• Title/Summary/Keyword: Cosine correction

검색결과 22건 처리시간 0.026초

A Low Frequency Band Watermarking with Weighted Correction in the Combined Cosine and Wavelet Transform Domain

  • Deb, Kaushik;Al-Seraj, Md. Sajib;Chong, Ui-Pil
    • 융합신호처리학회논문지
    • /
    • 제14권1호
    • /
    • pp.13-20
    • /
    • 2013
  • A combined DWT and DCT based watermarking technique of low frequency watermarking with weighted correction is proposed. The DWT has excellent spatial localization, frequency spread and multi-resolution characteristics, which are similar to the theoretical models of the human visual system (HVS). The DCT based watermarking techniques offer compression while DWT based watermarking techniques offer scalability. These desirable properties are used in this combined watermarking technique. In the proposed method watermark bits are embedded in the low frequency band of each DCT block of selected DWT sub-band. The weighted correction is also used to improve the imperceptibility. The extracting procedure reverses the embedding operations without the reference of the original image. Compared with the similar approach by DCT based approach and DWT based approach, the experimental results show that the proposed algorithm apparently preserves superiori mage quality and robustness under various attacks such as JPEG compression, cropping, sharping, contrast adjustments and so on.

영이 아닌 DC값을 가지는 Discrete Cosine Transform을 이용한 CT Reconstruction (CT Reconstruction using Discrete Cosine Transform with non-zero DC Components)

  • 박도영;유훈
    • 전기학회논문지
    • /
    • 제63권7호
    • /
    • pp.1001-1007
    • /
    • 2014
  • This paper proposes a method to reduce operation time using discrete cosine transform and to improve image quality by the DC gain correction. Conventional filtered back projection (FBP) filtering in the frequency domain using Fourier transform, but the filtering process uses complex number operations. To simplify the filtering process, we propose a filtering process using discrete cosine transform. In addition, the image quality of reconstructed images are improved by correcting DC gain of sinograms. To correct the DC gain, we propose to find an optimum DC weight is defined as the ratio of sinogram DC and optimum DC. Experimental results show that the proposed method gets better performance than the conventional method for phantom and clinical CT images.

Landsat 7 ETM+ 영상과 ASTER GDEM 자료를 이용한 제주도 지역의 지형보정 효과 분석 (Assessment of Topographic Normalization in Jeju Island with Landsat 7 ETM+ and ASTER GDEM Data)

  • 현창욱;박형동
    • 대한원격탐사학회지
    • /
    • 제28권4호
    • /
    • pp.393-407
    • /
    • 2012
  • 본 연구에서는 광학 원격탐사 영상의 획득 시 태양의 고도 및 방위가 대상 지역의 지형기복과 결합하여 나타나는 영향 및 다수의 시기에 걸쳐 획득한 영상을 비교분석하는 경우 영상 촬영시기의 차이로 인한 태양의 위치변화와 지형기복이 결합하여 나타나는 영향에 대한 보정을 시도하였다. 한라산과 다수의 분석구가 분포하는 제주도를 대상으로 Landsat 7 ETM+ 영상과 ASTER GDEM 지형자료를 사용하여 국지적조도의 모델링 시 커널의 크기를 $3{\times}3$, $5{\times}5$, $7{\times}7$, $9{\times}9$ 화소로 변화시키며 Lambertian 보정기법인 cosine 보정법과 비 Lambertian 보정기법인 c-보정법을 적용하고 보정기법 및 커널 크기에 대한 지형보정 효과를 분석하였다. 개별 영상의 육상지역에 대하여 보정을 수행한 결과 커널의 크기 $7{\times}7$을 적용한 c-보정법을 사용하였을 때에 보정효과가 가장 우수한 것으로 평가되었고, 대상지역을 ISODATA 무감독분류법을 이용하여 선택된 산림지역에 한정하여 지형보정을 수행한 경우에는 커널의 크기 $9{\times}9$를 적용한 c-보정법을 사용하였을 때에 가장 우수한 결과가 도출되었으며 다양한 지표피복이 혼합된 대상지역 대한 보정보다 효과가 큰 것으로 평가되었다. 다시기 영상의 경우 세 시기에 획득된 영상에 대하여 각각 지형보정을 수행한 후 상대적 방사도 보정을 적용하였을 때 지형보정을 수행하지 않은 경우와 비교하여 적외선 파장영역에서는 보다 균질한 반사도로 방사보정이 이루어졌으며 가시광 파장영역에서는 원영상의 반사도 패턴이 잘 보존된 결과가 도출되었다. 이상의 결과로부터 주변 지형으로부터 반사되는 에너지와 불완전한 대기보정으로 인한 잔류 대기영향을 고려하는 c-보정법을 적용하는 경우 cosine 보정법보다 우수한 지형보정 효과가 나타나며 수치표고모델에 내재된 수평과 수직방향 오차 및 위성영상과의 정합오차의 영향을 감소시기키 위하여 국지적 조도의 모델링 시 커널의 크기를 증가시키는 경우 지형보정의 효과가 증대되는 것으로 판단된다.

고분광 영상에서의 지형보정 효과 (Topographic Correction Effects on Hyperspectral Imagery)

  • 현창욱;박형동
    • 대한원격탐사학회:학술대회논문집
    • /
    • 대한원격탐사학회 2006년도 춘계학술대회 논문집
    • /
    • pp.295-298
    • /
    • 2006
  • 본격적인 지표 피복 분류 수행 전 국내 지형 특성에 부합하는 분석을 위해 위성영상 전처리 과정으로 지형보정 수행이 필요하다. 수치지형도로부터 추출된 수치고도모델과 고분광영상을 이용하여 충청남도 홍성군에 위치한 암반 사면에서의 지형보정을 cosine 보정법, Minnaert 보정법, c 보정법을 이용하여 수행하였다. 세 방법을 사용하여 화강암 단일 암종으로 이루어진 클래스의 화소값 표준편차를 비교 분석한 결과 cosine 보정법, c 보정법보다 Minnaert 보정법을 이용한 방법에서 향상된 결과가 도출되었다.

  • PDF

Comparison of Lambertian Model on Multi-Channel Algorithm for Estimating Land Surface Temperature Based on Remote Sensing Imagery

  • A Sediyo Adi Nugraha;Muhammad Kamal;Sigit Heru Murti;Wirastuti Widyatmanti
    • 대한원격탐사학회지
    • /
    • 제40권4호
    • /
    • pp.397-418
    • /
    • 2024
  • The Land Surface Temperature (LST) is a crucial parameter in identifying drought. It is essential to identify how LST can increase its accuracy, particularly in mountainous and hill areas. Increasing the LST accuracy can be achieved by applying early data processing in the correction phase, specifically in the context of topographic correction on the Lambertian model. Empirical evidence has demonstrated that this particular stage effectively enhances the process of identifying objects, especially within areas that lack direct illumination. Therefore, this research aims to examine the application of the Lambertian model in estimating LST using the Multi-Channel Method (MCM) across various physiographic regions. Lambertian model is a method that utilizes Lambertian reflectance and specifically addresses the radiance value obtained from Sun-Canopy-Sensor(SCS) and Cosine Correction measurements. Applying topographical adjustment to the LST outcome results in a notable augmentation in the dispersion of LST values. Nevertheless, the area physiography is also significant as the plains terrain tends to have an extreme LST value of ≥ 350 K. In mountainous and hilly terrains, the LST value often falls within the range of 310-325 K. The absence of topographic correction in LST results in varying values: 22 K for the plains area, 12-21 K for hilly and mountainous terrain, and 7-9 K for both plains and mountainous terrains. Furthermore, validation results indicate that employing the Lambertian model with SCS and Cosine Correction methods yields superior outcomes compared to processing without the Lambertian model, particularly in hilly and mountainous terrain. Conversely, in plain areas, the Lambertian model's application proves suboptimal. Additionally, the relationship between physiography and LST derived using the Lambertian model shows a high average R2 value of 0.99. The lowest errors(K) and root mean square error values, approximately ±2 K and 0.54, respectively, were achieved using the Lambertian model with the SCS method. Based on the findings, this research concluded that the Lambertian model could increase LST values. These corrected values are often higher than the LST values obtained without the Lambertian model.

Atmospheric Correction Problems with Multi-Temporal High Spatial Resolution Images from Different Satellite Sensors

  • Lee, Hwa-Seon;Lee, Kyu-Sung
    • 대한원격탐사학회지
    • /
    • 제31권4호
    • /
    • pp.321-330
    • /
    • 2015
  • Atmospheric correction is an essential part in time-series analysis on biophysical parameters of surface features. In this study, we tried to examine possible problems in atmospheric correction of multitemporal High Spatial Resolution (HSR) images obtained from two different sensor systems. Three KOMPSAT-2 and two IKONOS-2 multispectral images were used. Three atmospheric correction methods were applied to derive surface reflectance: (1) Radiative Transfer (RT) - based absolute atmospheric correction method, (2) the Dark Object Subtraction (DOS) method, and (3) the Cosine Of the Uun zeniTh angle (COST) method. Atmospheric correction results were evaluated by comparing spectral reflectance values extracted from invariant targets and vegetation cover types. In overall, multi-temporal reflectance from five images obtained from January to December did not show consistent pattern in invariant targets and did not follow a typical profile of vegetation growth in forests and rice field. The multi-temporal reflectance values were different by sensor type and atmospheric correction methods. The inconsistent atmospheric correction results from these multi-temporal HSR images may be explained by several factors including unstable radiometric calibration coefficients for each sensor and wide range of sun and sensor geometry with the off-nadir viewing HSR images.

ATC: An Image-based Atmospheric Correction Software in MATLAB and SML

  • Choi, Jae-Won;Won, Joong-Sun;Lee, Sa-Ro
    • 대한원격탐사학회지
    • /
    • 제24권5호
    • /
    • pp.417-425
    • /
    • 2008
  • An image-based atmospheric correction software ATC is implemented using MATLAB and SML (Spatial Modeler Language in ERDAS IMAGINE), and it was tested using Landsat TM/ETM+ data. This ATC has two main functional modules, which are composed of a semiautomatic type and an automatic type. The semi-automatic functional module includes the Julian day (JD), Earth-Sun distance (ESD), solar zenith angle (SZA) and path radiance (PR), which are programmed as individual small functions. For the automatic functional module, these parameters are computed by using the header file of Landsat TM/ETM+. Three atmospheric correction algorithms are included: The apparent reflectance model (AR), one-percent dark object subtraction technique (DOS), and cosine approximation model (COST). The ACT is efficient as well as easy to use in a system with MATLAB and SML.

스크린도어용 다이렉트 드라이브 모터 성능개선을 위한 자기식 센서의 고조파 저감 연구 (Study of Magnetic Sensor Harmonic Reduction to Improve Direct Driven Motors Performance Applied to Platform Screen Doors)

  • 김연수;이주
    • 전기학회논문지
    • /
    • 제64권11호
    • /
    • pp.1645-1650
    • /
    • 2015
  • This paper presents the 3-dimensional electromagnetic field analysis method and correction of sensor distortion that is used by a motor speed sensor. The magnetic sensors are being expanded due to lower price than the other speed sensors such as resolver and encoder. Magnetic sensor generates sine and cosine waves when the motor rotates. However, the sine and cosine signals are distorted due to magnetic noise, which makes the angle error of the sensor, generated near by the Hall element. This paper defines an optimal design variables by using the Taguchi method to minimize output distortion of the magnetic sensor and permanent magnet. To enhance reliability of the magnetic position sensor from sensitivity error, assembly amplitude mismatch and the electrical angle, 3-Dimensional electromagnetic finite element method and correction algorithm errors were performed in due of the magnetic sensor in order to improve the quality of the initial production model.

재귀형 최소 자승법을 이용한 자기 위치 센서의 실시간 보상 방법 (On-line Compensation Method for Magnetic Position Sensor using Recursive Least Square Method)

  • 김지원;문석환;이지영;장정환;김장목
    • 전기학회논문지
    • /
    • 제60권12호
    • /
    • pp.2246-2253
    • /
    • 2011
  • This paper presents the error correction method of magnetic position sensor using recursive least square method (RLSM) with forgetting factor. Magnetic position sensor is proposed for linear position detection of the linear motor which has tooth shape stator, consists of permanent magnet, iron core and linear hall sensor, and generates sine and cosine waveforms according to the movement of the mover of the linear motor. From the output of magnetic position sensor, the position of the linear motor can be detected using arc-tan function. But the variation of the air gap between magnetic position sensor and the stator and the error in manufacturing process can cause the variation in offset, phase and amplitude of the generated waveforms when the linear motor moves. These variations in sine and cosine waveforms are changed according to the current linear motor position, and it is very difficult to compensate the errors using constant value. In this paper, the generated sine and cosine waveforms from the magnetic position sensor are compensated on-line using the RLSM with forgetting factor. And the speed observer is introduced to reduce the effect of uncompensated harmonic component. The approaches are verified by some simulations and experiments.

공동구의 응답변위법 해석 시 국내 특성을 반영한 지반 비선형 보정계수 연구 (A Study on the Correction Factors of Soil Non-linearity Considering Korean Regional Conditions for Seismic Deformation Method Applied to Multi-Utility Tunnels)

  • 최정호;윤종석;추연욱;윤준웅
    • 한국지진공학회논문집
    • /
    • 제25권1호
    • /
    • pp.11-20
    • /
    • 2021
  • The seismic deformation method is conventionally used as a seismic design for a multi-utility tunnel in Korea. In the seismic deformation method, the soil ground's natural period is one of the most critical factors for calculating the ground displacement using cosine functions. Correction factors for the natural period and shear wave velocity have been used to consider the non-linearity of dynamic soil properties. However, the correction factors have been issued because the correction factors have not been sufficiently studied to consider Korea's regional conditions. This paper aims to evaluate the natural periods for the seismic deformation method considering Korea's ground conditions. Ground response analysis was performed using seven real earthquake records on twelve sites with different soil conditions where actual multi-utility tunnels are installed. As a result, natural periods of the sites were analyzed and new correction factors were proposed according to seismic performance and Korea's regional conditions.