• Title/Summary/Keyword: 런-랭스

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Huffman Coding using Nibble Run Length Code (니블 런 랭스 코드를 이용한 허프만 코딩)

  • 백승수
    • Journal of the Korea Society of Computer and Information
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    • v.4 no.1
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    • pp.1-6
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    • 1999
  • In this paper We propose the new lossless compression method which use Huffman Coding using the preprocessing to compress the still image. The proposed methode divide into two parts according to activity of the image. If activities are high, the original Huffman Coding method was used directly. IF activities are low, the nibble run-length coding and the bit dividing method was used. The experimental results show that compression rate of the proposed method was better than the general Huffman Coding method.

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Compressing Method of NetCDF Files Based on Sparse Matrix (희소행렬 기반 NetCDF 파일의 압축 방법)

  • Choi, Gyuyeun;Heo, Daeyoung;Hwang, Suntae
    • KIISE Transactions on Computing Practices
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    • v.20 no.11
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    • pp.610-614
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    • 2014
  • Like many types of scientific data, results from simulations of volcanic ash diffusion are of a clustered sparse matrix in the netCDF format. Since these data sets are large in size, they generate high storage and transmission costs. In this paper, we suggest a new method that reduces the size of the data of volcanic ash diffusion simulations by converting the multi-dimensional index to a single dimension and keeping only the starting point and length of the consecutive zeros. This method presents performance that is almost as good as that of ZIP format compression, but does not destroy the netCDF structure. The suggested method is expected to allow for storage space to be efficiently used by reducing both the data size and the network transmission time.

The Demodulation for Bipolar Delta Driven GMSK (바이폴라 델타 구동 GMSK에 대한 복조)

  • Bang, Seung-Cheol
    • The Journal of Korean Institute of Communications and Information Sciences
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    • v.38B no.10
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    • pp.824-831
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    • 2013
  • The delta driven GMSK is a modulation scheme to generate the gaussian pulse by the bipolar delta signal and to modulate the phase function with the differential gaussian pulse between $+T_b/2$ and $-T_b/2$. The demodulation of delta driven GMSK differs from conventional GMSK schemes. This paper proposed a demodulation with the differential phase detector at the end of each bit interval. A designed detector then finds the one of the possible region by hard decision, in which the phase difference lies. Finally the binary data can be recovered by state transition process. Through the BER simulation for AWGN channel, it was found that the proposed demodulation effected by the run length of binary data. The simulated BER degradation of about 2[dB] was analyzed, as compared to the theoretical coherent demodulation with $BT_b$=0.3.