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Iterative Calculation을 이용한 UWB 위치측정에서의 오차감소 기법
장성진(Sung Jeen Jang),황재호(Jae Ho Hwang),최낙현(Nack Hyun Choi),김재명(Jae Moung Kim) 대한전자공학회 2008 電子工學會論文誌-TC (Telecommunications) Vol.45 No.12
유비쿼터스 사회에서는 사용자의 요구를 충족시키기 위하여 사용자가 갖고 있는 기기에 대한 정밀한 위치측정을 필요로 한다. 위치 측정은 송수신기 간에 신호의 전송을 기반으로 한 거리측정을 통해 이뤄지기 때문에 위치측정의 오차는 거리측정의 오차로부터 발생한다. 신호가 전송되는 기기 간에 장애물이 존재하게 되면 LoS(Line of Sight)신호 성분이 줄어들게 되어 NLoS(Non-Line of Sight) 채널이 발생하게 되고 정확한 시점에서 신호를 검출할 수 없게 되어 거리오차가 발생하게 된다. 일반적인 위치측정 알고리즘은 참조기기(Reference Device)의 거리측정 성능에 관계없이 참조기기와 목표기기(Target Device)간의 거리측정 값을 위치 계산에 그대로 사용하기 때문에 거리측정 값으로부터 발생되는 오차가 위치 계산에 더해지게 된다. 따라서 본 논문에서는 각 참조기기가 속해 있는 채널특성을 판별하고 NLoS채널로부터 계산된 거리와 LoS채널로부터 계산된 거리를 다른 비율로 적용하여 위치측정의 오차를 줄이는 Iterative Calculation 기법을 제안한다. 참조기기는 수신된 신호의 Kurtosis, Mean, Excess Delay, RMS Delay spread를 통해 NLoS와 LoS 채널을 구분한다. 이를 통해 구분된 채널마다 각기 다른 비율로 랜덤 거리를 계산된 거리에 더하여 위치를 계산하는 것을 반복적으로 수행한 뒤 평균값을 계산하여 확률적으로 존재할 가능성이 높은 목표기기의 위치를 찾아감으로써 NLoS채널로부터 계산된 거리오차가 위치측정에 미치는 영향을 줄이는 방법을 제안하고 시뮬레이션을 통해 기존의 방식과 비교했을 때 성능향상을 확인하였다. In Ubiquitous Society, accurate Location Calculation of user's device is required to achieve the need of users. As the location calculation is processed by ranging between transceivers, if some obstacles exist between transceivers, NLoS(Non-line-of-Sight) components of received signal increase along with the reduction of LoS(Line-of-Sight) components. Therefore the location calculation error will increase due to the NLoS effect. The conventional location calculation algorithm has the original ranging error because there is no transformation of ranging information which degrades the ranging accuracy. The Iterative Calculation method which minimizes the location calculation error relys on accurately identifying NLoS or LoS condition of the tested channel. We employ Kurtosis, Mean Excess Delay and RMS Delay spread of the received signal to identify whether the tested channel is LoS or NLoS firstly. Thereafter, to minimize location calculation error, the proposed Iterative Calculation method iteratively select random range and finds the averaged target location which has high probability. The simulation results confirm the enhancement of the proposed method.
( Sung Hwan Sohn ),( Sung Jeen Jang ),( Jae Moung Kim ) 한국인터넷정보학회 2010 KSII Transactions on Internet and Information Syst Vol.4 No.4
Cognitive Radio is an advanced enabling technology for the efficient utilization of vacant spectrum due to its ability to sense the spectrum environment. It is important to determine accurate spectrum utilization of the primary system in a cognitive radio environment. In order to define the spectrum utilization state, many CR systems use what is known as the quiet period (QP) method. However, even when using a QP, interference can occur. This causes reduced system throughput and contrary to the basic condition of cognitive radio. In order to reduce the interference time, a frequency-hopping algorithm is proposed here. Additionally, to complement the loss of throughput in the FH, a HMM-based channel prediction algorithm and a channel allocation algorithm is proposed. Simulations were conducted while varying several parameters. The findings show that the proposed algorithm outperforms conventional channel allocation algorithms.
Cognitive Radio 환경에서 고유치 값 검출을 통한 실시간 센싱 방법
손성환(Sung Hwan Sohn),장성진(Sung Jeen Jang),김재명(Jae Moung Kim) 大韓電子工學會 2010 電子工學會論文誌-TC (Telecommunications) Vol.47 No.3
Cognitive Radio는 비어있는 주파수 대역을 적절하게 사용하여 주파수 자원 부족의 문제를 완화하는데 효과적인 방법이다. 우선 사용자 시스템의 간섭 없는 데이터 전송을 보장하기 위해서는 휴지기간(quite period)동안의 스펙트럼 센싱이 제안되어왔다. 그러나 CR시스템에서 우선 사용자(우선 사용자 : Primary User)는 예상치 못한 시간에 나타날 수 있기 때문에 우선 사용자에 대한 간섭을 막기에는 충분하지 못하다. 본 논문에서는 기존 스펙트럼 센싱방법의 한계에 대해 설명하고 실시간으로 우선 사용자를 검출하기 위해 이를 모니터링하는 블록을 갖는 새로운 CR 수신기를 제안한다. 마지막으로 시뮬레이션을 통해 2개의 문턱값으로 우선 사용자를 검출하는 고유치값 기반의 검출방법을 검증한다. Cognitive Radio, which adaptively utilizes the vacant licensed spectrum band, is considered as an effective way to alleviate the scarcity of spectrum resource shortage. In order to guarantee the non-interference transmission of primary system, spectrum sensing, especially in quiet period, is proposed. However, it is insufficient to avoid the unacceptable interference caused by Cognitive Radios, because the primary user may appear anytime that is unpredictable. In this paper, we address the deficiency of conventional spectrum sensing and propose a novel Cognitive Radio receiver structure with monitoring function block to detect the appearance of primary user in a real-time manner. Simulations prove that the proposed eigenvalue based detection method together with the two-threshold decision procedure performs properly.
( Junrong Gu ),( Sung Jeen Jang ),( Jae Moung Kim ) 한국인터넷정보학회 2012 KSII Transactions on Internet and Information Syst Vol.6 No.1
Most of the current frequency hopping (FH) based dynamic spectrum access (DSA) methods concern a reactive channel access scheme with synchronous inter-channel spectrum sensing, i.e., FH is reactively triggered by the primary user (PU)`s return reported by spectrum sensing, and the PU channel to be switched to is assumed precisely just sensed or ready to be sensed, as if the inter-channel spectrum sensing moments are synchronous. However, the inter-channel spectrum sensing moments are more likely to be asynchronous, which risks PU suffering more interference. Moreover, the spectrum sensing is usually erroneous, which renders the problem more complex. To address this problem, we propose a proactive FH based DSA method against both erroneous spectrum sensing and asynchronous inter-channel spectrum sensing (moments). We term it as proactive DSA. The optimal FH sequence is obtained by dynamic programming. The complexity is also analyzed. Finally, the simulation results confirm the effectiveness of the proposed method.
Basic Simulation Platform Design for TDLS Relative Navigation
Heon Ho Choi,Sung Lyong Cho,Sang Wook Hwang,Mi Young Shin,Jeen Sang Jang,Chansik Park,Sang Jeong Lee 제어로봇시스템학회 2009 제어로봇시스템학회 국제학술대회 논문집 Vol.2009 No.8
This paper illustrates the basic concept and architecture of Relative navigation in TDLS and a relativenavigation simulation platform which is used as a basic test bed of TDLS. The simulation platform allows users todetermine the simulation condition through GUI and makes it possible to generate the trajectories and TOAmeasurement according to a given mission. Using the designed platform, the effects of several important designparameters such as the geometry, the navigation algorithm and the data transmission duration are analyzed.
Anion co-doped Titania for Solar Photocatalytic Degradation of Dyes
Lee, Young-Seak,Kim, Sang-Jin,Venkateswaran, P.,Jang, Jeen-Seok,Kim, Hyuk,Kim, Jong-Gyu Korean Carbon Society 2008 Carbon Letters Vol.9 No.2
In order to investigate the effect of doping C, N, B and F elements on $TiO_2$ for reducing the band gap, the heat treatment of $TiO_2$ was carried out with tetraethylammonium tetrafluoroborate. Through XRD and XPS analysis, the C, N, B and F doped anatase $TiO_2$ was confirmed. According to the increase of temperature during treatment, the particle size was increased due to aggregation of $TiO_2$ with elements (B, C, N and F). To investigate the capacity of photocatalyst for degradation of dye under solar light, the degradation of acridine orange and methylene blue was conducted. The degradation of dyes was carried out successfully under solar light indicating the effect of doping elements (B, C, N and F) on $TiO_2$ for reducing the band gap effectively.