• Title/Summary/Keyword: broom

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The study on target recognition method to process real-time in W-band mmWave small radar (밀리미터파대역(W-대역)공대지 레이다의 이중편파 채널을 활용한 지상 표적 식별 기법에 관한 연구)

  • Park, Sungho;Kong, Young-Joo;Ryu, Seong-Hyun;Yoon, Jong-Suk
    • The Journal of the Institute of Internet, Broadcasting and Communication
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    • v.18 no.3
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    • pp.61-69
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    • 2018
  • In this paper, we propose a method for recognizing ground target using dual polarization channels in millimeter waveband air-to-surface radar. First, the Push-Broom target detection method is described and the received signal is modeled considering flight-path scenario of air-to-surface radar. The scattering centers were extracted using the RELAX algorithm, which is a time domain spectral estimation technique, and the feature vector of the target was generated. Based on this, a DB for 4 targets is constructed. As a result of the proposed method, it is confirmed that the target classification rates is improved by more than 15% than the single channel using the data of the dual polarization channel.

QUICK-LOOK TEST OF KOMPSAT-2 FOR IMAGE CHAIN VERIFICATION

  • Lee Eung-Shik;Jung Dae-Jun;Lee Seung-Hoon
    • Proceedings of the KSRS Conference
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    • 2005.10a
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    • pp.509-511
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    • 2005
  • KOMPSAT -2 equipped with an optical telescope(MSC) will be launched in this year. It can take images of the earth with push-broom scanning at altitude 685Km. Its resolution is 1m in panchromatic channel with a swath width of 15 km After the MSC is tested and the performance is measured at instrument level, it is installed on satellite. The image passes through the electro-optical system, compression and storage unit and fmally downlink sub-systems. This integration procedure necessitates the functional test of all subsystems participating in the image chain. The objective of functional test at satellite level(Quick Look test) is to check the functionality of image chain by real target image. Collimated moving image is input to the EOS in order to simulate the operational environments as if KOMPSAT -2 is being operated in orbit. The image chain from EOS to data downlink subsystem will be verified through Quick Look test. This paper explains the Quick Look test of KOMPSAT -2 and compares the taken images with collimated input ones.

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Inverse Eigenvalue Problems with Partial Eigen Data for Acyclic Matrices whose Graph is a Broom

  • Sharma, Debashish;Sen, Mausumi
    • Kyungpook Mathematical Journal
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    • v.57 no.2
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    • pp.211-222
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    • 2017
  • In this paper, we consider three inverse eigenvalue problems for a special type of acyclic matrices. The acyclic matrices considered in this paper are described by a graph called a broom on n + m vertices, which is obtained by joining m pendant edges to one of the terminal vertices of a path on n vertices. The problems require the reconstruction of such a matrix from given partial eigen data. The eigen data for the first problem consists of the largest eigenvalue of each of the leading principal submatrices of the required matrix, while for the second problem it consists of an eigenvalue of each of its trailing principal submatrices. The third problem has an eigenvalue and a corresponding eigenvector of the required matrix as the eigen data. The method of solution involves the use of recurrence relations among the leading/trailing principal minors of ${\lambda}I-A$, where A is the required matrix. We derive the necessary and sufficient conditions for the solutions of these problems. The constructive nature of the proofs also provides the algorithms for computing the required entries of the matrix. We also provide some numerical examples to show the applicability of our results.

Transmission of Mulberry Dwarf Phytoplasma by a Balclutha punctata (Balclutha punctata에 의한 뽕나무 오갈병 파이토플라스마의 전반)

  • Han, Sangsub
    • Journal of Korean Society of Forest Science
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    • v.101 no.4
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    • pp.635-639
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    • 2012
  • The present study was initiated to find out the insect vector of mulberry dwarf phytoplasma. Among the collected insects from mulberry cultivation region, the sucking insects (Hishimonas sellatus, Bothrogonia japonica and Balclutha punctata) were selected for transmission of mulberry dwarf phytoplasma. Sucking insects, H. sellatus and B. punctata successfully transmitted phytoplasma to healthy seedling mulberry and periwinkle plants by inoculation-feeding. Typical dwarf symptom was observed in mulberry tree, but very slender twigs on stem and formatted small leaves were found on periwinkle plants, which are typical witches' broom symptoms. The phytoplasmas were detected in all samples exception sucking insects B. japonica using phytoplasma universal primer pair R16F2n/R2.

INTRODUCTION OF NUC ALGORITHM IN ON-BOARD RELATIVE RADIOMERIC CALIBRATION OF KOMPSAT-2

  • Song, J.H.;Choi, M.J.;Seo, D.C.;Lee, D.H.;Lim, H.S.
    • Proceedings of the KSRS Conference
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    • 2007.10a
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    • pp.504-507
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    • 2007
  • The KOMPSAT-2 satellite is a push-broom system with MSC (Multi Spectral Camera) which contains a panchromatic band and four multi-spectral bands covering the spectral range from 450nm to 900nm. The PAN band is composed of six CCD array with 2528 pixels. And the MS band has one CCD array with 3792 pixels. Raw imagery generated from a push-broom sensor contains vertical streaks caused by variability in detector response, variability in lens falloff, pixel area, output amplifiers and especially electrical gain and offset. Relative radiometric calibration is necessary to account for the detector-to-detector non-uniformity in this raw imagery. Non-uniformity correction (NUC) is that the process of performing on-board relative correction of gain and offset for each pixel to improve data compressibility and to reduce banding and streaking from aggregation or re-sampling in the imagery. A relative gain and offset are calculated for each detector using scenes from uniform target area such as a large desert, forest, sea. In the NUC of KOMPSAT-2, The NUC table for each pixel are divided as HF NUC (high frequency NUC) and LF NUC (low frequency NUC) to apply to few restricted facts in the operating system ofKOMPSAT-2. This work presents the algorithm and process of NUC table generation and shows the imagery to compare with and without calibration.

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Genotypic Characterization of Cherry Witches' Broom Pathogen Taphrina wiesneri Strains (벚나무 빗자루병균 Taphrina wiesneri의 유전적 특성)

  • Seo, Sang-Tae;Jeong, Su-Jee;Lee, Seung-Kyu;Kim, Kyung-Hee
    • Research in Plant Disease
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    • v.17 no.1
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    • pp.99-101
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    • 2011
  • The ascomycetous fungus Taphrina wiesneri, the pathogen of cherry witches' broom, is highly pathogenic to Prunus yedoensis, the most widely planted cherry trees in Korea as park and roadside trees. A collection of 13 strains of the pathogen in Korea and Japan was characterized by 18S rDNA gene sequence and restriction fragment length polymorphism (RFLP) analysis. In cluster analysis based on 18S rDNA gene sequence the strains were divided into 2 clusters. In RFLP analysis of the rDNA-IGS region using HhaI, the strains were separated into four patterns, B, C, D and G, of which pattern G was new.

Migration and Distribution of Graft-inoculated Jujube Witches'-broom Phytoplasma within a Cantharanthus roseus Plant

  • Lee, Sang-Hun;Kim, Chul-Eung;Cha, Byeong-Jin
    • The Plant Pathology Journal
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    • v.28 no.2
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    • pp.191-196
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    • 2012
  • Periwinkle seedlings (Cantharanthus roseus) were inoculated with jujube witches'- broom (JWB) phytoplasma via grafting to analyze the migration of JWB phytoplasmas within the host plant. The phytoplasmas were detected using nested polymerase chain reaction (PCR) and fluorescence microscopy. Fluorescence microscopy was a simple and easy method of detecting phytoplasmas; however, it was not sufficiently sensitive to detect very low phytoplasma concentrations. Therefore, the migration of JWB phytoplasma was investigated through PCR. The first migration of JWB phytoplasma from an infected tissue to healthy tissues occurred late. After grafting, the phytoplasmas moved from the inoculated twig (or scion) to the main stem, which took 28 days. Afterward, the phytoplasma migrated faster and took less than 4 days to spread into the roots from the main stem. All twigs were then successively colonized by the JWB phytoplasmas from the bottom to the top. JWB phytoplasma was detected via nested PCR in all parts of the periwinkle seedling 82 days after inoculation. Based on these results, the inoculated JWB phytoplasma appeared to migrate downward to the roots along the main stem during the early stages, and then continued to move upward, colonizing twigs along the way until they reached the apex.

다기능 전자광학 카메라의 지상촬영을 통한 기능검증

  • Heo, Haeng-Pal;Yong, Sang-Sun
    • The Bulletin of The Korean Astronomical Society
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    • v.37 no.2
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    • pp.231.2-231.2
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    • 2012
  • 원격탐사를 위한 지구관측용 전자광학 카메라는 높은 해상도, 넓은 관측 폭 및 높은 선명도를 제공하기 위하여 부피가 크고 무거우며, 큰 전력을 소모하여, 위성본체의 대부분을 차지하도록 개발된다. 그러나, 달 탐사를 위해 달 궤도선이나 달 착륙선에 장착되는 전자광학 카메라는, 고해상도의 고성능을 가지도록 개발되기 보다는, 다기능의 집적도 높은 소형카메라로 개발되는 것이 일반적이다. 이에 따라, 달 탐사용 다기능 전자광학 카메라 개발을 위한 기술검증을 위하여 지상모델이 개발되었다. 본 카메라는 CMOS 센서를 사용하여 컴팩트하게 설계하였고, 스테레오 영상생성을 위해 두 개의 카메라가 동시에 운영되며, 줌 기능을 구현하여 다양한 조건에서도 영상획득이 가능하도록 설계 되었다. 또한 달 궤도선과 착륙선에서 1D 관측 및 2D 관측이 선택적으로 가능하도록 설계되었다. 개발된 지상모델은 실험실에서 수행하는 통상적인 기능 및 성능시험을 수행하였고, 스테레오 영상의 생성기능 등의 검증을 위하여 야외에서 카메라를 정속으로 회전하며 push broom 방식의 1D 촬영모드에 대한 시험을 수행한다. 또한, 항공촬영을 통해 1D 및 2D 촬영을 수행하여, 영상데이터의 처리 및 스테레오 영상데이터 생성 등의 검증 단계를 거친다. 본 논문 발표에서는 다기능의 전자광학 카메라를 지상에서 동작시켜 실제영상을 뽑아내고, 생성된 데이터를 처리하여, 설계된 카메라의 여러 가지 기능들에 대해 검증하는 방법들에 대해 정리 및 발표한다. 즉, 달 궤도에 맞게 설계된 카메라의 노출시간 등을 조절하고, push broom 방식을 모사하기 위하여 카메라를 정속으로 회전시켜 영상을 획득하여 다양한 카메라의 기능을 검증하였다.

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Laboratory geometric calibration simulation analysis of push-broom satellite imaging sensor

  • Reza Sh., Hafshejani;Javad, Haghshenas
    • Advances in aircraft and spacecraft science
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    • v.10 no.1
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    • pp.67-82
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    • 2023
  • Linear array imaging sensors are widely used in remote sensing satellites. The final products of an imaging sensor can only be used when they are geometrically, radiometrically, and spectrally calibrated. Therefore, at the first stages of sensor design, a detailed calibration procedure must be carefully planned based on the accuracy requirements. In this paper, focusing on inherent optical distortion, a step-by-step procedure for laboratory geometric calibration of a typical push-broom satellite imaging sensor is simulated. The basis of this work is the simulation of a laboratory procedure in which a linear imager mounted on a rotary table captures images of a pin-hole pattern at different angles. By these images and their corresponding pinhole approximation, the correction function is extracted and applied to the raw images to give the corrected ones. The simulation results illustrate that using this approach, the nonlinear effects of distortion can be minimized and therefore the accuracy of the geometric position of this method on the image screen can be improved to better than the order of sub-pixel. On the other hand, the analyses can be used to proper laboratory facility selection based on the imaging sensor specifications and the accuracy.

Transmission of Jujube Witches'-broom Mycoplasma by the Leafhopper Hishimonus sellatus Uhler (대추나무 빗자루병(病)의 마름무늬매미충에 의(依)한 매개전염(媒介伝染))

  • La, Yong Joon;Woo, Kun Suk
    • Journal of Korean Society of Forest Science
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    • v.48 no.1
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    • pp.29-39
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    • 1980
  • This study was initiated to find out the possible insect vector and other means of transmission of jujube witches'-broom disease. 1. Eight species of leafhoppers were found to feed on both healthy and diseased jujube trees. Among these, rhombic marked leafhoppers (Hishimonus sellatus Uhler) were most abundant throughout the growing season of jujube trees in all localities surveyed. H. sellatus was far more abundant on diseased trees than healthy ones. 2. Jujube witches'-broom mycoplasma(JWM) was transmitted to jujube seedlings by Hishimonus sellatus. Jujube seedlings inoculated with H. sellatus which had been fed for 14-21 days on diseased jujube plants, developed smaller, chlorotic leaves 40-60 days after inoculation. Electron microscopy of midveins and petioles of the infected jujube seedlings revealed the presence of numerous mycoplasmalike organisms in phloem tissues. 3. Jujube witches'-broom mycoplasma was also transmitted to Vinca rosea plants by H. sellatus. Infected Vinca rosea plants developed vein clearing and marginal chlorosis of upper leaves 25-38 days after inoculation and followed by stunting and ultimate wilting and death of plant. Electron microscopy of petioles and midveins of infected Vinca rosea plant revealed the presence of numerous mycoplasmalike organisms in phloem tissues. 4. H. sellatus survived more than 30 days on jujube, Vinca rosea, carrot, celery, eggplant, hop, Calystegia japonica, Humulus japonicus, Astragalus sinicus, white clover, red clover, and radino clover. Many second generation nymphs of H. sellatus were also abserved on these plants but clovers. 5. Jujube seeds collected from witches'-broom diseased jujube trees yielded healthy seedlings.

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