Revisiting TV Coverage Estimation with Measurement-based Statistical Interpolation

被引:0
|
作者
Ying, Xuhang [1 ]
Kim, Chang Wook [1 ]
Roy, Sumit [1 ]
机构
[1] Univ Washington, Dept Elect Engn, Seattle, WA 98195 USA
关键词
D O I
暂无
中图分类号
TP3 [计算技术、计算机技术];
学科分类号
0812 ;
摘要
Per FCC rules, secondary users in TV White Spaces must operate only within spectrum subject to a no-harmful-interference condition to existing primary receivers. In effect, this translates into a protection region around every TV transmitter, wherein secondary nodes must not transmit (on the same channel). This is implemented by requiring secondary users to consult a database prior to any channel access so as to obtain the local prohibited channels/spatial zones (or equivalently the free channels or White Spaces). Construction of such protection regions for a transmitter within a database has been done, mainly based on empirical propagation models that estimate the received signal strength at a location. Clearly, such model-based prediction is always of limited accuracy and should be supplemented by measurement based approaches that help validate and improve the database predictions. In this work, we present results based on applying spatial interpolation techniques (Kriging) to measurement data obtained in Seattle, WA. Our results have shown that empirical DBA models tend to over-estimate received signal strengths by not explicitly accounting for local obstructions, while measurement-based Kriging achieves consistently good performance. Furthermore, boundary estimation via Kriging achieves a type I error rate 46.1 % lower than comparable DBA approach while keeping type II error rate under a low limit (5%) for a given service threshold (i.e., -84 dBm/6 MHz); this is also an improvement over a method using k-Nearest Neighbor for such estimation.
引用
收藏
页数:8
相关论文
共 50 条
  • [41] An indirect transmission measurement-based spectrum estimation method for computed tomography
    Zhao, Wei
    Niu, Kai
    Schafer, Sebastian
    Royalty, Kevin
    PHYSICS IN MEDICINE AND BIOLOGY, 2015, 60 (01): : 339 - 357
  • [42] A Novel Methodology for Measurement-Based Low-Voltage Loss Estimation
    Dan, Dr. Andras
    Raisz, David
    PQ2008: 2008 POWER QUALITY AND SUPPLY RELIABILITY, CONFERENCE PROCEEDINGS, 2008, : 85 - 92
  • [43] A Vector Measurement-based Angular Velocity Estimation Scheme for Maneuvering Spacecraft
    Leeghim, Henzeh (h.leeghim@chosun.ac.kr), 1600, Springer New York (64):
  • [44] A novel measurement-based algorithm for coverage prediction of urban and suburban cells in wireless networks
    Xu, J. S.
    Wang, Yuhao
    Wang, Zhe
    IEEE TRANSACTIONS ON ANTENNAS AND PROPAGATION, 2006, 54 (11) : 3138 - 3142
  • [45] DDOS-attacks detection using an efficient measurement-based statistical mechanism
    Bouyeddou, Benamar
    Kadri, Benamar
    Harrou, Fouzi
    Sun, Ying
    ENGINEERING SCIENCE AND TECHNOLOGY-AN INTERNATIONAL JOURNAL-JESTECH, 2020, 23 (04): : 870 - 878
  • [46] Measurement-Based Experimental Statistical Modeling of Propagation Channel in Industrial IoT Scenario
    Wang, Yu
    Lv, Yejian
    Yin, Xuefeng
    Duan, Jiawei
    RADIO SCIENCE, 2020, 55 (09)
  • [47] Measurement-based multipath multicast
    Güven, T
    La, RJ
    Shayman, MA
    Bhattacharjee, B
    IEEE Infocom 2005: The Conference on Computer Communications, Vols 1-4, Proceedings, 2005, : 2803 - 2808
  • [48] Measurement-Based Care in Psychiatry
    Waldrop, Jessica
    McGuinness, Teena M.
    JOURNAL OF PSYCHOSOCIAL NURSING AND MENTAL HEALTH SERVICES, 2017, 55 (11) : 30 - 35
  • [49] MEASUREMENT-BASED MULTIPURPOSE CADASTRE
    BUYONG, TB
    FRANK, AU
    TECHNICAL PAPERS : 1989 ASPRS/ACSM ANNUAL CONVENTION, VOL 5: SURVEYING & CARTOGRAPHY, 1989, : 58 - 66
  • [50] Measurement-based quantum communication
    M. Zwerger
    H. J. Briegel
    W. Dür
    Applied Physics B, 2016, 122