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      • Department of Electrical and Electronics Engineering
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      Power-efficient positioning for visible light systems via chance constrained optimization

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      Author(s)
      Yazar, Onurcan
      Keskin, M. F.
      Gezici, Sinan
      Date
      2020
      Source Title
      IEEE Transactions on Aerospace and Electronic Systems
      Print ISSN
      0018-9251
      Electronic ISSN
      1557-9603
      Publisher
      IEEE
      Volume
      56
      Issue
      5
      Pages
      4124 - 4131
      Language
      English
      Type
      Article
      Item Usage Stats
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      Abstract
      The problem of minimizing total power consumption in light-emitting diode transmitters is investigated for achieving power efficient localization in a visible light communication and positioning system. A robust power allocation approach based on stochastic uncertainties is proposed for total power minimization in the presence of localization accuracy, power, and illumination constraints. Specifically, the power consumption minimization problem is formulated under a chance constraint on the probability of Cramér-Rao lower bound exceeding a tolerable limit, which is a computationally intractable constraint. The sphere bounding method is used to propose a safe convex approximation to this intractable constraint, which makes the resulting problem suitable for standard convex optimization tools. Numerical results demonstrate the advantages of the proposed robust solution over the nonrobust solution and uniform power allocation in the presence of stochastic uncertainty.
      Keywords
      Chance-constrained programming
      Convex optimization
      Power efficiency
      Robust design
      Visible light communication and positioning (VLCP)
      Permalink
      http://hdl.handle.net/11693/76032
      Published Version (Please cite this version)
      https://doi.org/10.1109/TAES.2020.2982304
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      • Department of Electrical and Electronics Engineering 4011
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