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[Author] Tsuyoshi IDE(8hit)

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  • New Lightning-Surge Test Method for Subscriber Telecommunication Equipment Considering Nearby Lightning Return Strokes

    Hiroshi YAMANE  Masaji SATO  Tsuyoshi IDEGUCHI  Masamitsu TOKUDA  

     
    PAPER

      Vol:
    E78-B No:2
      Page(s):
    193-198

    It has become very important to study the lightning surges that were induced in subscriber telecommunication equipment because of the increase of susceptible circuits to the over voltage. The test generator is desire to be developed evaluating the resistibility of equipments against lightning surges. This paper proposes a new lightning-test method for subscriber telecommunication equipment. The waveform of the test generator simulates that of the induced lightning surge voltage caused by a nearby return stroke. The output impedance of the surge generator is determined to match the common-mode impedance of telecommunication lines. The damaged condition of circuit parts and the trouble occurrence rate estimated by using this method agree well with actual observations.

  • Balance-Unbalance Conversion Characteristics of Untwisted Unbalanced Metallic Pair Lines and Their Application to a Method for Estimating Equivalent Ground Plane

    Tsuyoshi IDEGUCHI  Hiroaki KOGA  Yoshifumi SHIMOSHIO  

     
    PAPER-EMC Evaluation

      Vol:
    E83-B No:3
      Page(s):
    480-488

    Metallic pair lines transmitting high-frequency information signals above several tens MHz are often used without being twisted, as flat floor cable installed in buildings, ribbon-type cables installed in computer equipment, and traces in printed circuit boards. However, the conversion characteristics of untwisted unbalanced metallic pair lines connecting unbalanced circuits have not been investigated over a wide range of frequencies in the MHz region. First, we developed a method to estimate effective power conversion factors using a cascade connection of F matrices, where the unbalance in impedance and admittance of each pair line is distributed uniformly along the line. As a result some useful information was obtained about the balance-unbalance conversion characteristics of the effective power which can be used to suppress EMI phenomena in wiring, especially over several decades of high frequencies. Next, we attempted to apply the conversion characteristics of untwisted unbalanced pair lines obtained at frequencies below several MHz to techniques for searching for the return circuits of conductors installed in buildings. It was clarified experimentaly that the depth of the equivalent ground plane can be estimated by comparing the measured conversion values of TV feeder lines installed at the place being tested with reference values measured in advance on a copper plate .

  • Analysis of a CMC (Common Mode Choke) Insertion Loss and Common Mode Current Characteristics in a Balanced Transmission Line with a CMC Inserted

    Osamu MAKINO  Yoshifumi SHIMOSHIO  Hiroaki KOGA  Masamitsu TOKUDA  Tsuyoshi IDEGUCHI  

     
    PAPER-Electromagnetic Compatibility(EMC)

      Vol:
    E86-B No:7
      Page(s):
    2162-2170

    For common-mode noise current reduction, a CMC (Common Mode Choke) is widely used in signal transmission line circuits consisting of a ground and two conductors (a balanced transmission line). However, a common-mode noise current reduction characteristic is not clearly analyzed yet in the case that a CMC is inserted in a balanced transmission line. In this paper we propose the calculation method of CMC insertion losses and derive an equation to analyze the common-mode current characteristics of a balanced transmission line with a CMC inserted. The analyzed frequency range is from 100 kHz to 100 MHz. We conclude that in the frequency range up to 30 MHz: (1) the proposed insertion loss calculation method is useful for analyzing CMC insertion losses in differential-mode and in common-mode; (2) the derived circuit equation can be applied for analyzing the common-mode current characteristics of a balanced transmission line locally unbalanced with conditions of a CMC inserted; (3) the proposed calculation method may give the expected results that a CMC should be placed in a signal source side of an unbalanced point of a pair-cable for reduction of common-mode currents; and (4) if it is placed in a terminal (or load) side of an unbalanced point, there is no effect, or rather common-mode currents are increased by the insertion of a CMC.

  • Recent Advances and Trends in Large-Scale Kernel Methods

    Hisashi KASHIMA  Tsuyoshi IDE  Tsuyoshi KATO  Masashi SUGIYAMA  

     
    INVITED PAPER

      Vol:
    E92-D No:7
      Page(s):
    1338-1353

    Kernel methods such as the support vector machine are one of the most successful algorithms in modern machine learning. Their advantage is that linear algorithms are extended to non-linear scenarios in a straightforward way by the use of the kernel trick. However, naive use of kernel methods is computationally expensive since the computational complexity typically scales cubically with respect to the number of training samples. In this article, we review recent advances in the kernel methods, with emphasis on scalability for massive problems.

  • Estimation of Electromagnetic Interference Field Emitted from Telecommunications Line

    Fujio AMEMIYA  Nobuo KUWABARA  Tsuyoshi IDEGUCHI  

     
    PAPER

      Vol:
    E78-B No:2
      Page(s):
    159-167

    An electric field is created around a telecommunications line by common-mode currents caused by clock signals, switching pulses and digitally transmitted signals. This field is a potential source of interference to radio reception. This paper describes measurement results for interference fields radiated from a telecommunications line. A method using optical fiber was used to measure the relation between common mode voltage and radiated electric field, and the results were compared with the calculated results discussed in IEC/CISPR. Our results show that the limits discussed in the CISPR are effective in restricting the electromagnetic interference due to conducted disturbances at telecommunication ports. The electric field strength from the telecommunications line caused by telecommunications signals is estimated on the basis of the relation between the common mode voltage and the radiated field strength. In this estimation, the dependence on the longitudinal conversion loss (LCL) of the telecommunications line is taken into account. The results show that the telecommunications signal on the ISDN basic access interface is not an interference source provided that the LCL of the telecommunications system meets the requirements for the ISDN interface.

  • Method for Estimating Electromagnetic Interference due to Unbalance in Telecommunications Line

    Fujio AMEMIYA  Nobuo KUWABARA  Tsuyoshi IDEGUCHI  

     
    PAPER

      Vol:
    E75-B No:3
      Page(s):
    141-147

    Information technology equipment connected to telecommunications line can be a source of electromagnetic interference. Two sources of interference have been under evaluation. One is the digital pulses in the switching regulator and the clock oscillator, and the other is the signal's common mode voltage. In this paper, the interference-inducing mechanism for the signal's common mode voltage and a method for measuring the interference are described. An equivalent circuit representing both the equipment and the line is derived on the basis of the interference-inducing model. A method for estimating the signal's common mode voltage from the differential mode voltage and the line unbalance is obtained using the equivalent circuit. It is confirmed that the level difference between the estimated and the measured common mode level is less than 3dB.

  • Electromagnetic Interference and Countermeasures on Metallic Lines for ISDN

    Mitsuo HATTORI  Tsuyoshi IDEGUCHI  

     
    PAPER-Electromagnetic Compatibility

      Vol:
    E75-B No:1
      Page(s):
    50-56

    Electromagnetic interference on a bus wiring configuration of the ISDN basic interface using metallic telecommunication lines is studied. A simple circuit to simulate terminal equipment unbalance about earth is developed for measurement purposes, based on the fact that the unbalance weakens the withstanding capability against interference. The electromagnetic interferences from low-voltage supply lines, analog telephone lines and broadcasting waves are evaluated by experiments using the circuit. The interference is measured by both induced voltage on the interface line and the error rate of the transmission signal line. Consequently, it is clarified that the basic interface is disturbed by the induced voltage, because the terminal equipment in the CCITT Recommendation I.430 has too large an unbalance about earth to maintain transmission quality. Adding to this, countermeasures to reduce interference are proposed.

  • Calculation of Near Field Emitting from Telecommunication Lines

    Nobuo KUWABARA  Tsuyoshi IDEGUCHI  

     
    LETTER-Electro Magnetic Theory and Microwave Circuits

      Vol:
    E70-E No:4
      Page(s):
    247-249

    An analytic expression of electromagnetic near field emitterd by a single current flow along a straight wire is derived to obtain the radiated EMI limit from the telecommunication lines connected to the equipment. The validity of the theory is tested in the experiment. Calculations show that the conversion factor between the electric field strength and the terminal voltage is not significantly changed by the wire length. A maximum conversion factor of about -30 dB in the frequency range of 0.1 -30 MHz is obtained.