Multifunctional Reconfigurable Electromagnetic Signal Transmitting Receiving and Processing Technology

被引:0
|
作者
Chen X. [1 ]
Yang X. [1 ]
Zhou Q. [2 ]
Wu Y. [3 ]
Chen W. [4 ]
Fang H. [1 ]
Yang F. [5 ]
机构
[1] China Academy of Space Technology (Xi'an), Xi'an
[2] Zhejiang Zhenlei Technology Co., Ltd., Hangzhou
[3] China Key System & Integrated Circuit Co., Ltd., Jiangsu, Wuxi
[4] Phasym Technology, Chengdu
[5] School of Electronic Science and Engineering, University of Electronic Science and Technology of China, Chengdu
关键词
heterogeneous resources virtualization; integrated RF microsystem; multi-functional integrated payload system; software reconfigurable; ultra-wideband synthetic array antenna;
D O I
10.12178/1001-0548.2022089
中图分类号
学科分类号
摘要
In radar communication and electronic warfare, multifunctional integrated load system needs hardware generalization, functions based on software and resource virtualization, so as to realize resource reuse and sharing to the maximum extent. In this paper, we design a polar-reconfigurable antenna array with low profile, ultra-wideband and wide angle scanning, a comprehensive RF microsystem with reconfigurable RF performances, and a high-performance heterogeneous computing platform for flexible resource scheduling and dynamic management. The multifunctional integrated architecture and its key technologies proposed in this paper lay the technical foundation for the function based on software, virtualization and intelligentization of distributed multidomain intelligent networked electronic systems in the future. © 2023 Univ. of Electronic Science and Technology of China. All rights reserved.
引用
收藏
页码:214 / 223
页数:9
相关论文
共 44 条
  • [1] ZHAO J S, WU F G, LIU G M., Development and prospect of software defined satellite, Satellite and Network, 12, pp. 46-50, (2017)
  • [2] ZHOU Y, ZHANG X Y, ZHI Y F, Research on software defined satellite payload technology, Journal of Northwestern Polytechnical, 38, pp. 96-101, (2020)
  • [3] WU Q X., State of the art and development analysis of software defined satellites, Journal of China Academy of Electronics and Information Technology, 16, 4, pp. 333-337, (2021)
  • [4] XU F J, ZHOU X, ZHAO J S, Et al., Rethinking of software-defined satellite technology
  • [5] ZHU W Q, WANG K R, XU H J, Et al., Development of multifunctional integration technology, Aerospace Electronic Warfare, 36, 3, pp. 1-10, (2020)
  • [6] LIANG X D, LI Q, WANG J, Et al., Joint wireless communication and radar sensing: Review and future prospects, Journal of Signal Processing, 36, 10, pp. 1615-1627, (2020)
  • [7] MA D Y, LIU X, HUANG T Y, Et al., Joint radar and communications: Design of shared waveforms and performance bounds, Journal of Radars, 11, 2, pp. 198-212, (2022)
  • [8] XING Z Y, ZHU S J, HUANG X F, Et al., Design on software-defined spacecraft system architecture, Spacecraft Engineering, 30, 5, pp. 1-8, (2021)
  • [9] HOLLAND S S, VOUVAKIS M N., The planar ultra-wideband modular antenna (PUMA) array, IEEE Transactions on Antennas and Propagation, 60, 1, pp. 130-140, (2012)
  • [10] ZHONG J, JOHNSON A, ALWAN E A, Et al., Dual-Linear polarized phased array with 9: 1 bandwidth and 60° scanning off broadside, IEEE Transactions on Antennas and Propagation, 67, 3, pp. 1996-2001, (2019)