• DocumentCode
    2516938
  • Title

    Finite signal-set capacity of two-user Gaussian Multiple Access Channel

  • Author

    Harshan, J. ; Rajan, B. Sundar

  • Author_Institution
    Dept of ECE, Indian Inst. of Sci., Bangalore
  • fYear
    2008
  • fDate
    6-11 July 2008
  • Firstpage
    1203
  • Lastpage
    1207
  • Abstract
    The capacity region of a two-user Gaussian multiple access channel (GMAC) with complex finite input alphabets and continuous output alphabet is studied. When both the users are equipped with the same code alphabet, it is shown that, rotation of one of the userpsilas alphabets by an appropriate angle can make the new pair of alphabets not only uniquely decodable, but will result in enlargement of the capacity region. For this set-up, we identify the primary problem to be finding appropriate angle(s) of rotation between the alphabets such that the capacity region is maximally enlarged. It is shown that the angle of rotation which provides maximum enlargement of the capacity region also minimizes the union bound on the probability of error of the sum-alphabet and vice-verse. The optimum angle(s) of rotation varies with the SNR. Through simulations, optimal angle(s) of rotation that gives maximum enlargement of the capacity region of GMAC with some well known alphabets such as M-QAM and M-PSK for some M are presented for several values of SNR. It is shown that for large number of points in the alphabets, capacity gains due to rotations progressively reduce. As the number of points N tends to infinity, our results match the results in the literature wherein the capacity region of the Gaussian code alphabet doesnpsilat change with rotation for any SNR.
  • Keywords
    Gaussian channels; channel capacity; channel coding; error statistics; multi-access systems; multiuser channels; GMAC; Gaussian code alphabet; complex finite input alphabet; continuous output alphabet; error probability; finite signal-set capacity; two-user Gaussian multiple access channel; Additive noise; Capacity planning; Constellation diagram; Decoding; Failure analysis; H infinity control; Information analysis; Phase shift keying; Quadrature amplitude modulation; Signal analysis;
  • fLanguage
    English
  • Publisher
    ieee
  • Conference_Titel
    Information Theory, 2008. ISIT 2008. IEEE International Symposium on
  • Conference_Location
    Toronto, ON
  • Print_ISBN
    978-1-4244-2256-2
  • Electronic_ISBN
    978-1-4244-2257-9
  • Type

    conf

  • DOI
    10.1109/ISIT.2008.4595178
  • Filename
    4595178