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[Author] Shuzo KATO(35hit)

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  • Phase Ambiguity Resolver for PCM Sound Broadcasting Satellite Service with Low Power Consumption Viterbi Decoder Employing SST Scheme

    Kazuhiko SEKI  Shuji KUBOTA  Shuzo KATO  

     
    PAPER-Communication Systems and Transmission Equipment

      Vol:
    E78-B No:9
      Page(s):
    1269-1277

    This paper proposes a novel phase ambiguity resolver with combining a very low power Viterbi decoder employing a scarce state transition scheme to realize cost effective receivers for the PCM sound broadcasting satellite service. The theoretical analyses on phase decision performance show that the proposed resolver achieves the symbol-by-symbol phase detection and decides correctly phases of the demodulated data even if the bit error probability of 710-2. The resolver also reduces the phase decision time to below 1/1000 of that of the conventional resolver. Furthermore, experimental results of the power consumption estimate that the prototype Viterbi decoder consumes only 60mW at the data rate of 24.576Mbit/s.

  • DSD (Double Soft Decision) Concatenated Forward Error Correction Scheme

    Shunji HONDA  Shuji KUBOTA  Masahiro MORIKURA  Shuzo KATO  

     
    PAPER

      Vol:
    E75-B No:8
      Page(s):
    747-754

    The DSD (Double Soft Decision) concatenated forward error correction scheme is proposed to realize a higher-coding-gain forward error correction system with simple hardware. The novel scheme soft decision decodes inner codes as well as outer codes. In this scheme, likelihood information from an inner Viterbi decoder is used for the decoding of outer codes. Path memory circuit status 1,0 ratio is newly proposed as a measure of likelihood information and it is shown that this method is the most reliable even though it has the simplest hardware among the alternative likelihood information extracting methods. Computer simulation clarifies that the proposed DSD scheme improves Pe performance to one-third that of the conventional hard decision outer decoding.

  • FOREWORD

    Masao NAKAGAWA  Ryuji KOHNO  Shin'ichi TACHIKAWA  Taka-aki HASEGAWA  Tetsushi IKEGAMI  Eisuke FUKUDA  Yukitsuna FURUYA  Shuzo KATO  Masashi SATOH  Hisao TACHIKA  Yoshihiro TANADA  Kazuo TSUBOUCHI  

     
    FOREWORD

      Vol:
    E76-B No:8
      Page(s):
    801-803
  • Pragmatic Performance of TC8PSK in Rician Fading Channels

    Tomohiro DOHI  Tsutomu SAKAI  Masahiro MORIKURA  Shuzo KATO  

     
    PAPER

      Vol:
    E74-B No:8
      Page(s):
    2230-2236

    This paper analyzes performances of trellis coded(TC) 8PSK modulation in Rician fading channels to optimize parameters of Viterbi decoders. The computer simulation clarifies that when carrier power to multipath power ratio (C/M) equals 10dB, Pe performance with reasonable length interleaving depends on free Euclidean distance (dfree) but not on effective code length(ECL) in a practical range of bit error probability (Pe= 10-3-10-4). In the case of C/M=5dB, the effect of ECL appears in the range of bit energy to noise power density ratio (Eb/No)C/M (=5dB). Therefore, for domestic mobile satellite communication systems for non-high latitude countries, only dfree must be considered for TC8PSK Viterbi decoder design. Moreover, to improve Pe performance in slow fading environment, pre-Viterbi-decoding maximal ratio combining is proposed. The proposed diversity scheme improves required Eb/No to achieve Pe=10-4 by more than 6dB compared with no interleaving and more than 2.5 dB compared with interleaving.

  • A Simple Exact Error Rate Analysis for DS-CDMA with Arbitrary Pulse Shape in Flat Nakagami Fading

    Mohammad Azizur RAHMAN  Shigenobu SASAKI  Hisakazu KIKUCHI  Hiroshi HARADA  Shuzo KATO  

     
    LETTER

      Vol:
    E92-B No:5
      Page(s):
    1808-1812

    A simple exact error rate analysis is presented for random binary direct sequence code division multiple access (DS-CDMA) considering a general pulse shape and flat Nakagami fading channel. First of all, a simple model is developed for the multiple access interference (MAI). Based on this, a simple exact expression of the characteristic function (CF) of MAI is developed in a straight forward manner. Finally, an exact expression of error rate is obtained following the CF method of error rate analysis. The exact error rate so obtained can be much easily evaluated as compared to the only reliable approximate error rate expression currently available, which is based on the Improved Gaussian Approximation (IGA).

  • FOREWORD

    Yoshihiko AKAIWA  Shuzo KATO  Masao NAKAGAWA  Ryuji KOHNO  Shinsuke HARA  Nobuo NAKAJIMA  Yukitsuna FURUYA  Kouichi HONMA  Eisuke FUKUDA  

     
    FOREWORD

      Vol:
    E77-B No:7
      Page(s):
    853-854
  • Ultra-High-Speed and Universal-Coding-Rate Viterbi Decoder VLSIC--SNUFEC VLSI--

    Katsuhiko KAWAZOE  Shunji HONDA  Shuji KUBOTA  Shuzo KATO  

     
    PAPER-Multimedia System LSIs

      Vol:
    E77-C No:12
      Page(s):
    1888-1894

    An Ultra-high-speed (higher than 60 MHz) Viterbi decoder VLSIC with coding rates from one-half to fifteen-sixteenth and a constraint length of seven for forward error correction (FEC) has been developed using 0.8-µm semicustom CMOS LSIC technology and a newly developed high-speed ACS circuit. To reduce power consumption of the one-chip Viterbi decoder, a universal-coding-rate scarce-state-transition (SST) Viterbi decoding scheme and low-power-consumption burst-mode-selection (BMS) path memory have been proposed and employed to the developed VLSIC. In addition, a new maximum-likelihood-decision (MLD) circuit for the SST Viterbi decoder has been developed. The total power consumption of the developed chip is reduced to 75% of the conventional one and the developed Viterbi decodar VLSIC achieves a maximum operation speed of 60 MHz. It achieves near theoretical net coding-gain performance for various coding rates.

  • A Feedback-Loop Type Transmission Power Control for TDMA Satellite Communication Systems

    Hiroshi KAZAMA  Takeo ATSUGI  Shuzo KATO  

     
    PAPER

      Vol:
    E76-B No:5
      Page(s):
    529-535

    This paper proposes a feedback-loop type transmission power control (TPC) scheme coupled with first and second order prediction methods and analyzes the optimum control period and residual control error. In order to minimize residual control error, the three main factors contributing to residual control error are analyzed. First, to detect accurately up-link rain attenuation, a channel quality detection method is proposed and analyzed experimentally for puseudo-error detection. Second, rain attenuation rates in Ka band are measured and analyzed statistically. Finally, the optimum control period of the proposed TPC scheme is analyzed. The simulation results on the prototype TPC system show a maximum of 4.5 dB residual control error is achievable with an optimum control period of about 1 second to 1.5 seconds.

  • Semi-Autonomous Synchronization among Base Stations for TDMA-TDD Communication Systems

    Hiroshi KAZAMA  Shigeki NITTA  Masahiro MORIKURA  Shuzo KATO  

     
    PAPER

      Vol:
    E77-B No:7
      Page(s):
    862-867

    This paper proposes a semi-autonomous frame synchronization scheme for a TDMA (Time Division Multiple Access)-TDD (Time Division Duplexing) personal communication system to realize accurate frame synchronization in a simple manner. The proposed scheme selects specific adjacent base stations by the station indicator (SID), carries out high resolution frame timing control, and compensates the propagation delay between base stations by using geographical data. This autonomously synchronizes all base stations to each other. Computer simulation and analysis results confirm the accurate and stable TDMA frame synchronization of all base stations even in fading environments.

  • A Group Demodulator Employing Multi-Symbol Chirp Fourier Transform

    Kiyoshi KOBAYASHI  Tomoaki KUMAGAI  Shuzo KATO  

     
    PAPER

      Vol:
    E77-B No:7
      Page(s):
    905-910

    This paper proposes a group demodulator that employs multi-symbol chirp Fourier transform to demodulate pulse shaped and time asynchronous signals without degradation; this is not possible with conventional group demodulators based on chirp Fourier transform. Computer simulation results show that the bit error rate degradation of the proposed group demodulator at BER=10-3 is less than 0.3dB even when a root Nyquist (α=0.5) filter is used as the transmission pulse shaping filter and the symbol timing offset between the desired channel and the chirp sweep is half the symbol period.

  • A New Fully-Digitalized π/4-Shift QPSK Modulator for Personal Communication Terminals

    Tetsu SAKATA  Kazuhiko SEKI  Shuji KUBOTA  Shuzo KATO  

     
    PAPER

      Vol:
    E77-B No:7
      Page(s):
    921-926

    This paper proposes a new fully-digitalized π/4-shift QPSK modulator consisting of a digital pulse shaping filter and a baseband quadrature modulator. By employing a novel digital filter configuration, the required filter memory is reduced to just 6.25% of the conventional one. Moreover, since the proposed baseband modulation scheme does not employ analog mixers or an analog 90 divider, a very accurate, high-stable and compact modulator is realized. It is shown that the proposed scheme achieves excellent low power consumption characteristics and is more suitable for digital LSIC implementation of personal communication terminals than a direct RF modulation scheme and an analog IF modulation scheme.

  • A Digitalized Quadrature Modulator for Fast Frequency Hopping

    Kazuhiko SEKI  Tetsu SAKATA  Shuzo KATO  

     
    PAPER-Radio Communication

      Vol:
    E77-B No:5
      Page(s):
    656-662

    This paper proposes a digitalized quadrature modulator for burst-by-burst carrier frequency hopping in TDMA-TDD systems. It employs digital frequency synthesis and a multiplexing modulation scheme to give the frequency offset to the modulated IF signal. Moreover, to reduce the frequency settling time of the RF synthesizer below the guard time duration, a phase and frequency preset (PFP) PLL synthesizer is employed. By employing the digital modulation scheme, the proposed modulator needs only one D/A converter, as a result, the complexity of adjusting the DC offset and amplitude between analog signals of the in-phase and the quadrature phase is eliminated. The performance of the proposed modulator is analyzed theoretically and simulated by computers. Theoretical analyses show that the frequency settling time with 15MHz hopping width in the 1900MHz band is reduced by more than 75% from that of the conventional synthesizer. The settling time is less than 40µs which is shorter than the typical guard time of the burst signal format. The analyses also show that the power consumption of the proposed modulator is lower than that of the conventional modulator employing a full band digital frequency converter. Furthermore, the computer simulation confirms that the power spectra and the constellations of the proposed modulator for the coherent and the π/4-shift QPSK modulation schemes can be successfully generated.

  • Reverse Modulation Carrier Recovery for Offset QPSK Burst Signals

    Masahiro UMEHIRA  Shuzo KATO  

     
    PAPER-Satellite Communication

      Vol:
    E78-B No:4
      Page(s):
    616-624

    This paper describes reverse modulation carrier recovery with a tank-limiter for Offset QPSK (OQPSK) burst signals. Acquisition performance is discussed taking into account hardware implementation errors in the carrier recovery circuit. The results indicate hardware implementation errors cause a significant recovered carrier phase error during BTR (Bit Timing Recovery) of OQPSK burst signals. A phase error reduction technique by modifying the BTR code for OQPSK burst signals is proposed to improve the acquisition performance. Computer simulation and hardware experiments confirmed its improvement. The performance of a prototype OQPSK burst demodulator using the proposed carrier recovery scheme is also presented.

  • A Wireless Multimedia Network on a Time Division Duplex CDMA/TDMA

    Kazuhiko SEKI  Yukitoshi SANADA  Qiang WANG  Shuzo KATO  Vijay K. BHARGAVA  

     
    PAPER

      Vol:
    E78-B No:7
      Page(s):
    1002-1015

    A novel wireless multimedia network employing a time division duplex CDMA/TDMA scheme is proposed. The network connects mobile multimedia terminals to an ATM based LAN through a radio central unit, and provides both uplink and downlink with unbalanced data rates in the same frequency band. The uplink (from a mobile terminal to a radio central unit) employs a CDMA scheme to transmit low speed human interface signals (-2.4kbit/s), and the downlink employs a TDMA scheme to transmit high speed video signals (-24Mbit/s). The data rates of both links are independent from that of the LAN. The uplink also employs a RAKE receiver and a forward error correction (FEC) scheme using a BCH code in order to reduce bit errors caused by multipath fading. To mitigate channel degradation caused by the near-far problem and multipath fading, a transmission power control (TPC) method for both links and a channel equalizer (CEQ) for the downlink are proposed. The control signals for the TPC and the CEQ are estimated from the impulse response of the channel which is extracted as the output of the matched filters in the CDMA receiver. Theoretical analyses are performed to evaluate the bit error rate (BER) characteristics of the proposed network. The BER performance is derived for a general multipath fading condition modeled by the Nakagami-m distribution and a typical delay profile. Numerical calculation using recent propagation measurements shows the bit error rates of both uplink and downlink to be less than 10-6 when both of the TPC and the CEQ are employed if there are some specular components in the received signals. This excellent performance can cut a way to realize a mobile multimedia terminal for customer premises. Furthermore, the configuration of the mobile terminal is quite simple even if the high speed TDMA signals are received over a multipath fading channel.

  • A Transmission Power Control Technique on a TDD-CDMA/TDMA System for Wireless Multimedia Networks

    Yukitoshi SANADA  Kazuhiko SEKI  Qiang WANG  Shuzo KATO  Masao NAKAGAWA  Vijay K. BHARGAVA  

     
    PAPER

      Vol:
    E78-B No:8
      Page(s):
    1095-1104

    A transmission power control technique on a TDD-CDMA/TDMA system for wireless multimedia networks is proposed. The assumed network connects mobile terminals to a node of an ATM based high speed LAN through a radio central unit. Only human interface facilities are implemented into the terminal so that users access integrated services through the node of the network. The uplink (from a mobile terminal to a radio central unit) employs a CDMA scheme to transmit human interface signals (2.4kbit/s) and the downlink employs a TDMA scheme to transmit display interface signals (24 Mbit/s). Both the CDMA and the TDMA signals occupy the same frequency band. To mitigate bit error rate degradation due to the fading, the radio central unit estimates the impulse response of the channel from the received CDMA signals and controls the transmission power of the TDMA signals to compensate the fading attenuation. The bit error rate performance of the downlink with the proposed transmission power control is theoretically analyzed under several fading conditions. Numerical results using the Nakagami-m fading model and recent propagation measurements show that the proposed power control technique compensates the fading attenuation and improves the bit error rate performances. The bit error rate of the downlink is reduced from 10-2 to 10-5 at the symbol SNR of 20dB by employing the proposed transmission power control, which is less sensitive to the severity of the fading. Furthermore, the proposed transmission power control is implemented without increasing the terminal complexity because all the processing on the power control of the downlink is carried out only in the radio central unit.

  • Throughput Comparison of Hybrid Slotted CSMA/CA-TDMA and Slotted CSMA/CA in IEEE 802.15.3c WPAN

    Chang-Woo PYO  Hiroshi HARADA  Shuzo KATO  

     
    PAPER-Mobile Information Network and Personal Communications

      Vol:
    E93-A No:8
      Page(s):
    1531-1543

    In this study, we construct an analytical model to investigate the system throughput of 802.15.3c WPAN by examining hybrid slotted CSMA/CA-TDMA and slotted CSMA/CA multiple access methods. Our analysis clearly shows the differences between the system throughputs of both multiple access methods. The obtained results show that the hybrid slotted CSMA/CA-TDMA can achieve a considerably higher system throughput compared to the slotted CSMA/CA; the difference between the two access methods is especially pronounced as the increase in the number of devices contending for the network increase. The system throughput comparisons have established why the hybrid slotted CSMA/CA-TDMA is preferred over the slotted CSMA/CA for high-speed wireless communications of the 802.15.3c WPAN.

  • A Self Frequency Preset PLL Synthesizer

    Kazuhiko SEKI  Shuzo KATO  

     
    PAPER

      Vol:
    E76-B No:5
      Page(s):
    473-479

    This paper proposes a self frequency preset (SFP) PLL synthesizer to realize a simple frequency preset PLL synthesizer with temperature-resistant and shorter frequency settling time than the conventional temperature un-compensated phase and frequency preset (PFP) PLL synthesizer. Since the proposed synthesizer employs a simple frequency locked loop (FLL) circuit to preset the output frequency at each frequency hopping period, the synthesizer eliminates the need to store f-V characteristic of the VCO in ROM. The frequency settling time of the proposed synthesizer is theoretically and experimentally analyzed. The theoretical analysis using the realistic f-V characteristic of a IF band VCO show that the frequency settling time of the proposed synthesizer is 130µs shorter than that of the conventional PFP PLL synthesizer at 40MHz hopping in the 200MHz band for all temperatures. Furthermore, the experimental results confirm that the frequency acquisition time of a prototype FLL circuit is accordant with the calculated results. Thus, the proposed SFP PLL synthesizer can achieve faster frequency settling than the conventional PFP PLL synthesizer for all temperatures and its simple configuration allows to be easily implemented with existing CMOS ASIC devices.

  • Numerical Throughput Analysis on Channel Interference in IEEE 802.15.3c WPAN Based on Hybrid Multiple Access of CSMA/CA-TDMA

    Chang-Woo PYO  Hiroshi HARADA  Shuzo KATO  

     
    PAPER-Wireless Communication Technologies

      Vol:
    E93-B No:6
      Page(s):
    1502-1514

    This study focuses on system throughput by taking into account the channel interference in IEEE 802.15.3c WPAN, which is based on the hybrid multiple access of CSMA/CA and TDMA, namely CSMA/CA-TDMA. To study the system throughput, we construct a novel analytical model by taking into consideration the channel interference caused by the hidden networks in CSMA/CA-TDMA. The obtained results show that the system throughput achieved by TDMA is highly affected by frame transmission in CSMA/CA. Furthermore, we show that channel interference, which causes a degradation in the system throughput, is a very significant problem in the IEEE 802.15.3c WPAN.

  • A Suitable Combination of Modulation and FEC Schemes for Satellite Digital Video Communication Networks

    Shuji KUBOTA  Masahiro MORIKURA  Kiyoshi ENOMOTO  Shuzo KATO  

     
    PAPER

      Vol:
    E76-B No:5
      Page(s):
    497-507

    This paper proposes a suitable combination of the digital modulation schemes and the coding-rate of forward error correction (FEC) schemes for satellite digital video communication networks. The comparative study is carried out by computer simulation considering non-linearly amplified, narrow bandwidth satellite channels with adjacent channel interference signals. The proposed system employs an offset QPSK modulation scheme supported by the coding-rate of 7/8 convolutional encoding and Viterbi decoding to realize high-quality and compact spectrum characteristics in non-linear channels. By employing a 32Mbps DPCM video codec, the developed prototype system achieves a post demodulated S/N ratio of higher than 52dB. Moreover, it achieves high protection ratio against co-channel interference than conventional analog FM systems. The optimized digital video transmission system makes it possible to transmit high-quality NTSC video signals over non-linearly amplified narrow bandwidth satellite channels, for example 27MHz or 36MHz bandwidth transponders, with high-security digital encryption.

  • On Communication and Interference Range of Multi-Gbps Millimeter-Wave WPAN System

    Chin-Sean SUM  Zhou LAN  Junyi WANG  Hiroshi HARADA  Shuzo KATO  

     
    LETTER

      Vol:
    E93-A No:12
      Page(s):
    2700-2703

    This paper investigates the communication range and interference range of millimeter-wave wireless personal area networks (WPAN) based on realistic system design. Firstly, the effective communication range of the millimeter-wave networks are calculated based on realistic physical (PHY) layer design and 60 GHz channel obtained from actual measurements. Secondly, an interference model is developed to facilitate the analysis of the impact of interferer-to-victim range on the victim link performance. It is found that system with BPSK modulation is able to support use cases with higher number of portable devices within a 3 m range, while system with 16QAM modulation is more suitable for fixed high speed data streaming devices within a shorter range of 1 m. Also, the interferer-to-victim range that causes no interference in all conditions is found to be approximately 40 m, while a 25 m range causes a typical bit error rate (BER) degradation of 1-digit (e.g. BER = 10-6 to 10-5).

1-20hit(35hit)