• Title/Summary/Keyword: Cascaded integrator-comb

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Low-power Decimation Filter Structure for Sigma Delta A/D Converters in Cardiac Applications (심장박동기용 시그마 델타 A/D 변환기에서의-저전력 데시메이션 필터 구조)

  • 장영범;양세정;유선국
    • The Transactions of the Korean Institute of Electrical Engineers D
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    • v.53 no.2
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    • pp.111-117
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    • 2004
  • The low-power design of the A/D converter is indispensable to achieve the compact bio-signal measuring device with long battery duration. In this paper, new decimation filter structure is proposed for the low-power design of the Sigma-Delta A/D converter in the bio-instruments. The proposed filter is based on the non-recursive structure of the CIC (Cascaded Integrator Comb) decimation filter in the Sigma-Delta A/D converter. By combining the CSD (Canonic Signed Digit) structure with common sub-expression sharing technique, the proposed decimation filter structure can significantly reduce the number of adders for implementation. For the fixed decimation factor of 16, the 15% of power consumption saving is achieved in the proposed structure in comparison with that of the conventional polyphase CIC filter.

Low-power Heartbeat Detection Algorithm and Structure Using Modified CIC Filter Banks (Modified CIC 필터뱅크를 이용한 저전력 심장박동수 측정 알고리즘 및 구조)

  • Oh, Seung-Lee;Jang, Young-Beom
    • The Transactions of The Korean Institute of Electrical Engineers
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    • v.62 no.2
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    • pp.264-269
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    • 2013
  • In this paper, low-power heart beat detection algorithm and structure is proposed. The proposed detection algorithm utilizes filter banks to display a specific beat per minute(BPM) from the heart beat signals. Since general filter banks need a lot of computation to calculate a BPM, we propose the filter banks structure using modified CIC(Cascaded Integrator Comb) filters. It is shown that the proposed modified CIC filter banks algorithm can display the BPM from the heart beat signals precisely and efficiently.

An implementation of the hybrid SoC for multi-channel single tone phase detection (다채널 단일톤 신호의 위상검출을 위한 Hybrid SoC 구현)

  • Lee, Wan-Gyu;Kim, Byoung-Il;Chang, Tae-Gyu
    • Proceedings of the KIEE Conference
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    • 2006.10c
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    • pp.388-390
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    • 2006
  • This paper presents a hybrid SoC design for phase detection of single tone signal. The designed hybrid SoC is composed of three functional blocks, i.e., an analog to digital converter module, a phase detection module and a controller module. A design of the controller module is based on a 16-bit RISC architecture. An I/O interface and an LCD control interface for transmission and display of phase measurement values are included in the design of the controller module. A design of the phase detector is based on a recursive sliding-DFT. The recursive architecture effectively reduces the gate numbers required in the implementation of the module. The ADC module includes a single-bit second-order sigma-delta modulator and a digital decimation filter. The decimation filter is designed to give 98dB of SNR for the ADC. The effective resolution of the ADC is enhanced to 98dB of SNR by the incorporation of a pre FIR filter, a 2-stage cascaded integrator- comb(CIC) filter and a 30-tab FIR filter in the decimation. The hybrid SoC is verified in FPGA and implemented in 0.35 CMOS Technology.

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New Gain Optimization Method for Sigma-Delta A/D Converters Using CIC Decimation Filters (CIC 데시메이션 필터를 이용한 Sigma-Delta A/D 변환기 이득 최적화 방식)

  • Jang, Jin-Kyu;Jang, Young-Beom
    • Journal of the Institute of Electronics Engineers of Korea TC
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    • v.47 no.4
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    • pp.1-8
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    • 2010
  • In this paper, we propose a new gain optimization technique for Sigma-Delta A/D converters. In the proposed scheme, multiple gain set candidates showing maximum SNR in the modulator block are selected, and then multiple gain set candidates are investigated for minimum MSE in decimation block. Through CIC decimation filter simulation, it is shown that second SNR ranking candidate in modulation block is the best gain set.

New Gain Optimization Method for Sigma-Delta A/D Convertors (Sigma-Delta A/D 변환기의 새로운 이득 최적화 방식)

  • Jung, Yo-Sung;Jang, Young-Beom
    • Journal of the Institute of Electronics Engineers of Korea TC
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    • v.46 no.9
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    • pp.31-38
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    • 2009
  • In this paper, we propose new gain optimization method for Sigma-Delta A/D converters. First, in proposed method, the 10 candidates are selected through SNR maximization for Sigma-Delta modulator. After then, it is shown that optimum gains can be obtained through MSE calculation for CIC decimation filter. In the simulation, The proposed method has advantages which utilize SNR maximization for modulator and MSE minimization for CIC decimation later. The more candidates are chosen in SNR maximization for modulator, the better gains can be obtained in MSE minimization for CIC decimation filter.

Performance Comparison of Channelization Schemes for Flexible Satellite Transponder with Digital Filter Banks (디지털 필터뱅크 기반 플렉서블 위성중계기를 위한 채널화 기법의 성능비교 연구)

  • Lee, Dong-Hun;Kim, Ki-Seon
    • Journal of the Korea Institute of Military Science and Technology
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    • v.13 no.3
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    • pp.405-412
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    • 2010
  • The purpose of this paper is to compare complexity and to assess flexibility of competing transponder architectures for satellite communication services. For performance comparison, we consider three channelization techniques: digital down converter(DDC) based on the use of the cascaded integrator-comb(CIC) filter, tuneable pipeline frequency transform(T-PFT) based on the tree-structure(TS) and variable oversampled complex-modulated filter banks(OCM-FB) based on the polyphase FFT(P-FFT). The comparison begins by presenting a basic architecture of each channelization method and includes analytical expressions of the number of multiplications as a computational complexity perspective. The analytical results show that DDC with CIC filter requires the heavy computational burden and the perfect flexibility. T-PFT based on the TS provides the almost perfect flexibility with the low complexity over DDC with the CIC filter for a large number of sub-channels. OCM-FB based on the P-FFT shows the high flexibility and the best computational complexity performance compared with other approaches.