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[Author] Hyunduk KANG(6hit)

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  • Robust Bandpass Sampling for Frequency Instability

    Miheung CHOE  Hyunduk KANG  Kiseon KIM  

     
    LETTER-Wireless Communication Technology

      Vol:
    E86-B No:5
      Page(s):
    1685-1688

    To sample a band-limited analog signal directly from the high frequency down to the baseband for the digital signal processing with significantly reduced computation, several concepts of the bandpass sampling are introduced. In this paper, a robust bandpass sampling scheme when there exist frequency deviations due to the channel effect and hardware instability is proposed for practical use, and the effects of the frequency deviations are discussed to select a proper sampling frequency.

  • Performance Analysis of CDMA Mobile System Employing LPA Smart Antenna

    Seokjin SUNG  Hyunduk KANG  Vladimir KATKOVNIK  Kiseon KIM  

     
    LETTER-Antennas and Propagation

      Vol:
    E90-B No:1
      Page(s):
    184-188

    We investigate the performance of a code division multiple access (CDMA) system employing local polynomial approximation (LPA) smart antenna under moving user scenario. A closed form for average signal to interference plus noise power ratio (SINR) is derived, where the angular velocity of a target user is invariant during an observation interval. This SINR is independent of user velocity, and consequently it induces the independence of bit error rate (BER) with respect to the user velocity, while the use of conventional smart antenna shows significant degradation in the system performance by moving user.

  • Joint Diversity for the Block Diagonalization-Precoded Spatial Multiplexing System with Multiple Users

    Donghun LEE  Hyunduk KANG  Byungjang JEONG  

     
    PAPER-Transmission Systems and Transmission Equipment for Communications

      Vol:
    E95-B No:4
      Page(s):
    1300-1306

    In this paper, we propose a joint diversity algorithm for error-rate minimization in multi-user spatial multiplexing (SM) systems with block diagonalization (BD)-precoding. The proposed algorithm adapts or selects the user set, transmit antenna subset, and the number of streams by an exhaustive search over the available resources. The proposed algorithm makes use of the multi-user diversity (MUD) and the spatial diversity gains as well as the array gain through selecting the best set. Exhaustive search, however, imposes a heavy burden in terms of computational complexity which exponentially increases with the size of the total number of users, streams, and transmit antennas. For complexity reduction, we propose two suboptimal algorithms which reduce the search space by first selecting the best user or by both selecting the best user and fixing the number of streams. Simulation results show that the proposed algorithms improve error probability over the conventional algorithm due to their diversity improvement and the signal-to-noise ratio (SNR) gains over the conventional algorithm. We also show that the suboptimal algorithms significantly reduce the computational complexity over exhaustive search with low-SNR loss.

  • Performance of Cellular CDMA Systems Using SBF and TBF Array Antennas under Multi-Cell Environment

    Hyunduk KANG  Insoo KOO  Vladimir KATKOVNIK  Kiseon KIM  

     
    LETTER-Spread Spectrum Technologies and Applications

      Vol:
    E87-A No:12
      Page(s):
    3447-3451

    In cellular systems, a code division multiple access (CDMA) technology with array antennas can significantly reduce interferences by taking advantage of the combination of spreading spectrum and spatial filtering. We investigate performance of cellular CDMA systems through adopting two types of array antennas, switched beam forming (SBF) and tracking beam forming (TBF) in the base station. Through Monte-Carlo simulations, we evaluate average bit-error-rate (BER) and outage probability of the systems under log-normal shadowing channels with multi-cell environment. When we consider 2 beams and 4 beams per sector for the SBF method, it is observed that the TBF method gives at least 10% and 30% capacity improvement over the SBF method in aspects of 10-3 BER and 1% outage probability, respectively.

  • Performance Analysis of Asynchronous FFH-MA Systems with a Linear-Combining Receiver in Rayleigh Fading

    Jeungmin JOO  Hyunduk KANG  Kanghee KIM  Kiseon KIM  

     
    LETTER-Wireless Communication Technologies

      Vol:
    E88-B No:8
      Page(s):
    3475-3479

    The performance of asynchronous fast frequency hopping-multiple access (AFFH-MA) systems with multiple hops per bit is investigated with a linear-combining receiver in Rayleigh fading. We present an accurate approximation method for evaluating the error probability by using the characteristic function, Taylor series, and Gauss-Chebyshev quadrature rule. We will show that the proposed method provides an accurate approximation, compared with a simple Gaussian approximation. The validity of proposed analytic works is verified through Monte Carlo simulations.

  • Effects of Frequency and Timing Offsets on the FFH-MA System Over a Rician Fading Channel

    Jeungmin JOO  Kanghee KIM  Hyunduk KANG  Kiseon KIM  

     
    LETTER-Wireless Communication Technologies

      Vol:
    E88-B No:4
      Page(s):
    1714-1717

    The bit error rate (BER) degradations of fast frequency hopping multiple access (FFH-MA) systems due to the frequency and timing offsets are investigated over a Rician fading channel. It is shown that as the received average SNR increases, the BER is affected much larger by frequency and timing offsets. When the frequency offset or the timing offset exists alone, the BER of the FFH-MA system is degraded much more due to the timing offset than due to the frequency offset. The BER degradation due to both the frequency offset and the timing offset is larger than the sum of the degradations due to each offset.