http://chineseinput.net/에서 pinyin(병음)방식으로 중국어를 변환할 수 있습니다.
변환된 중국어를 복사하여 사용하시면 됩니다.
Packet Loss Concealment Algorithm Based on Speech Characteristics
윤성완,강홍구,윤대희,Yoon Sung-Wan,Kang Hong-Goo,Youn Dae-Hee The Korean Institute of Communications and Informa 2006 韓國通信學會論文誌 Vol.31 No.7C
Despite of the in-depth effort to cantrol the variability in IP networks, quality of service (QoS) is still not guaranteed in the IP networks. Thus, it is necessary to deal with the audible artifacts caused by packet lasses. To overcame the packet loss problem, most speech coding standard have their own embedded packet loss concealment (PLC) algorithms which adapt extrapolation methods utilizing the dependency on adjacent frames. Since many low bit rate CELP coders use predictive schemes for increasing coding efficiency, however, error propagation occurs even if single packet is lost. In this paper, we propose an efficient PLC algorithm with consideration about the speech characteristics of lost frames. To design an efficient PLC algorithm, we perform several experiments on investigating the error propagation effect of lost frames of a predictive coder. And then, we summarize the impact of packet loss to the speech characteristics and analyze the importance of the encoded parameters depending on each speech classes. From the result of the experiments, we propose a new PLC algorithm that mainly focuses on reducing the error propagation time. Experimental results show that the performance is much higher than conventional extrapolation methods over various frame erasure rate (FER) conditions. Especially the difference is remarkable in high FER condition. VoIP(Voice over Internet Pratocol)와 같은 IP 네트워크망에서는 패킷 지연, 지터, 패킷 손실 등의 이유로 QoS(Quality of Service)를 보장받지 못하기 때문에, 패킷 손실을 은닉하는 방법에 대한 연구는 필수적이다. IP망에서 사용되는 대부분의 저전송률 음성부호화기는 자체적으로 패킷 손실 은닉(PLC: Packet Loss Concealment) 알고리즘을 사용하고 있지만, 예측 기법에 기반한 양자화 특성상 패킷 손실 이후에도 에러가 전파되는 문제가 있다. 또한, 손실된 패킷의 음성신호 특성을 고려하지 않고 과거 파라미터값을 반복시키는 기존 PLC 방법은 그 구현은 쉽지만 천이구간에서의 합성신호의 음질이 심각히 저하된다. 본 논문에서는 패킷 손실 환경에서 랩신호 특성에 따른 에러전파 영향을 정량적으로 분석하고 그 결과를 토대로 보간법 기반의 새로운 PLC 알고리즘을 제안한다. 제안한 알고리즘은 파라미터별로 음성신호의 특성을 고려해 선택적으로 보간법을 적용하고, 예측 필터의 메모리를 효과적으로 갱신한다. 성능평가 결과, 제안한 알고리즘은 VoIP에서 널리 사용되는 G.729 의 기존 PLC 알고리즘에 비해 다양한 FER 환경에서 성능이 향상되었다.
윤성완 ( Sung Wan Yoon ),박관영 ( Gwan Yeong Park ),정세웅 ( Se Woong Chung ),강부식 ( Boo Sik Kang ) 한국물환경학회 2014 한국물환경학회지 Vol.30 No.5
As meteorology is the driving force for lake thermodynamics and mixing processes, the effects of climate change on the physical limnology and associated ecosystem are emerging issues. The potential impacts of climate change on the physical features of a reservoir include the heat budget and thermodynamic balance across the air-water interface, formation and stability of the thermal stratification, and the timing of turn over. In addition, the changed physical processes may result in alteration of materials and energy flow because the biogeochemical processes of a stratified waterbody is strongly associated with the thermal stability. In this study, a novel modeling framework that consists of an artificial neural network (ANN), a watershed model (SWAT), a reservoir operation model(HEC-ResSim) and a hydrodynamic and water quality model (CE-QUAL-W2) is developed for projecting the effects of climate change on the reservoir water temperature and thermal stability. The results showed that increasing air temperature will cause higher epilimnion temperatures, earlier and more persistent thermal stratification, and increased thermal stability in the future. The Schmidt stability index used to evaluate the stratification strength showed tendency to increase, implying that the climate change may have considerable impacts on the water quality and ecosystem through changing the vertical mixing characteristics of the reservoir.
연구논문 : 지구온난화가 대청호 수온 및 성층구조에 미치는 영향예측
차윤철 ( Yoon Cheol Cha ),정세웅 ( Se Woong Chung ),윤성완 ( Sung Wan Yoon ) 한국환경영향평가학회 2013 환경영향평가 Vol.22 No.4
According to previous studies, the increased air temperature can lead to change of thermal stratification structure of lakes and reservoirs. The changed thermal stratification may result in alteration of materials and energy flow. The objective of this study was to predict the effect of climate change on the water temperature and stratification structure of Daecheong Reservoir, located in Geum River basin of Korea, using a three-dimensional (3D) hydrodynamic model (ELCOM). A long-term (100 years) weather data set provided by the National Institute of Meteorological Research (NIMR) was used for forcing the 3D model. The model was applied to two different hydrological conditions, dry year (2001) and normal year (2004). It means that the effect of air temperature increase was only considered. Simulation results showed that the surface water temperature of the reservoir tend to increase in the future, and the establishment of thermal stratification can occur earlier and prolonged longer. As a result of heat flux analysis, the evaporative heat loss can increase in the future than now and before. However, the convective heat loss and net long wave radiation from water surface decreased due to increased air temperature.