首页> 外文会议>IEEE Military Communications Conference >DEMONSTRATION OF TWO-WAY EXTREMELY HIGH FREQUENCY (EHF) SATELLITE COMMUNICATION (SATCOM) USING SUBMARINE-SURVIVABLE PHASED ARRAYS
【24h】

DEMONSTRATION OF TWO-WAY EXTREMELY HIGH FREQUENCY (EHF) SATELLITE COMMUNICATION (SATCOM) USING SUBMARINE-SURVIVABLE PHASED ARRAYS

机译:使用潜艇可生存的相控阵的双向极高频率(EHF)卫星通信(SATCOM)的示范

获取原文

摘要

U. S. submarines are faced with the challenging dilemma of addressing the need for higher data rate satellite communications (SATCOM) without significantly increasing the size of the SATCOM antenna. The planar form factor of phased array technology, along with the ability to steer beams electronically, has led to submarine antenna concepts that can simultaneously improve performance, utilize the submarine sail volume more efficiently, and minimize the impact to platform stealth. Through technology development under the Office of Naval Research (ONR), submarine-survivable phased arrays that address EHF SATCOM have been fabricated, tested, and delivered to the Navy by Boeing Phantom Works. The Naval Undersea Warfare Center has recently performed notional system integration and testing of these arrays. Q-band (44 GHz) uplink- and K-band (20 GHz) downlink-phased array antennas were tested successfully using both the Military Strategic and Tactical Relay (MILSTAR) and Ultra High Frequency Follow-On (UFO) military satellites. The antennas were integrated with the Raytheon Follow-On Terminal (FOT) for full-duplex SATCOM testing. Full-duplex data rates of up to 64 kbps were attained using the phased arrays under optimal weather conditions. Bit error rate testing (BERT) was performed with no bit errors recorded. Initial tests were performed with the phased arrays mounted on a stationary platform; subsequent testing involved integration of the phased arrays into a notional housing atop a submarine mast. Notional mast testing included simulated ship motion using a six-axis motion table that is located on the roof of the Naval Undersea Warfare Center Division Newport's (NUWCDTVNPT) Building 68 (B-68) with support from the Submarine EHF Satellite Communication Integration Facility (SESIF). Half-duplex testing was also performed using a fiber optic (FO) link to carry both the control and radio frequency (RF) signals for the downlink-phased array on a single FO cable. This paper will provide an overview of the array technology and will describe the configurations and results of SATCOM testing.
机译:U. S.潜艇面临着解决需要更高数据速率卫星通信(SATCOM)的挑战性困境,而不会显着增加Satcom天线的大小。相控阵技术的平面形式因子以及以电子方式转向梁的能力,导致了可以同时提高性能的潜艇天线概念,更有效地利用潜艇帆体积,并最大限度地减少对平台隐身的影响。通过在海军研究办公室(ONR)办公室的技术开发,通过波音幻影工作制造,测试和向海军制作地址的潜艇可生存的相控阵。海军Undersea Warfare Center最近对这些阵列进行了名义系统集成和测试。使用军事战略和战术继电器(MILSTAR)和超高频跟随(UFO)军事卫星成功地测试了Q频段(44 GHz)上行链路和k频段(20 GHz)下行链路相控阵天线。天线与用于全双工SATCOM测试的raytheon跟随终端(FOT)集成。在最佳天气条件下,使用相位阵列获得最多64 kbps的全双工数据速率。误码率测试(BERT)是在没有记录的位错误中进行的。使用安装在固定平台上的相位阵列进行初始测试;随后测试涉及将相位阵列集成到潜艇桅杆上的一个名义外壳中。名义桅杆测试包括模拟船舶运动,使用位于海军海底战争中心部门纽波特(Nuwcdtvnpt)屋顶上的六轴运动表,其中包括潜艇EHF卫星通信集成设施(Sesif)的支持(B-68)。 )。还使用光纤(FO)链路进行半双工测试,以在单个FO电缆上携带用于下行链路相控阵列的控制和射频(RF)信号。本文将概述阵列技术,并将描述SATCOM测试的配置和结果。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号