電気学会論文誌A(基礎・材料・共通部門誌)
Online ISSN : 1347-5533
Print ISSN : 0385-4205
ISSN-L : 0385-4205
143 巻, 8 号
選択された号の論文の7件中1~7を表示しています
論文
  • 鈴木 健文, 圓谷 友紀, 孟 志奇
    2023 年 143 巻 8 号 p. 267-272
    発行日: 2023/08/01
    公開日: 2023/08/01
    ジャーナル 認証あり

    Electromagnetic radar has been used for detecting internal defect in concrete structure, since the presence of a defect, such as a crack, causes changes in the scattered waves. However, visually identifying scattering difference due to a defect requires a high level of skill, and it takes a lot of effort when there is a large amount of observation data. Therefore, the development of automatic identification technology using machine learning (ML) is underway. However, the training data collection method and the performance of air-gap detection using ML has not been explored in detail. In this paper, firstly, we investigate the detection of an infinite air-gap parallel to the surface of a concrete slab using artificial neural network (ANN) identification technology in layered medium models, and discuss how to train high performance ANN with less training data. Secondly, we study the characteristic of ANN detection for an oblique air-gap using 2D homogeneous medium models.

  • 濱村 昌弘, 圓谷 友紀, 孟 志奇, 竹中 隆
    2023 年 143 巻 8 号 p. 273-279
    発行日: 2023/08/01
    公開日: 2023/08/01
    ジャーナル 認証あり

    Solving the inverse scattering problem of determining the position, shape, and electrical parameter distributions of a target object requires information not only on the scattered waves but also on the incident waves. Almost all inverse scattering methods assume that the incident wave is known on the observation curve and in the estimation region that includes the object. However, it is sometimes difficult to remove the object and measure the incident wave. To address this situation, a method to estimate the incident field from the total electromagnetic field data (the sum of incident and scattered wave fields) measured on the observation circle has been proposed in recent years. In measurements outside an anechoic chamber, the incident wave to an object is a composite of the electromagnetic wave to probe the object and the unwanted electromagnetic wave from mobile phones and other sources. In this paper, we apply this method to the extraction of incident wave information from total electromagnetic field data measured on the observation circle in the presence of unwanted electromagnetic waves, and also propose a method to extract incident wave information from total electric field data alone. The influence of noise will also be discussed.

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