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Genome-wide identification of Receptor-like Protein in Capsicum annuum
DongKue Yun,BoSeu Park,JuneSung Lee,Won-Hee Kang,Seungill Kim,Myung-Shin Kim,Doil Choi,Seon-In Yeom 한국육종학회 2015 한국육종학회 심포지엄 Vol.2015 No.07
Sessile organism, plants constitutively challenged with pathogens have been developed various strategies for protection, such as preformed and inducible defense mechanisms. Receptor-like Proteins(RLPs) play critical roles in defense response as well as in plant development and growth. The domain structure of RLPs consists of extracellular leucine–rich repeats, a transmembrane domain, and a short cytoplasmic tail. Here, we identified putative 170 RLP genes from pepper genome using in-house bioinformatics pipeline. The distribution of RLPs on pepper pseudomolecule showed uneven spread and a number of RLPs were physically clustered by tandem array in the specific chromosome. Motifs analysis of pepper RLPs showed conserved LRR sequences (LxxLxxLDLxxNxxxGxIP). To understand further functional and evolutionary characteristics, evolutional relationship and gene profiling analysis are on progress.
A Near-Exact Sum Rate Approximation of Random Beamforming and Its Application to Mode Optimization
KIM, YoHan,CHAE, HyukJin,YANG, JangHoon,KIM, DongKu The Institute of Electronics, Information and Comm 2009 IEICE TRANSACTIONS ON COMMUNICATIONS - Vol.92 No.3
<P>In this letter, a closed form approximation for the average sum rate of random beamforming is derived. It provides a near-exact approximation for arbitrary numbers of beams, users, and received SNR. The approximation is also applied to an average-sense multimode random beamforming scheme which optimizes the number of random beams without any type of instantaneous channel information. The proposed scheme shows better sum rate performance than random beamforming as well as an existing dual mode random beamforming scheme based on instantaneous channel information, while the number of feedback bits for beam index is reduced compared to random beamforming.</P>
Critical face pressure and backfill pressure in shield TBM tunneling on soft ground
Kim, Kiseok,Oh, Juyoung,Lee, Hyobum,Kim, Dongku,Choi, Hangseok Techno-Press 2018 Geomechanics & engineering Vol.15 No.3
The most important issue during shield TBM tunneling in soft ground formations is to appropriately control ground surface settlement. Among various operational conditions in shield TBM tunneling, the face pressure and backfill pressure should be the most important and immediate measure to restrain surface settlement during excavation. In this paper, a 3-D hydro-mechanical coupled FE model is developed to numerically simulate the entire process of shield TBM tunneling, which is verified by comparing with real field measurements of ground surface settlement. The effect of permeability and stiffness of ground formations on tunneling-induced surface settlement was discussed in the parametric study. An increase in the face pressure and backfill pressure does not always lead to a decrease in surface settlement, but there are the critical face pressure and backfill pressure. In addition, considering the relatively low permeability of ground formations, the surface settlement consists of two parts, i.e., immediate settlement and consolidation settlement, which shows a distinct settlement behavior to each other.
상향링크 다중사용자 MIMO/FDD 시스템을 위한 낮은 복잡도의 안테나 선택 기반 MIMO 스케줄링 기법
김요한(Yohan Kim),조성윤(Sungyoon Cho),이택주(Taekju Lee),김동구(Dongku Kim) 한국통신학회 2007 韓國通信學會論文誌 Vol.32 No.11C
본 논문에서는 상향링크 다중사용자 MIMO/FDD 시스템에서 최적 성능을 보이면서 낮은 복잡도를 가지는 안테나 선택 기반 스케줄링 방식을 제안한다. 가장 복잡하면서 가장 우수한 성능을 보이는 스케줄링 알고리즘인 Brute-Force 스케줄러(BFS)의 성능에 근접하면서 복잡도가 현저히 낮은 세 가지 스케줄링 방식을 제안하고 채널용량, 복잡도, SER 관점에서의 성능 비교를 보인다. 실험 결과 제안한 스케줄링 방식 중 CSS(Capacity-Stacking Scheduler)와 SOAS(Semi-orthogonal Antenna Scheduler) 방식은 낮은 복잡도를 유지하면서 BFS와 같은 성능을 보였으며, 좀 더 복잡도를 줄인 RC-SOAS(Reduced Complexity-SOAS)의 경우 안테나 수가 적은 경우에는 BFS와의 성능차가 거의 없음을 확인하였다. 또한, 스케줄링을 하기 위한 안테나 채널의 집합을 형성하는 방식으로 Full-Set(FS) 방식과 Sub-Set(SS) 방식을 비교하여, SS 방식을 통해 안테나 수가 적은 경우 성능 열화 없이 추가적으로 복잡도의 이득을 얻을 수 있음을 보였다. ??Antenna selection based MIMO schedulers are proposed to achieve the optimal performance with low complexity in uplink multiuser MIMO/FDD system. In this paper, three heuristic schedulers are proposed to approach the optimal performance which is achieved by the optimal Brute-Force Scheduler. Two search methods called sub-set and full-set way are also discussed to set up the antenna channels to be the candidates of the scheduler. Simulation results show that the sum rate and BER performance of the proposed CSS and SOAS schemes are about the same to that of the brute-force scheduler with affordable complexity, while RC-SOAS with further reduced complexity achieves almost the optimal performance in the case of small number of antennas. Moreover, the complexity can be additionally reduced by the sub-set search method when the number of transmit and receive antennas are 2 respectively, which is applicable in the realistic systems.