Author Search Result

[Author] Hisao KOGA(4hit)

1-4hit
  • Trends and Technical Issues for High Speed LANs and Applications

    Kensaku KINOSHITA  Hisao KOGA  Hideo YAMAMOTO  Keizo SUGITA  Masaki AIDA  

     
    INVITED PAPER

      Vol:
    E79-B No:5
      Page(s):
    621-626

    This paper discusses research trends in high-speed LANs, which are leading the way to private networks. It also mentions issues that need to be solved to achieve high-performance seamless networks.

  • Joint Use of Adaptive Equalization and Cyclic Noise Cancellation for Band-Limited OQAM Based Multi-Carrier Transmission in Power-Line Communication Systems

    Hiromitsu KUNISHIMA  Hisao KOGA  Osamu MUTA  Yoshihiko AKAIWA  

     
    PAPER

      Vol:
    E91-A No:11
      Page(s):
    3112-3120

    Power-line communication (PLC) technique is one method to realize high-speed communications in a home network. In PLC channels, the transmission signal quality is degraded by colored non-Gaussian noise as well as frequency-selectivity of the channels. In this paper, we describe our investigation of the performance of a OQAM-MCT system in which a noise canceller is used jointly with a time-domain per-subcarrier adaptive equalizer. Furthermore, we propose a noise cancellation method designed for the OQAM-MCT system. The performance of the OQAM-MCT system is evaluated in PLC channels with measured impulse responses in the presence of measured noise. Computer simulation results show that the bit rate of the OQAM-MCT system is improved using both an adaptive equalizer and noise canceller, and that the OQAM-MCT system achieves better performance than an OFDM system with an insufficient length of the guard interval.

  • A Simple and Fast Converging Algorithm for MMSE Adaptive Array Antenna

    Hisao KOGA  Makoto TAROMARU  

     
    PAPER

      Vol:
    E83-B No:8
      Page(s):
    1671-1677

    This paper proposes a fast and simple adaptive algorithm for MMSE (Minimum Mean Square Error) adaptive array antenna or MMSE combining diversity. This algorithm can be implemented with as a small operation as LMS since it is based on VS-LMS (variable step size LMS) for which the step size is provided with a fixed profile. Computer simulation results show that the proposed algorithm has much better convergence behavior and BER performance than LMS.

  • A High-Speed Power-Line Communication System with Band-Limited OQAM Based Multi-Carrier Transmission

    Naohiro KAWABATA  Hisao KOGA  Osamu MUTA  Yoshihiko AKAIWA  

     
    PAPER-Transmission Systems and Transmission Equipment for Communications

      Vol:
    E92-B No:2
      Page(s):
    473-482

    As a method to realize a high-speed communication in the home network, the power-line communication (PLC) technique is known. A problem of PLC is that leakage radiation interferes with existing systems. When OFDM is used in a PLC system, the leakage radiation is not sufficiently reduced, even if the subcarriers corresponding to the frequency-band of the existing system are never used, because the signal is not strictly band-limited. To solve this problem, each subcarrier must be band-limited. In this paper, we apply the OQAM based multi-carrier transmission (OQAM-MCT) to a high-speed PLC system, where each subcarrier is individually band-limited. We also propose a pilot-symbol sequence suitable for frequency offset estimation, symbol-timing detection and channel estimation in the OQAM-MCT system. In this method, the pilot signal-sequence consists of a repeated series of the same data symbol. With this method, the pilot sequence approximately becomes equivalent to OFDM sequence and therefore existing pilot-assisted methods for OFDM are also applicable to OQAM-MCT system. Computer simulation results show that the OQAM-MCT system achieves both good transmission rate performance and low out-of-band radiation in PLC channels. It is also shown that the proposed pilot-sequence improves frequency offset estimation, symbol-timing detection and channel estimation performance as compared with the case of using pseudo-noise sequence.

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