A vision of network-centric military communications

被引:1
|
作者
Conklin, R [1 ]
Burbank, J [1 ]
Nichols, R [1 ]
机构
[1] Johns Hopkins Univ, Appl Phys Lab, Laurel, MD 20723 USA
来源
Defense Transformation and Network-Centric Systems | 2005年 / 5820卷
关键词
networking; adaptive communications; network-centric;
D O I
10.1117/12.603749
中图分类号
TN [电子技术、通信技术];
学科分类号
0809 ;
摘要
This paper presents a vision for a future capability-based military communications system that considers user requirements. Historically, the military has developed and fielded many specialized communications systems. While these systems solved immediate communications problems, they were not designed to operate with other systems. As information has become more important to the execution of war, the "stove-pipe" nature of the communications systems deployed by the military is no longer acceptable. Realizing this, the military has begun the transformation of communications to a network-centric communications paradigm. However, the specialized communications systems were developed in response to the widely varying environments related to military communications. These environments, and the necessity for effective communications within these environments, do not disappear under the network-centric paradigm. In fact, network-centric communications allows for one message to cross many of these environments by transiting multiple networks. The military would also like one communications approach that is capable of working well in multiple environments. This paper presents preliminary work on the creation of a framework that allows for a reconfigurable device that is capable of adapting to the physical and network environments. The framework returns to the Open Systems Interconnect (OSI) architecture with the addition of a standardized intra-layer control interface for control information exchange, a standardized data interface and a proposed device architecture based on the software radio.
引用
收藏
页码:92 / 101
页数:10
相关论文
共 34 条
  • [21] From Spatial Data to Synchronised Actions: The Network-centric Organisation of Spatial Decision Support for Risk and Emergency Management
    Neuvel, Jeroen M. M.
    Scholten, Henk J.
    van den Brink, Adri
    APPLIED SPATIAL ANALYSIS AND POLICY, 2012, 5 (01) : 51 - 72
  • [22] Network Centric Core Avionics
    Montenegro, Sergio
    SPACOMN: 2009 FIRST INTERNATIONAL CONFERENCE ON ADVANCES IN SATELLITE AND SPACE COMMUNICATIONS, 2009, : 197 - 201
  • [23] Powered Low Cost Autonomous Attack System: cooperative, autonomous, wide-area-search munitions with capability to serve as non-traditional ISR assets in a network-centric environment
    Savage, JJC
    O'Neal, K
    Brown, RA
    Keeler, JE
    Laser Radar Technology and Applications X, 2005, 5791 : 61 - 69
  • [24] Distributive justice in network communications
    Moktan, Gautam Raj
    Manner, Jukka
    INTERNATIONAL JOURNAL OF COMMUNICATION NETWORKS AND DISTRIBUTED SYSTEMS, 2019, 23 (04) : 499 - 521
  • [25] A Network Perspective About Communications Services
    Dimofte, Dan
    2012 9TH INTERNATIONAL CONFERENCE ON COMMUNICATIONS (COMM), 2012, : 205 - 208
  • [26] The Satellite Communications Network of Excellence "SatNEx"
    Lutz, Erich
    Donner, Anton
    2009 INTERNATIONAL WORKSHOP ON SATELLITE AND SPACE COMMUNICATIONS, CONFERENCE PROCEEDINGS, 2009, : 25 - 29
  • [27] A Neural Network for Quality of Experience Estimation in Mobile Communications
    Pierucci, Laura
    Micheli, Davide
    IEEE MULTIMEDIA, 2016, 23 (04) : 42 - 49
  • [28] Research on Network Centric Based Remote Fault Diagnosis and Maintenance System to Vehicle Equipment
    Yang, Xiaosong
    Gong, Zhiping
    Wang, Shuo
    Zhang, Jianhua
    PROCEEDINGS OF 2013 INTERNATIONAL CONFERENCE ON QUALITY, RELIABILITY, RISK, MAINTENANCE, AND SAFETY ENGINEERING (QR2MSE), VOLS I-IV, 2013, : 1843 - 1845
  • [29] A framework for assessing and predicting network loads and performance for network centric operations and warfare - art. no. 65780T
    Santos, Eunice E.
    Defense Transformation and Net-Centric Systems 2007, 2007, 6578 : T5780 - T5780
  • [30] Approach jamming effectiveness evaluation for surface-type infrared decoy in network centric warship formation
    Lv Mingshan
    AOPC 2015: OPTICAL AND OPTOELECTRONIC SENSING AND IMAGING TECHNOLOGY, 2015, 9674