• Title/Summary/Keyword: error correction

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Research of Media-independent Error Correction Scheme (Media-independent Error Correction Scheme에 관한 연구)

  • 박덕근;박원배
    • Proceedings of the Korean Information Science Society Conference
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    • 2000.04a
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    • pp.454-456
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    • 2000
  • 실시간의 특성을 가지는 데이터의 경우 네트워크상에서 분실된 패킷을 복구시키기 위해서 FEC 방법을 사용한다. FEC는 최소한의 지연만으로 손실 패킷의 복구를 효율적으로 할 수 있는 장점을 가지고 있으나 네트워크상에서의 패킷 손실 특성에 많이 의존되는 경향이 있다. ITU-T의 Study Group 16 에서의 Real-Time Transport Protocol(RTP)를 사용하여 네트워크에서 분실된 패킷을 복원시키는 방법으로 Media-independent error-correction scheme을 정하였다. 이 Scheme에 의해 만들어진 error-correction을 위한 신호화 media bitstream은 UDP 에 의해 encapsulation될 RTP에 실리게 된다. Scheme은 real-time이라는 환경에 유리하도록 bandwidth 와 latency 그리고 cost를 최소화하려고 했으며 이에 따라 네 가지 scheme을 정하였다. 네 가지의 Scheme은 오버헤드와 지연시간이 크기가 차별화를 두어 네트워크 환경의 변화에 적응하도록 하였다. 그러나 네트워크 환경에 보다 더 탄력적이며 효율적으로 적응하기 위해서 또 하나의 scheme을 제안한다. 새로 고안한 이 다섯 번째 scheme은 scheme 3 에 비해 작은 latency를 가지고 장점이 있는 반면 연속적으로 분실된 패킷에 대한 복원확률이 다소 떨어진다. 하지만 scheme 1과 2에 비해서는 연속적인 패킷 분실의 복원확률이 높아 네트워크환경에 따라 scheme 4를 사용하면 네 개의 scheme을 사용하여 분실패킷의 복원을 하는 경우보다 보다 효율적인 전송과 복원이 이루어질 것이다.

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A Study on Course Correction Performance Expectation & Algorithm Implementation of 1D CCM (1D CCM 탄도수정 성능예측 및 알고리즘 구현 연구)

  • Kim, Ki-Pyo
    • Journal of the Korea Institute of Military Science and Technology
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    • v.10 no.1
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    • pp.5-13
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    • 2007
  • The trajectory of an current artillery munition is subject to a variety of different error sources resulting in more or less big deviation from the nominal predicted flight path. The 1D CCM(Course Correction Munition) has appeared to solve this problem and the mechanism of 1D CCM is a simple and low cost one using the influence of drag to range behavior of an artillery munition. In the paper 1D CCM concept has been simulated using wind tunnel experiment results of the specified Korean munition with CCF(Course Correction Fuze) and calculated the performance of its rang error reduction. From the simulated results it can be numerically explained that the possibility of adaptation of 1D CCM concept to Korean artillery munitions.

The Tip-Tilt Correction System in AO System for Small Telescope

  • Yu, Hyungjun;Park, Yong-Sun;Lee, Bangweon
    • The Bulletin of The Korean Astronomical Society
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    • v.37 no.2
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    • pp.219.2-219.2
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    • 2012
  • We are developing Adaptive Optics (AO) system for 24 inch telescope at Seoul National University Observatory. It consists of the tip-tilt correction system and the residual wavefront error correction system with a deformable mirror and a wavefront sensor. We present the construction and performance measurements of the tip-tilt correction system. The tip-tilt component is the single largest contributor to wavefront error, especially for small telescope. The tip-tilt correction system consists of a quadrant photodiode, a tip-tilt mirror and a feed back loop. The collimated He-Ne laser beam is used for input light source and is artificially disturbed by air turbulence generated by a heat gun. Most of the turbulence is of low frequency less than 20 Hz, but extends to a few hundreds Hz. It is found that the closed loop system using proportional-integral-derivative (PID) control successfully corrects tip-tilt error at a rate as high as 300~400 Hz.

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Depth error correction for maladjusted stereo cameras with the calibrated pixel distance parameter (화소간격 파라미터 교정에 의한 비정렬 스테레오 카메라의 거리오차 보정)

  • 김종만;손홍락;김성중
    • 제어로봇시스템학회:학술대회논문집
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    • 1996.10b
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    • pp.268-272
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    • 1996
  • Error correction effect for maladjusted stereo cameras with calibrated pixel distance parameter is presented. The camera calibration is a necessary procedure for stereo vision-based depth computation. Intra and extra parameters should be obtain to determine the relation between image and world coordination through experiment. One difficulty is in camera alignment for parallel installation: placing two CCD arrays in a plane. No effective methods for such alignment have been presented before. Some amount of depth error caused from such non-parallel installation of cameras is inevitable. If the pixel distance parameter which is one of intra parameter is calibrated with known points, such error can be compensated in some amount. Such error compensation effect with the calibrated pixel distance parameter is demonstrated with some experimental results.

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Error Correction Coding on the Transform Coded Image Transmission over Noisy Channel (잡음 채널에서 변환 부호화 영상 전송에 대한 에러 정정 부호)

  • 채종길;주언경
    • Journal of the Korean Institute of Telematics and Electronics B
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    • v.31B no.4
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    • pp.97-105
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    • 1994
  • Transform image coding using DCT is proved to be efficient in the absence of channel error but its performance degrades rapidly over noisy channel. In this paper, in the case of appling bit selcetive error correction coding that protects some significant bits in a codeword, an efficient allocation method of imformation bits and additive redundancy bits used for quantization and error correction coding respectively under constant transmission bit rate is proposed, and its performance is analyzed. As a result, without increasing trasmission bit rate, PSNR can be improved up to 7~8 [dB] below bit error rate $10^2$ and the image without blocking effect caused by bit error resulted from channel noise can be recostructed.

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Energy Savings in OFDM Systems through Cooperative Relaying

  • Khuong, Ho Van;Kong, Hyung-Yun
    • ETRI Journal
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    • v.29 no.1
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    • pp.27-35
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    • 2007
  • Energy savings in orthogonal frequency division multiplexing (OFDM) systems is an active research area. In order to achieve a solution, we propose a new cooperative relaying scheme operated on a per subcarrier basis. This scheme improves the bit error rate (BER) performance of the conventional signal-to-noise ratio (SNR)-based selection relaying scheme by substituting SNR with symbol error probability (SEP) to evaluate the received signal quality at the relay more reliably. Since the cooperative relaying provides spatial diversity gain for each subcarrier, thus statistically enhancing the reliability of subcarriers at the destination, the total number of lost subcarriers due to deep fading is reduced. In other words, cooperative relaying can alleviate error symbols in a codeword so that the error correction capability of forward error correction codes can be fully exploited to improve the BER performance (or save transmission energy at a target BER). Monte-Carlo simulations validate the proposed approach.

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Inclination and Non-horizontal Error Correction of Magnetic Compass by the Law of Gravity (중력 법칙을 이용한 전자나침반의 경사오차 및 비 수평오차 보정)

  • Park, Gye-Do;Lee, Jang-Myung
    • The Transactions of The Korean Institute of Electrical Engineers
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    • v.60 no.3
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    • pp.606-611
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    • 2011
  • This paper proposes a correction method concerning the inclination error and non-horizontal error of magnetic compass when magnetic compass is vibrated. This system used the 2-axis variable resistance and pendulum. A pendulum hanging from the 2-axis variable resistance of this system is always maintain the horizontal because of gravity. but these data had some intrinsic error. So we used the low pass filter to solve this problem. So this system can get the accurate azimuth of magnetic compass. In conclusion, These results demonstrate convincingly by applied algorithm of experiment.

A Study on DNN-based STT Error Correction

  • Jong-Eon Lee
    • International journal of advanced smart convergence
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    • v.12 no.4
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    • pp.171-176
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    • 2023
  • This study is about a speech recognition error correction system designed to detect and correct speech recognition errors before natural language processing to increase the success rate of intent analysis in natural language processing with optimal efficiency in various service domains. An encoder is constructed to embedded the correct speech token and one or more error speech tokens corresponding to the correct speech token so that they are all located in a dense vector space for each correct token with similar vector values. One or more utterance tokens within a preset Manhattan distance based on the correct utterance token in the dense vector space for each embedded correct utterance token are detected through an error detector, and the correct answer closest to the detected error utterance token is based on the Manhattan distance. Errors are corrected by extracting the utterance token as the correct answer.