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50MHz 2단 온도계 디코더 방식을 사용한 10 bit DAC 설계 (Design and Implement of 50MHz 10 bits DAC based on double step Thermometer Code)

  • 정준희;김영식
    • 대한전자공학회논문지SD
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    • 제49권6호
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    • pp.18-24
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    • 2012
  • 본 논문에서는 $0.18-{\mu}m$ CMOS 공정으로 제작된 무선 센서네트워크 송신기에 적용 가능한 50MHz/s 저전력 10비트 DAC 측정 결과를 제시한다. 제작된 DAC는 일반적 세그멘티드 방식과는 다르게 2단 온도계 디코더를 이용한 전류 구동 방식으로, 10비트를 상위 6비트와 하위 4비트로 나누어 구현하였다. 상위 6 비트의 온도계 디코더는 3비트의 행 디코더와 3비트의 열 디코더로 행과 열을 대칭적으로 구성하여 상위 전류 셀을 제어하였고, 하위 4비트도 온도계 디코더 방식으로 하위 전류셀을 구동하도록 설계하였다. 상위와 하위 단위 전류 셀은 셀 크기를 바꾸는 대신 바이어스 회로에서 하위 단위 전류의 크기가 상위 단위 전류와의 크기에 비해 1/16이 되도록 바이어스 회로를 설계하였다. 그리고 상위와 하위 셀간의 온도계 디코더 신호의 동기를 위해 입력 신호 및 디코딩 된 신호에 모두 동기화 래치를 적용하여 Skew를 최소화하도록 설계하였다. 측정결과 DAC는 50MHz클럭에서 최대 출력구동범위가 2.2Vpp이고, 이 조건에서 DC전원은 3.3 V에서 DC전류 4.3mA를 소모하였다. 그리고 DAC의 선형성 특성은 최대 SFDR이 62.02 dB, 최대 DNL은 0.37 LSB, 최대 INL은 0.67 LSB로 측정되었다.

효율적인 메모리 관리 구조를 갖는 H.264용 고성능 디블록킹 필터 설계 (Design of a Pipelined Deblocking Filter with efficient memory management for high performance H.264 decoders)

  • 유용훈;이찬호
    • 대한전자공학회논문지SD
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    • 제45권1호
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    • pp.64-70
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    • 2008
  • 고성능 영상 압축 알고리즘으로서 널리 사용되고 있는 H.264 디코더의 디블록킹(Deblocking) 필터는 복호된 영상의 블록화 현상을 제거함으로써 영상의 질을 높이는 역할을 하는데 연산량이 많은 유닛중 하나이다. 본 논문에서는 효율적인 디블록킹 필터 설계를 위해 파이프라인 구조 및 1-D 필터를 사용하고 효율적인 메모리 관리를 통해 하드웨어 면적과 연산 사이클 수를 줄이고 H.264 디코더의 성능을 향상시킬 수 있는 하드웨어 구조를 제안한다. 제안된 구조에서는 픽셀의 재배치를 통해 동일한 1-D 필터를 이용하여 수직방향의 필터연산과 수평방향의 필터연산을 모두 지원한다. 또한 4 개의 메모리 블록 구조를 이용하여 현재 매크로블록의 픽셀과 인접한 다른 매크로블록의 픽셀의 접근 및 저장을 효율적으로 할 뿐만 아니라 필터 연산중에 움직임 보상기의 출력 픽셀을 저장하여 디블록킹 필터와 움직임 보상기 사이의 병목현상을 제거하였다. 이를 통해 디블록킹 필터에 관련된 메모리의 크기를 최소화하고 H.264 디코더의 성능을 향상시키는 이점을 얻을 수 있다. 제안된 디블록킹 필터는 Verilog-HDL을 이용하여 설계하고 FPGA를 통해 검증하였다. 합성 결과 77 MHz에서 HD 영상 디코딩이 가능함을 확인하였다.

무선 센서 네트워크에서 전송 효율과 에너지 소비에 대한 블록 FEC 심볼 크기 영향 분석 (Analysis of Block FEC Symbol Size's Effect On Transmission Efficiency and Energy Consumption over Wireless Sensor Networks)

  • 안종석;윤종혁;이영수
    • 정보처리학회논문지C
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    • 제13C권7호
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    • pp.803-812
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    • 2006
  • 본 논문에서는 저속의 무선 센서 네트워크(WSN: Wireless Sensor Network)에서 블록 FEC(Forward Error Correction) 알고리즘의 심볼 크기의 변화에 따른 802.11 MAC 프로토콜의 전송 효율과 전송 에너지를 해석적으로 분석한다. 블록 FEC 알고리즘은 심볼(symbol) 단위로 오류를 복원하므로, 주어진 무선 센서 채널에서 같은 FEC 체크 비트(check bit) 량을 사용하더라도 블록 FEC 알고리즘의 오류 패킷 복원률은 블록 FEC 심볼 크기에 의존적이다. 즉, 같은 양의 FEC 체크 비트를 사용하는 경우에, 연속된 군집 오류 길이는 작으면서 군집 오류가 자주 발생하는 채널에서는 작은 FEC 심볼이, 이에 반해 군집 오류의 길이는 크고 군집 오류 개수가 작은 군집적 분포를 보이는 채널에서 큰 FEC 심볼이 효율적이다. 심볼 크기의 영향을 평가하기 위해서 본 논문에서는 센서 노드 TIP50CM을 사용하는 WSN에서 수집한 패킷 트레이스를 기반으로 WSN 채널을 Gilbert 모델로 모델링하고, 심볼 크기가 다른 RS(Reed-Solomon) 코드를 생성하고 해석하기 위한 에너지를 측정하였다. 이러한 모델링된 채널과 각 RS 코드 생성과 해석 에너지를 이용하여 FEC 심볼 크기에 따른 RS FEC 코드를 채택한 802.11 MAC 프로토콜의 전송 효율과 전송 에너지를 계산하였다. 실제 측정 데이터와 해석적으로 계산한 데이터를 결합한 계산에 의하면 비슷한 FEC 체크 비트 량을 사용하더라도 FEC 심볼 크기에 따라 전송 효율은 최대 4.2%, 그리고 소요 에너지는 최대 35%의 차이가 발생한다.

SVC 스트리밍을 위한 시간 계층 기반의 동적 큐 관리 알고리즘 (An Active Queue Management Algorithm Based on the Temporal Level for SVC Streaming)

  • 구자헌;정광수
    • 한국정보과학회논문지:정보통신
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    • 제36권5호
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    • pp.425-436
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    • 2009
  • 최근 광 대역 통합 네트워크에서 고품질의 멀티미디어 서비스에 대한 사용자 요구가 증가하고 있다. 또한, 사용자 단말기기의 다양화 및 대화면 디스플레이 장치의 보급으로 다양한 형태의 서비스 품질(QoS)에 대한 요구도 증가하고 있다. 이를 위해 네트워크 관점에서 동적 큐 관리 알고리즘과 같은 인터넷 성능을 개선하여 서비스 품질을 보장하는 연구와 종단 관점에서 미디어의 품질을 보장하기 위한 SVC(Scalable Video Coding) 부호화 기법에 대한 연구가 활발히 진행 중에 있다. 그러나, 기존 동적 큐 관리 알고리즘은 비디오 부호화 기술의 본질적인 특성에 대하여 고려하지 못하여 서비스 품질을 보장하는 못하는 문제점을 가지고 있다. 본 논문에서는 현재 혼잡제어 알고리즘의 문제점을 개선하기 위해 NAL (Network Abstract Layer)의 헤더 내 TID (Temporal_ID)를 통해 SVC 부호화 기술의 특성을 파악하여 프레임간 의존성이 낮은 프레임의 패킷에 대하여 차등적으로 패킷을 폐기하는 75-AQM (Temporal Scalability - Active Queue Management) 알고리즘을 제안하였다. 제안한 75-AQM 알고리즘은 혼잡상황 시 차등적인 패킷 폐기를 통해 SVC 부호화 기법을 이용하는 스트리밍 서비스에 대하여 안정적인 비디오 복호화를 통해 멀티미디어 서비스 품질을 보장하였다.

주택의 조명과 거주자의 면경착용 실태조사연구 (A Study on the Illumination of Household and Research on the Actual Conditions of Wearing Spectacles in Dwellers)

  • 석호작;남철현
    • 한국환경보건학회지
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    • 제17권2호
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    • pp.54-66
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    • 1991
  • As a result of measuring illumination and making up a question at home visit directly by investigator who trained over twenty days period from October 4 to 24, 1990, in order to render help which illumination problem against house, society against eyes or framing of health instruction potgram by seizing natural lighting actual conditions of house and actual conditions of wearing spectacles and by investigating interrelationship, I can summarize as follows. 1) In property of investigation subject, woman 66.9%, In an age, the twenties was largest of 27.4%, the forties was 20.2%, the fifties was 18.6%, the thirties was 17.4%. In academic career, those of upper secondary school grauates was largest of 28.6%, those who possess university career was 25.9%, those who middle school career was 20.9%, decoding of Korean alphabet was 2%. 2) By a residence area, a big city was 43.3%, farming and fishing villages were 20.3%, the rest was a small town and the administrative office of town, township. In positon of house, the middle area was 43.6%, resident of suburb area was 38.0%. In form of house, a Korean-style house was 40.8%, a western-style house was 34.8%, an apartment house was 11.0%. In the a standard of living, the middle classes 77.2%, the lower classes were 15.3%. In residential house unit of area, from 21 to 30 unit of area was largest of 31.5%, from 10 to 20 unit of area was 19.9%, from 31 to 40 was 18.7%. 3) The wearing spectacles rate of study user was 44.1%. By the area, those who wearing spectacles was more than a half of 50.8% in the resident of big city area. As passing from the farm area to the city, that is being resident of big city was high wearing spectacles rate. In position of house, as being residence in central street showed high wearing spectacles rate. (central street was 51.5%, the middle area was 44.5% and the suburb area was 40.1%.) It seemed similarity difference a variable by position of house from wearing spectacles in standard of 1%. By form of house, wearing spectacles rate those who resident in apartment house was 49.5%, that rate those who resident in a western-style house was high of 49.0%, that rate those who resident in a Korean-style house was the lowest 39.0%. By social position of resident in room, in students case who study showed very high, as university students were very high of 62.3% idn wearing spectacles rate, middle and high school students 'were 50.0%, members of society were 47.6%, workers 20.3%. It seemed similarity difference from academic career in standard of 1%. By an age, the thirties was high of 54.1% in wearing spectacles rate, the twenties was 43.2%, the teenage was the lowest of 11.8%. 4) In illumination of study, over 200Lux was high of 40.1%. but below 99Lux which inappropriate illumination to see the books was 32.4%. Average by area, below 99Lux was 22.7% and over 400Lux was 50.0% in case of wooden floor. As examine by area, below 99Lux was high of 27.0% a case of wooden floor in the big city area, it was not good in illumination passing from the farm area(15.0%) to the city(19.0%). Average illlumination by area of the main living room below 99Lux was high of 37.5%, less than 200Lux was 58.5% of whole. In general, illumination of the main livingroom was inappropriate. By area, the big city was 32.5% below 99Lux, the middle and small city area were 33.8%, town and township area were 45.0%, farming and fishing area were 42.8%. By area, in the big city, illumination of study was 52.5% over 200Lux and 28.9% below 99Lux. In case of the middle and small city, study user of below 99Lux was 38.8% and over 200Lux was 46.9%. In case of the seat of town township, below 99Lux was 34.1% and over 200Lux was 39.7%. In case of farming and fishing area, illumination of study was 33.4% below 99Lux and 48.4% over 200Lux. It tends to high rate of inappropriate illumination. 5) By position of house, in case of wooden floor, less than 100Lux was 24.5% in central street. It was bad illumination than others position of house. In case of the main livingroom, less than 100Lux was 40.4% in the suburb area. It was bad iliumnation than others position of house. In case of study, less than 100Lux was 35.4% in the middle area, it was worse in illumination. In case of the main living room, is seemed similarity difference in standard of 1%. 6) By form of house, in case of wooden floor, illumination of less than 100Lux was 23.8% in a western-style house, it was bad illumination than others form of house. In case of the main livingroom, illumination of less than 100Lux was 47.4% in a Korean-style house, it was remarkably bad illumination than others form of house. In case of study, a Korean-style house was 38.8%, it was very bad illumination than others form of house. In case of the main livingroom and study, it seemed similatrity difference each as P < 0.01 and P < 0.05 in standard of 1%. 7) The wearing spectacles rate of those who use room of illumination over 400Lux was 40.7%, and that of those who use room of illumination less than 100Lux was 28.1%. It seemed similarity differecce in standard of 1%. 8) In period of wearing spectacles, 21.3% of total investigator-highest-was from before five years, 8.6% was from before three years. Among those who use of illumintion less than 99Lux, 34.0% began to wear spectacles from before two years 31.7% was from before five years, 30.3% was from before four years. It seemed similarity difference from period of wearing spectacles by illumination in standard of 1 %. 9) Among cause which sight grow worse, the first was that it was each 33.2% and 27.4% in response rate because watch TV nearly to wearing spectacles person and non-wearing person. The second was that a lot of seeing books was 25.3% in wearing spectacles person and response rate for dark illumination was 7.4% in nonwearing spectacles person. It seemed similarity difference in standard of 1%. (P < 0.01). 10) In experience which take medicine good for eyes, it was 50.1% in wearing spectacles person and 8.5% in non-wearing spectacles person. It seemed similarity difference in standard of 1%(P < 0.01). As we have seen above, inappropriate illumination can be a cause of wearing spectacles. Nevertheless, actually, is realities to indifferent against illumination of house. So it must learn knowledge about health obstacle of illumination through society instruction and school eduction against students as well as general residents. In case that natural lighting is inappropriate structural of house, we must be able to maintain appropriate illumination through artificial illumination. And so eyes which is core of human life have to be protected, related the authorities, related group, and all health medical personnel will organically cooperate with and make efforts.

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