• Title/Summary/Keyword: 근접 할당

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Low Complexity Power Allocation Scheme for MIMO Multiple Relay System With Weighted Diagonalization (다중 안테나 다중 중계 시스템을 위한 가중치 대각화 기반의 저 복잡도 전력 할당 기법)

  • Lee, Bumsoo;Lee, Chungyong
    • Journal of the Institute of Electronics and Information Engineers
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    • v.50 no.2
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    • pp.27-34
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    • 2013
  • We propose a simple power allocation scheme for an amplify-and-forward multiple relay system with multiple-input multiple-output antennas. Unlike the existing relay precoding matrix with full elements, proposed precoder is a diagonal matrix whose diagonal element is the relay gain for each stream. Furthermore, a weight vector is applied to streams, such that the mutual information of the system approaches that of the exhaustive search scheme, regardless of the number of antennas. Numerical results show that proposed scheme outperforms the conventional schemes with respect to mutual information.

A Joint Resource Allocation and Routing Scheme for the IEEE 802.16j Multi-hop Relay Networks (IEEE 802.16j 멀티홉 릴레이 네트워크를 위한 통합 자원 할당-라우팅 기법)

  • Lee, Kyung-Joo;Lee, Hyuk-Joon
    • The Journal of The Korea Institute of Intelligent Transport Systems
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    • v.8 no.1
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    • pp.82-91
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    • 2009
  • Routing (or path selection) is one of the key issues of multi-hop relay networks such as the IEEE 802.16j. Moreover, the allocation of appropriate resource such as bandwidth should not only be made in accordance with the paths selected, but the utilization of radio resource of an entire cell should also be maximized. Due to this interdependency between the problems of resource allocation and routing, it is desired these two problems are addressed simultaneously. In this paper, we propose a joint resource allocation and routing scheme for an OFDMA-based multi-hop cellular system. This scheme uses a polynomial time heuristic algorithm called Multi-Dimensional Multi-choice Knapsack Problem (MMKP) in order to find an approximate solution maximizing the total downlink throughput. In the simulation results, we show that the proposed scheme finds a sub-optimal solution which is superior to a link quality-based routing scheme, but slightly worse than the optimal solution.

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A Study of Core-Stateless Mechanism for Fair Bandwidth Allocation (대역 공평성 보장을 위한 Core-Stateless 기법 연구)

  • Kim, Hwa-Suk;Kim, Sang-Ha;Kim, Young-Bu
    • The Journal of Korean Institute of Communications and Information Sciences
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    • v.28 no.4C
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    • pp.343-355
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    • 2003
  • Fair bandwidth allocations at routers protect adaptive flows from non-adaptive ones and may simplify end-to end congestion control. However, traditional fair bandwidth allocation mechanisms, like Weighted Fair Queueing and Flow Random Early Drop, maintain state, manage buffera and perform packet scheduling on a per-flow basis. These mechanisms are more complex and less scalable than simple FIFO queueing when they are used in the interi or of a high-speed network. Recently, to overcome the implementation complexity problem and address the scalability and robustness, several fair bandwidth allocation mechanisms without per-flow state in the interior routers are proposed. Core-Stateless Fair Queueing and Rainbow Fair Queuing are approximates fair queueing in the core-stateless networks. In this paper, we proposed simple Layered Fair Queueing (SLFQ), another core-stateless mechanism to approximate fair bandwidth allocation without per-flow state. SLFQ use simple layered scheme for packet labeling and has simpler packet dropping algorithm than other core-stateless fair bandwidth allocation mechanisms. We presente simulations and evaluated the performance of SLFQ in comparison to other schemes. We also discussed other are as to which SLFQ is applicable.

A Joint Allocation and Path Selection Scheme for Downlink Transmission in LTE-Advanced Relay System with Cooperative Relays (협력 통신을 이용한 LTE-Advanced 릴레이 시스템을 위한 하향링크 통합 자원할당 및 경로선택 기법)

  • Lee, Hyuk Joon;Um, Tae Hyun
    • The Journal of The Korea Institute of Intelligent Transport Systems
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    • v.17 no.6
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    • pp.211-223
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    • 2018
  • Mobile relay systems have been adopted by $4^{th}$ generation mobile systems as an alternative method to extend cell coverage as well as to enhance the system throughput at cell-edges. In order to achieve such performance gains, the mobile relay systems require path selection and resource allocation schemes that are specifically designed for these systems which make use of additional radio resources not needed in single-hop systems. This paper proposes an integrated path selection and resource allocation scheme for LTE-Advanced relay systems using collaborative communication. We first define the problem of maximizing the downlink throughput of LTE-Advanced relay systems using collaborative communication and transform it into a multi-dimensional multi-choice backpacking problem. The proposed Lagrange multiplier-based heuristic algorithm is then applied to derive the approximate solution to the maximization problem. It is shown through simulations that the approximate solution obtained by the proposed scheme can achieve a near-optimal performance.

An On/Off Power Control for OFDM Transmission Scheme in a Cochannel Interference Environment (동일 채널 간섭 환경에서 OFDM 전송 방식을 위한 온/오프 송신 전력 제어)

  • Park, Jin-Kyu;Lim, Chang-Heon;Kim, Jin-Yul
    • The Journal of Korean Institute of Communications and Information Sciences
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    • v.32 no.11A
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    • pp.1182-1189
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    • 2007
  • Frequency reuse in a cellular wireless communication environment gives rise to a phenomenon of cochannel interference. This paper introduces a power control strategy for OFDM based communication systems operating in such an environment. Among the existing power control schemes, IWF(iterative waterfilling) is known to exhibit relatively good performance. However, it requires feedback of power level and bit allocation information for each subcarrier from a receiver to its associated transmitter, which can lead to a considerable overhead, especially for the case of employing large number of subcarriers. Motivated by this, we present a simplified power control scheme with reduced overhead feedback, which allocates some nonzero identical power to the subcarriers of which channel conditions are above a certain threshold and zero power to the other ones. Computer simulations show that the proposed strategy produces a good approximation to the performance of the IWF in terms of the transmission power level while it requires less overhead feedback.

A Study on Optimization Problem based on RFID Reader-to-reader Interference Model and Genetic-resource Allocation Technique (RFID 리더간 간섭 모델에 기반 한 최적화 문제와 유전적 자원할당 기법에 관한 연구)

  • Seo, Hyun-Sik;Lee, Chae-Woo
    • Journal of the Institute of Electronics Engineers of Korea CI
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    • v.46 no.4
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    • pp.51-60
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    • 2009
  • In radio frequency identification(RFID) systems, when an RFID reader uses the same or adjacent frequency with neighbor readers, the interference between the readers may occur, which causes the reader collision and errors in tag recognition. In the previous study on RFID reader anti-collision, the techniques based on Frequency Division Mutiplex(FDM) or Time Division Multiplex(TDM) are proposed. However in these paper, the problem on the condition of RFID reader-to-reader interference considering the distance between interfering readers, frequency and operating time is not define exactly. In this paper, the interference effect is analyzed through RFID reader interference model considering the TDM and FDM, and the optimization problem is defined. To solve this, genetic-resource allocation technique is proposed. Therefore the optimal resource allocation applied RFID environment faithfully is accomplished.

An On/Off Power Control for OFDM Transmission Scheme in a Cochannel Interference Environment (동일 채널 간섭 환경에서 OFDM 전송 방식을 위한 온/오프 송신 전력 제어)

  • Park, Jin-Kyu;Lim, Chang-Heon
    • The Journal of Korean Institute of Communications and Information Sciences
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    • v.32 no.10A
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    • pp.1042-1049
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    • 2007
  • Frequency reuse in a cellular wireless communication environment gives rise to a phenomenon of cochannel interference. This paper introduces a power control strategy for OFDM based communication systems operating in such an environment. Among the existing power control schemes, IWF(iterative waterfilling) is known to exhibit relatively good performance. However, it requires feedback of power level and bit allocation information for each subcarrier from a receiver to its associated transmitter, which can lead to a considerable overhead, especially for the case of employing large number of subcarriers. Motivated by this, we present a simplified power control scheme with reduced overhead feedback, which allocates some nonzero identical power to the subcarriers of which channel conditions are above a certain threshold and zero power to the other ones. Computer simulations show that the proposed strategy produces a good approximation to the performance of the IWF in terms of the transmission power level while it requires less overhead feedback.

Dynamic Bandwidth Allocation Scheme with Considering Downstream Traffic in EPON (EPON에서 하향 데이터 전송을 고려한 동적 대역폭 할당 방안)

  • Kim Eun-Chul;Lee Kang-Won;Choi Young-Soo;Cho You-Ze
    • Journal of the Institute of Electronics Engineers of Korea TC
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    • v.42 no.12
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    • pp.37-44
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    • 2005
  • This paper proposes a hybrid scheme for dynamic bandwidth allocation(DBA) in Ethernet passive optical network(EPON), which combines advantages of adaptive cycle and constant cycle-based schemes. The proposed scheme is based on IPACT scheme, but it operates as adaptive cycle or constant cycle mode according to the queue status of optical line terminal(OLT) for downstream transmission. Simulation results showed that the proposed scheme could achieve a similar throughput in downstream transmission to a constant cycle-based DBA scheme, while producing a similar delay performance to the IPACT scheme in upstream transmission.

RFID 네트워크에서 제약만족을 이용한 리더의 타임슬롯 최적화를 위한 제약조건 모델링

  • Park, Seung-Bo;Yu, Yeong-Hun;Jo, Geun-Sik
    • Proceedings of the Korea Inteligent Information System Society Conference
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    • 2007.05a
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    • pp.239-245
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    • 2007
  • 차세대 유비쿼터스 환경에서 중요한 기술적, 산업적 위치를 차지하는 RFID 네트워크에는 다수의 RFID 리더(Reader)와 수많은 RFID 태그(Tag)들이 통신을 하면서 존재하게 된다. 이러한 RFID 네트워크에서 리더와 태그간의 원활한 통신을 위해서는 주파수 충돌이 발생하지 않아야 한다. 주파수 충돌 현상은 리더와 다수의 태그들 간의 태그 충돌(Tag Collision)과 리더간 주파수 간섭으로 인한 리더간 충돌(Reader Collision)로 나뉘어 질 수 있다. 따라서 리더간 충돌 현상을 피하기 위해서는 근접한 리더들 간에 서로 다른 타임슬롯(Timeslot)을 사용하여 태그와 통신을 시도하여야 한다. 본 연구에서는 RFID 네트워크에서 다수의 리더간 충돌을 최소화하며 안전한 태그 인식을 할 수 있도록 타임 슬롯 할당 문제를 CSP(Constraint Satisfaction Problem)로 접근한다. 그리고 CSP를 풀기 위해 리더간 충돌 문제가 가지고 있는 제약조건을 찾아내고 해를 찾기 위한 목적함수를 모델링 한다.

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Activation-based Strategy and Spatial Strategy in Visual Search (시각탐사에서 활성화 기반 전략과 공간적 전략)

  • Lee, KangWoo;Shin, Myoung-Hee
    • Proceedings of the Korean Society of Computer Information Conference
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    • 2014.01a
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    • pp.149-151
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    • 2014
  • 주의(attention)를 어떻게 할당하는가는 정신물리학뿐만 아니라, 컴퓨터 시각과정을 모델링하는데 중요한 주제 중 하나이다. 기존 연구는 saliency와 같은 활성화 값에 의해서 주의탐사 순위가 결정된다. 본 논문에서는 주의탐사과정을 병렬처리를 통한 활성화 값 추출과정과 순차적 처리를 통한 공간적 전략과정으로 구분하였다. 단서패러다임에 기초한 계산모형을 이용하여, 실제 인간의 수행결과를 AUC와 Levenshtein 척도를 이용하여 비교하였다. Fixation point 비교에서는 인간과 활성화를 기반으로 한 계산모형의 수행은 높은 상관성을 가지고 있었다. 주의궤적 혹은 scanpath 분석에서는 활성화기반 전략보다는 공간적 전략 모형이 더 높은 유사성을 보였다. 이는 주의탐사과정이 병렬처리과정을 통해 얻어진 saliency에 의해서만 결정되는 것이 아니라, 목표물간의 근접성 등의 공간적 전략을 통해 순차적 (sequential) 경로가 생성됨을 의미한다.

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