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[Keyword] K factor(13hit)

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  • Low-Peak-Factor Pseudo-White-Noise Sequence Set with Optimal Zero-Correlation Zone

    Takafumi HAYASHI  Takao MAEDA  Shigeru KANEMOTO  Shinya MATSUFUJI  

     
    PAPER-Communication Theory and Signals

      Vol:
    E97-A No:12
      Page(s):
    2343-2351

    The present paper introduces a novel method for the construction of sequences that have a zero-correlation zone. For the proposed sequence set, both the cross-correlation function and the side lobe of the autocorrelation function are zero for phase shifts within the zero-correlation zone. The proposed scheme can generate a set of sequences, each of length 16n2, from an arbitrary Hadamard matrix of order n and a set of 4n trigonometric function sequences of length 2n. The proposed construction can generate an optimal sequence set that satisfies, for a given zero-correlation zone and sequence period, the theoretical bound on the number of members. The peak factor of the proposed sequence set is equal to √2.

  • On Renyi Entropies and Their Applications to Guessing Attacks in Cryptography

    Serdar BOZTAS  

     
    INVITED PAPER

      Vol:
    E97-A No:12
      Page(s):
    2542-2548

    We consider single and multiple attacker scenarios in guessing and obtain bounds on various success parameters in terms of Renyi entropies. We also obtain a new derivation of the union bound.

  • Investigation of Wall Effect on Indoor MIMO Channel Capacity by Using MoM-FDTD Hybrid Technique

    Xiao Peng YANG  Qiang CHEN  Kunio SAWAYA  

     
    PAPER-Antennas and Propagation

      Vol:
    E90-B No:5
      Page(s):
    1201-1207

    A numerical hybrid method for analyzing the wireless channel of Multiple-Input Multiple-Output (MIMO) communication system is proposed by combining of the method of moments (MoM) and the finite difference time domain (FDTD) method. The proposed method is capable of investigating a more practical MIMO wireless channel than the conventional methods, and CPU time is much less than that of the FDTD method in analysis of spatial statistical characteristics of received signals. Based on the channel transfer matrix obtained by the proposed method, the wall effect on indoor MIMO channel capacity are investigated with consideration of received power, Ricean K-factor and effective degrees of freedom (EDOF) of multipaths by changing the wall locations and material.

  • Numerical Analysis of Wall Material Effect on Indoor MIMO Channel Capacity

    Xiao Peng YANG  Qiang CHEN  Kunio SAWAYA  

     
    LETTER-Wireless Communication Technologies

      Vol:
    E89-B No:10
      Page(s):
    2949-2951

    Effects of wall material on the channel capacity of an indoor multiple input multiple output (MIMO) system are investigated using a hybrid technique of the method of moments (MoM) and the finite difference time domain (FDTD) method with consideration of the Ricean K factor and the effective degrees of freedom (EDOF) of multiple paths.

  • Channel Characterization and Performance Evaluation of Mobile Communication Employing Stratospheric Platforms

    ISKANDAR  Shigeru SHIMAMOTO  

     
    PAPER-Integrated Systems for Communications

      Vol:
    E89-B No:3
      Page(s):
    937-944

    Stratospheric platforms have been recently proposed as a new wireless infrastructure for realizing the next generation of communication systems. To provide high quality services, an investigation of the wireless stratospheric platform channel is essential. This paper proposes a definition and describes an analysis of the wireless channel for the link between stratospheric platforms and terrestrial mobile users based on an experiment in a semi-urban environment. Narrowband channel characteristics are presented in terms of Ricean factor (K factor) and local mean received power over a wide range of elevation angles ranging from 10to 90. Finally, we evaluated average bit error probability based on the proposed channel model to examine the channel performance. For the environment in which the measurements were conducted, we find that elevation angles greater than 40yield better performance.

  • A Class of Two-Dimensional Signal Having a Flat Power Spectrum and a Low Peak Factor

    Takafumi HAYASHI  

     
    PAPER-Digital Signal Processing

      Vol:
    E89-A No:2
      Page(s):
    494-502

    This paper presents a new generative approach for generating two-dimensional signals having both a low peak factor (crest factor) and a flat power spectrum. The flat power spectrum provides zero auto-correlation, except at the zero shift. The proposed method is a generative scheme, not a search method, and produces a two-dimensional signal of size 2(2n1+1)2(2n2+1)2 for an arbitrary pair of positive integers n1 and n2 without any computer search. The peak factor of the proposed signal is equal to the peak factor of a single trigonometric function.

  • MIMO Channel Capacity in an Indoor Line-Of-Sight (LOS) Environment

    Kei SAKAGUCHI  Hai-Yeow-Eugene CHUA  Kiyomichi ARAKI  

     
    PAPER-Antennas and Propagation

      Vol:
    E88-B No:7
      Page(s):
    3010-3019

    The effect of antenna correlation on the Multiple-Input Multiple-Output (MIMO) channel capacity in the real propagation environment is a topic of interest. In this paper, we present the results of a measurement campaign conducted in an indoor Line-Of-Sight (LOS) office environment. Channel responses were taken with varying distance in a static indoor environment. Results showed measurements with high received Signal-to-Noise Ratio (SNR) and a high level of correlation among the antenna elements. Further analysis of the results showed that MIMO systems can achieve sufficient channel capacity compared to the Single-Input Single-Output (SISO) system, despite high antenna correlation. Theoretical analysis reveals that when the SNR is sufficiently high, the loss in channel capacity due to high antenna correlation is relatively low. Therefore it is shown that in the indoor LOS environment, MIMO systems can be sufficiently efficient because the MIMO channel is more robust to antenna correlation when the SNR is high.

  • A Construction of Low-Peak-Factor Pseudo White Noise

    Takafumi HAYASHI  

     
    LETTER-Digital Signal Processing

      Vol:
    E87-A No:12
      Page(s):
    3429-3432

    A new construction of sequences having both a low peak factor (crest factor) and flat power spectrum is proposed. The flat power spectrum provides zero auto-correlation except for the case of zero shift. The proposed construction is based on a systematic scheme that does not require a search, and affords sequences of length 4n(2n+1) for an arbitrary integer n.

  • A Class of Low-Peak-Factor Pseudo White Noise Sequence

    Takafumi HAYASHI  

     
    PAPER-Theory of Signals

      Vol:
    E87-A No:8
      Page(s):
    1850-1854

    The present report introduces a new construction of sequences having both a low peak factor (crest factor) and a flat power spectrum. Since the proposed sequence has a flat power spectrum, its auto-correlation is zero except for the zero shift. The proposed construction uses a systematic scheme and no search method. The length of the proposed sequence is (2n+1)(4n+1) for an arbitrary integer n. The sequence construction presented herein provides a means for generating various sequences at the lengths required for such applications as system measurement (which requires uncorrelated test signals), and audio signal processing for sound production (for enhancing spatial imagery in stereo signals synthesized from mono sources).

  • Enhancing Software Project Simulator toward Risk Prediction with Cost Estimation Capability

    Osamu MIZUNO  Daisuke SHIMODA  Tohru KIKUNO  Yasunari TAKAGI  

     
    INVITED PAPER

      Vol:
    E84-A No:11
      Page(s):
    2812-2821

    This paper presents an enhancement of a software project simulator to perform risk prediction with cost estimation capability. So far, we have developed a software project simulator to simulate software development projects. In this simulator, a development process was described using Petri net model, and it was applied to some actual project data in a certain company successfully. On the other hand, we have also presented a risk predicting system to find "risky" projects by statistical analysis on risk questionnaire for project managers. In this approach, only the probability to be risky was calculated for a project. Thus, the managers in the company wanted to know a concrete proof why a software project becomes risky. In this paper, to present the proof that a software project becomes risky, we try to enhance the previous project simulator so that the simulator can deal with risk factors. To consider the risk factors, we modify the previous simulator so that both the fluctuation of skill level and the deadline pressure can be represented by the parameters in the simulator. By using a case study, we confirm that the enhanced simulator can estimate the development cost under some typical risks. As a result, we can expect that the simulator shows how much the development cost of a risky project exceeds an estimate.

  • The Synthesis of Low-Peak Orthogonal-Base-Set Sequences Using Trigonometric Function Aliasing

    Takafumi HAYASHI  William L. MARTENS  

     
    PAPER-Theory of Signals

      Vol:
    E83-A No:8
      Page(s):
    1513-1522

    This paper presents a new technique for the synthesis of orthogonal-base-set sequences suitable for applications requiring sets of uncorrelated pseudo-white-noise sources. The synthesized sequences (vectors) are orthogonal to each other, and each sequence also has a flat power spectrum and low peak factor. In order to construct the orthogonal-base-set sequences, the new application of ta-sequence (trigonometric function aliasing sequence) introduced in this paper uses Latin-squares and Walsh-Hadamard sequences. The ta-sequence itself is a very new concept, and the method presented here provides the means for generating various orthogonal-base-set sequences at sizes required for such applications as system measurement (needing uncorrelated test signals), pseudo noise synthesis for spread spectrum communication, and audio signal processing (needing synthesis of stereo or multichannel signals from mono sources).

  • The Synthesis of Low-Peak Cross-Correlation Sequences Using Trigonometric Function Aliasing

    Takafumi HAYASHI  William L. MARTENS  

     
    PAPER

      Vol:
    E82-A No:8
      Page(s):
    1402-1411

    This paper presents a new technique for the synthesis of sets of low-peak sequences exhibiting low peak cross correlation. The sequences also have flat power spectra and are suitable for many applications requiring such sets of uncorrelated pseudo-white-noise sources. This is a new application of the ta-sequence (trigonometric function aliasing sequence), which itself is a very new technique that uses the well-known "Reed-Solomon code" or "One coincident code" to generate these sets of low-peak-factor pseudo-white-noise exhibiting low peak cross correlation. The ta sequence method presented here provides the means for generating various sequences at the lengths required for such applications as system measurement (needing uncorrelated test signals), pseudo-noise synthesis (for spread spectrum communication), and audio signal processing for sound production (for enhancing spatial imagery in stereo signals synthesized from mono sources) and sound reproduction (for controlling unwanted interference effects in multiple-loudspeaker arrays).

  • Synthesis of Low Peak-to-Peak Waveforms with Flat Spectra

    Takafumi HAYASHI  

     
    PAPER-Circuit Theory

      Vol:
    E81-A No:9
      Page(s):
    1902-1908

    This paper presents both new analytical and new numerical solutions to the problem of generating waveforms exhibiting a low peak-to-peak factor. One important application of these results is in the generation of pseudo-white noise signals that are commonly uses in multi-frequency measurements. These measurements often require maximum signal-to-noise ratio while maintaining the lowest peak-to-peak excursion. The new synthesis scheme introduced in this paper uses the Discrete Fourier Transform (DFT) to generate pseudo-white noise sequence that theoretically has a minimized peak-to-peak factor, Fp-p. Unlike theoretical works in the literature, the method presented here is based in purely discrete mathematics, and hence is directly applicable to the digital synthesis of signals. With this method the shape of the signal can be controlled with about N parameters given N harmonic components. A different permutation of the same set of offset phases of the "source harmonics" creates an entirely different sequence.