• Title/Summary/Keyword: 강우레이더 간섭

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Analysis of Interference Protection among the Rain Radars (강우 레이더 전파간섭 분석)

  • Na, Sang-Kuen;Kim, Kun-Joong;Ji, Seg-Kuen;Kim, Young-Wan
    • Proceedings of the Korean Institute of Information and Commucation Sciences Conference
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    • 2012.05a
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    • pp.553-556
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    • 2012
  • The interference among the rain radars and interference in the adjacent wireless station due to the spurious signals from the rain radar were analyzed in this paper. The rain radar measures the rain intensity using S-band signal. The measured data are utilized in forecasting the rainfall. The interference among the rain radars or in the adjacent wireless stations may be caused by the high output power of rain radar. Based on the propagation analysis of S band signal and the deduced interference protection ratio of rain radar, the interference due to the rain radar are analyzed. Also, the radiation spectrum characteristics of a rain radar are deduced from the caused interference effects by the spurious signals of the rain radar.

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An Analysis of Radio Interference in the Rain Radars (강우 레이더 전파간섭 분석)

  • Kim, Young-Wan
    • Journal of the Korea Institute of Information and Communication Engineering
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    • v.17 no.1
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    • pp.1-7
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    • 2013
  • The interference among the rain radars and interference in the adjacent wireless station due to the spurious signals from the rain radar were analyzed in this paper. The rain radar measures the rain intensity using S-band signal. The measured data are utilized in forecasting the rainfall. The interference among the rain radars or in the adjacent wireless stations may be caused by the operation with low elevation angle and the high output power. Based on the propagation analysis of S band signal and the deduced interference protection ratio of rain radar, the interference due to the rain radar are analyzed. Also, the radiation spectrum characteristics of a rain radar are deduced from the caused interference effects by the spurious signals of the rain radar. To minimize the interference effects for adjacent wireless stations, it is required to get the rejection characteristics of spurious signals above 105 dB. In viewpoints of interference for rain radars, it is necessary to operate the rain radar with a different PRF and operation time opposite to adjacent rain radars.

Estimation Techniques of Hydrological Uncertainties on Rainfall Radar Measurement (강우레이더 관측의 수문학적 불확실도 산정 기법)

  • Hwang, Seok Hwan;Cho, Hyo Seob;Lee, Keon Haeng;Hyun, Myung Suk
    • Proceedings of the Korea Water Resources Association Conference
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    • 2017.05a
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    • pp.78-78
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    • 2017
  • 강우레이더 관측의 정확도는, 호우의 강도나 형태와 같은 기상학적 조건(변동 오차 요소) 외에도, 관측 지점의 레이더로부터의 거리, 고도, 관측유역의 형태나 크기 등 다양한 관측환경 조건(고정 오차 요소)에 의해서도 달라질 수 있기 때문에, 강우레이더 관측의 오차 성분을 정량화할 필요가 있다. 본 연구에서는 거리와 고도에 의한 오차 특성을 이중편파 변수의 특성을 이용하여 실증적으로 분석하였고, 이를 통해 감쇠의 영향과 산지효과(또는 지형효과)로 인한 오차 규모를 정량적으로 산정 비교하였다. 거리가 멀어짐에 따라 고도도 높아지기 때문에 QPE 불확실도의 거리와 고도에 따른 성분을 구분하는 것은 매우 어려운데, 거리에 대한 불확실도 성분이 매우 작은 R(KDP)를 이용한다면 효과적으로 분리가 가능하다. 이러한 원리를 이용하여, 관측 거리에 따른 오차가 매우 작은 R(KDP)를 기준으로 관측 거리에 따른 오차와 고도에 따른 오차를 분리하여 표준화[Z-score] 하였다. R(Z)의 경우는 관측 고도와 거리에 따른 오차가 중첩되어 나타나나, R(KDP)는 거리에 따른 오차는 거의 나타나지 않으므로 이를 기본 가정으로 하여 R(Z)와 R(KDP) 관계로부터 관측 고도에 따른 오차 성분만 분리하였다. 분리 결과, 관측 거리에 따른 표준 오차의 경우 100km 까지는 대략 10%(0.1) 이하로 나타났으나, 150km 이상에서는 30%(0.3)를 초과하는 것으로 나타났다. 관측 고도에 따른 표준 오차의 경우 2~3번째 고도각 까지는 대략10%(0.1) 이하로 나타났으나, 3번째 고도각 이상에서는 20%(0.2), 4번째 고도각 이상에서는 50%(0.5)를 초과하는 것으로 나타나, 고도에 의한 영향이 거리에 의한 영향보다 민감하게 나타났다. 1번째 고도각에서는, 100km 이내 근거리에서 관측 거리가 가까워질수록 오차가 증가하는 경향을 보이는데, 이는 저고도 빔 간섭(빔 차폐) 등의 영향으로 추정되었다.

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An analysis of land displacements in terms of hydrologic aspect: satellite-based precipitation and groundwater levels (수문학적 관점에서의 지반 변위 분석: 인공위성 강우데이터와 지하수위 연계)

  • Oh, Seungcheol;Kim, Wanyub;Kang, Minsun;Yoon, Hongsic;Yang, Jungsuk;Choi, Minha
    • Journal of Korea Water Resources Association
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    • v.55 no.12
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    • pp.1031-1039
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    • 2022
  • As one of the hydrological factors closely related to landslides, precipitation indirectly affects slope stability by generating external forces. Groundwater level fluctuations have attracted more attention lately as factors that directly affect slope stability have become more prominent. Therefore, this study attempted to analyze the relationship between variables through changes in precipitation, groundwater levels, and land displacement. A time series-based analysis was conducted using satellite-based precipitation and point-based groundwater levels in conjunction with the PSInSAR technique to simulate land displacement in urban and mountainous areas. There was a sharp rise in groundwater levels in both urban and mountain areas during heavy rainfall, and a continuous decrease in urban areas when rainfall was low. 6 mm of displacements was observed in the mountainous area as a results of soil outflow from the topsoil layer, which was accompanied by an increased groundwater level. Meanwhile, different results were found in urban area. In response to the rise in groundwater level, the land displacement increases due to the expansion of soil skeletons, while the decrease seems to be attributed to anthropogenic influences. Overall, there was no consistent relationship between groundwater levels and land displacement, which appears to be caused by factors other than hydrological factors. Additional consideration of environmental factors could contribute to a deeper understanding of the relationship between the two factors.