose two different antenna systems with potential for the desired 2D scan performance in the millimeter-wave range.The first of these is a Luneburg lens,which is excited either by a 2D waveguide array or by a microstrip patch antenna array to realize 2D scan capability.Next,for second design,we turn to phased-array designs in which the conventional phase shifter is replaced by switchable PIN diodes or varactor diodes,inserted between radiating slots in a waveguide to provide the desired phase shifts for scanning.Finally,we discuss several approaches to enhance the gain of the array by modifying the conventional array configurations.We describe novel techniques for realizing both one-dimensional(1D)and 2D scans by using a reconfigurable metasurface type of panels. 展开更多
关键词 Luneburg lens Scanning arrays Millimeter-wave antennas Switchable phase shifters Reconfigurable metasurfaces
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A look at field manipulation and antenna design using 3D transformation electromagnetics and 2D surface electromagnetics
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作者 Peng-fei ZHANG Yu-kai YAN +1 位作者 Ying LIU raj mittra 《Frontiers of Information Technology & Electronic Engineering》 SCIE EI CSCD 2020年第3期351-366,共16页
While many techniques have been developed for the design of different types of antennas,such as wire antenna,patch antenna,lenses,and reflectors,these cannot be said general-purpose strategies for the synthesis and de... While many techniques have been developed for the design of different types of antennas,such as wire antenna,patch antenna,lenses,and reflectors,these cannot be said general-purpose strategies for the synthesis and design of antennas to achieve the performance characteristics specified by users.Recently,there has been an increasing need for the development of antenna design techniques because of the advent of 5 G and a variety of space,defense,biological,and similar applications,for which a robust and general-purpose design tool is not to be developed.The main objective of this study is to take a look at antenna design from the field manipulation point of view,which has the potential to partially fulfill this need.We review the existing field manipulation techniques,including field transformation methods based on Maxwell’s and wave equations,point out some limitations of these techniques,and then present ways to improve the performance of these methods.Next,we introduce an alternative approach for field manipulation based on two-dimensional(2 D)metasurfaces,and present laws of the generalized reflection and refraction that are based on 2 D surface electromagnetics.Then,we explore how to overcome the limitations of conventional reflection and refraction processes that are strictly bounded by the critical angle.Finally,we provide some application examples of field manipulation methods in the antenna design,with a view on developing a general-purpose strategy for antenna design for future communication. 展开更多
关键词 Field manipulation Transformation optics Antenna design Surface electromagnetics
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