• 제목/요약/키워드: rotation assign system

검색결과 6건 처리시간 0.027초

지방자치단체 재정관리 투명성 확보를 위한 발생주의·복식부기회계 개선방안 탐구 (A Schemes of Improving about Accrual Basis Accounts and Bookkeeping by Double Entry for Financial Transparency of Local Governments)

  • 최락인
    • 한국컴퓨터정보학회논문지
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    • 제18권1호
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    • pp.157-166
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    • 2013
  • 본 연구는 지방자치단체의 재정관리의 투명성에 대해 살펴보고 복식주의 발생주의 회계를 통해 이를 효과적이고 효율적으로 활용하여 재정 개혁의 기반을 다지기 위한 관리 방안을 모색하고자 한다. 주요한 내용을 정리하면 첫째, 정부회계기준의 지속적 개선의 필요, 둘째, 회계과목의 설정과 프로그램 예산과목과 연계 필요, 셋째, 정부사업에 투입된 자원의 총비용을 객관적으로 산정하기 위한 원가회계시스템의 구축 필요, 넷째, 공무원의 인식변화와 현재 순환보직 인사제도의 문제점 개선 및 교육훈련을 통한 회계공무원의 전문성 확보, 다섯째, 고위층의 관심과 공직 윤리시스템 강화, 여섯째, 내부 통제와 감시제도의 강화 필요, 일곱째, 독립된 외부전문가의 회계감사 실시와 회계전문가집단의 역할 필요, 마지막으로 효율적이고 실용적인 전산시스템 구축과 연구개발(R&D)사업이 지속적으로 실행되어야 할 것이다.

Development of a Period Analysis Algorithm for Detecting Variable Stars in Time-Series Observational Data

  • Kim, Dong-Heun;Kim, Yonggi;Yoon, Joh-Na;Im, Hong-Seo
    • Journal of Astronomy and Space Sciences
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    • 제36권4호
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    • pp.283-292
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    • 2019
  • The purpose of this study was to develop a period analysis algorithm for detecting new variable stars in the time-series data observed by charge coupled device (CCD). We used the data from a variable star monitoring program of the CBNUO. The R filter data of some magnetic cataclysmic variables observed for more than 20 days were chosen to achieve good statistical results. World Coordinate System (WCS) Tools was used to correct the rotation of the observed images and assign the same IDs to the stars included in the analyzed areas. The developed algorithm was applied to the data of DO Dra, TT Ari, RXSJ1803, and MU Cam. In these fields, we found 13 variable stars, five of which were new variable stars not previously reported. Our period analysis algorithm were tested in the case of observation data mixed with various fields of view because the observations were carried with 2K CCD as well as 4K CCD at the CBNUO. Our results show that variable stars can be detected using our algorithm even with observational data for which the field of view has changed. Our algorithm is useful to detect new variable stars and analyze them based on existing time-series data. The developed algorithm can play an important role as a recycling technique for used data

Software development for the visualization of brain fiber tract by using 24-bit color coding in diffusion tensor image

  • Oh, Jung-Su;Song, In-Chan;Ik hwan Cho;Kim, Jong-Hyo;Chang, Kee-Hyun;Park, Kwang-Suk
    • 대한자기공명의과학회:학술대회논문집
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    • 대한자기공명의과학회 2002년도 제7차 학술대회 초록집
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    • pp.133-133
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    • 2002
  • Purpose: The purpose of paper is to implement software to visualize brain fiber tract using a 24-bit color coding scheme and to test its feasibility. Materials and Methods: MR imaging was performed on GE 1.5 T Signa scanner. For diffusion tensor image, we used a single shot spin-echo EPI sequence with 7 non-colinear pulsed-field gradient directions: (x, y, z):(1,1,0),(-1,1,0),(1,0,1),(-1,0,1),(0,1,1),(0,1,-1) and without diffusion gradient. B-factor was 500 sec/$\textrm{mm}^2$. Acquisition parameters are as follows: TUTE=10000ms/99ms, FOV=240mm, matrix=128${\times}$128, slice thickness/gap=6mm/0mm, total slice number=30. Subjects consisted of 10 normal young volunteers (age:21∼26 yrs, 5 men, 5 women). All DTI images were smoothed with Gaussian kernel with the FWHM of 2 pixels. Color coding schemes for visualization of directional information was as follows. HSV(Hue, Saturation, Value) color system is appropriate for assigning RGB(Red, Green, and Blue) value for every different directions because of its volumetric directional expression. Each of HSV are assigned due to (r,$\theta$,${\Phi}$) in spherical coordinate. HSV calculated by this way can be transformed into RGB color system by general HSV to RGB conversion formula. Symmetry schemes: It is natural to code the antipodal direction to be same color(antipodal symmetry). So even with no symmetry scheme, the antipodal symmetry must be included. With no symmetry scheme, we can assign every different colors for every different orientation.(H =${\Phi}$, S=2$\theta$/$\pi$, V=λw, where λw is anisotropy). But that may assign very discontinuous color even between adjacent yokels. On the other hand, Full symmetry or absolute value scheme includes symmetry for 180$^{\circ}$ rotation about xy-plane of color coordinate (rotational symmetry) and for both hemisphere (mirror symmetry). In absolute value scheme, each of RGB value can be expressed as follows. R=λw|Vx|, G=λw|Vy|, B=λw|Vz|, where (Vx, Vy, Vz) is eigenvector corresponding to the largest eigenvalue of diffusion tensor. With applying full symmetry or absolute value scheme, we can get more continuous color coding at the expense of coding same color for symmetric direction. For better visualization of fiber tract directions, Gamma and brightness correction had done. All of these implementations were done on the IDL 5.4 platform.

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Webcam-Based 2D Eye Gaze Estimation System By Means of Binary Deformable Eyeball Templates

  • Kim, Jin-Woo
    • Journal of information and communication convergence engineering
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    • 제8권5호
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    • pp.575-580
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    • 2010
  • Eye gaze as a form of input was primarily developed for users who are unable to use usual interaction devices such as keyboard and the mouse; however, with the increasing accuracy in eye gaze detection with decreasing cost of development, it tends to be a practical interaction method for able-bodied users in soon future as well. This paper explores a low-cost, robust, rotation and illumination independent eye gaze system for gaze enhanced user interfaces. We introduce two brand-new algorithms for fast and sub-pixel precise pupil center detection and 2D Eye Gaze estimation by means of deformable template matching methodology. In this paper, we propose a new algorithm based on the deformable angular integral search algorithm based on minimum intensity value to localize eyeball (iris outer boundary) in gray scale eye region images. Basically, it finds the center of the pupil in order to use it in our second proposed algorithm which is about 2D eye gaze tracking. First, we detect the eye regions by means of Intel OpenCV AdaBoost Haar cascade classifiers and assign the approximate size of eyeball depending on the eye region size. Secondly, using DAISMI (Deformable Angular Integral Search by Minimum Intensity) algorithm, pupil center is detected. Then, by using the percentage of black pixels over eyeball circle area, we convert the image into binary (Black and white color) for being used in the next part: DTBGE (Deformable Template based 2D Gaze Estimation) algorithm. Finally, using DTBGE algorithm, initial pupil center coordinates are assigned and DTBGE creates new pupil center coordinates and estimates the final gaze directions and eyeball size. We have performed extensive experiments and achieved very encouraging results. Finally, we discuss the effectiveness of the proposed method through several experimental results.

양자화 유전자알고리즘을 이용한 무기할당 (An Application of Quantum-inspired Genetic Algorithm for Weapon Target Assignment Problem)

  • 김정훈;김경택;최봉완;서재준
    • 산업경영시스템학회지
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    • 제40권4호
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    • pp.260-267
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    • 2017
  • Quantum-inspired Genetic Algorithm (QGA) is a probabilistic search optimization method combined quantum computation and genetic algorithm. In QGA, the chromosomes are encoded by qubits and are updated by quantum rotation gates, which can achieve a genetic search. Asset-based weapon target assignment (WTA) problem can be described as an optimization problem in which the defenders assign the weapons to hostile targets in order to maximize the value of a group of surviving assets threatened by the targets. It has already been proven that the WTA problem is NP-complete. In this study, we propose a QGA and a hybrid-QGA to solve an asset-based WTA problem. In the proposed QGA, a set of probabilistic superposition of qubits are coded and collapsed into a target number. Q-gate updating strategy is also used for search guidance. The hybrid-QGA is generated by incorporating both the random search capability of QGA and the evolution capability of genetic algorithm (GA). To observe the performance of each algorithm, we construct three synthetic WTA problems and check how each algorithm works on them. Simulation results show that all of the algorithm have good quality of solutions. Since the difference among mean resulting value is within 2%, we run the nonparametric pairwise Wilcoxon rank sum test for testing the equality of the means among the results. The Wilcoxon test reveals that GA has better quality than the others. In contrast, the simulation results indicate that hybrid-QGA and QGA is much faster than GA for the production of the same number of generations.

PAPR 저감을 위하여 부가 Control 톤을 이용하는 OFDM 통신 시스템 (OFDM Communication System Using the Additive Control Tone for PAPR Reduction)

  • 김진관;이일진;유흥균
    • 한국전자파학회논문지
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    • 제16권12호
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    • pp.1229-1238
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    • 2005
  • OFDM(Orthogonal Frequency Division Multiplexing) 통신 시스템은 고속 무선 데이터 전송에 적합한 방식으로 널리 알려져 있지만, 높은 PAPR(Peak-to-Average Power Ratio)로 인하여 HPA(High Power Amplifier)에서 큰 비선형 왜곡을 겪는 문제점을 갖는다. 본 논문에서는 이러한 높은 PAPR을 저감하는 방법으로 control 톤을 삽입하는 방법을 제안하며, 이를 PCT(PAPR Control Tone) 기법이라 하기로 한다. 제안된 PCT 기법은 몇개의 부반송파에 PAPR 저감용 control 톤을 부가하고 IFFT(Inverse Fast Fourier Transform) 변환하여 가장 낮은 PAPR이 되도록 control 톤의 위상을 조절하는 방식이다. control톤은 송신단에서 PAPR 저감만을 위해 사용될 뿐 수신단에서는 간단히 제거 된다. 그러므로, 기존의 SLM(Selected Mapping) 및 PTS(Partial Transmit Sequence)에서 나타나는 부가 정보 전송과 그로 인한 BER 증가와 같은 단점이 없다. 또한 병렬 처리하면 실시간 데이터 처리가 가능하다. 제안한 기법을 selected mapping(SLM) 기법과 성능 비교를 하여 보았다. 그 결과 control tone을 6개 넣어 줬을 때 SLM 기법과 같은 성능을 갖는다. 그리고 HPA를 포함한 경우 BER 통신 성능도 구하였다.