• 제목/요약/키워드: dynamic load threshold

검색결과 33건 처리시간 0.024초

OSI 망관리 시스템에서 사건복 관리를 위한 1진 피드백 과보고 회피기법 (The Unary Feedback Over-Reporting Avoidance Scheme for the Event Report Management on the OSI Network Management System)

  • 변옥환;진용옥
    • 전자공학회논문지A
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    • 제30A권3호
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    • pp.1-15
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    • 1993
  • In this paper, we propose over-reporting avoidance scheme which avoids congestion of network traffics by adjusting managed system's over-reporting, on the OSI network management model which reports events from managed system to managing system. In case of reporting events from managed system to managing system, management traffic concentration occurs, and it causes over-loading on the managing system and congestion on the network. This scheme takes advantage of feedback from managing system to managed system. Managed system transmits event reports as much as maximum event pertime allocated to itself to managing system, and it sets it's management variables to LOCK state and stops event reports as Threshold time is reached. At the time, managing system directs event reports again by using M-set primitive with referring it's status. With this scheme, distributed processing, dynamic network adaptation, convergence of optimal operation point is possible. In addition to it, a fairness is assured. In order to detect characteristics of the Unary feedback over-reporting avoidance scheme. It is observed a control capability of the event reporting and fairness of each nodes through measuring. ThresholdTime value. It is measured a number of mean activating nodes and maintained time of LOCK state according to event reporting load, and also measured lost ratio of management packet, queuing delay in managing system, and goodput to observe effects of general packet load. Binary feedback scheme. Unary feedback overreporting avoidance scheme and raw scheme on the OSI network management system each are compared and analyzed, and finally proved that the scheme proposed in this study performs better.

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펨토초 레이저 어닐링 기술을 이용한 용액 공정 기반의 비정질 인듐 징크 산화물 트랜지스터에 관한 연구 (Study on Solution Processed Indium Zinc Oxide TFTs Using by Femtosecond Laser Annealing Technology)

  • 김한상;김성진
    • 한국전기전자재료학회논문지
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    • 제31권1호
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    • pp.50-54
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    • 2018
  • In this study, a femtosecond laser pre-annealing technology based on indium zinc oxide (IZO) thin-film transistors (TFTs) was investigated. We demonstrated a stable pre-annealing process to analyze the change in the surface structures of thin-films, and we improved the electrical performance. Furthermore, static and dynamic electrical characteristics of IZO TFTs with n-channel inverters were observed. To investigate the static and dynamic responses of our solution-processed IZO TFTs, simple resistor-load-type inverters were fabricated by connecting a $1-M{\Omega}$ resistor. The femtosecond laser pre-annealing process based on IZO TFTs showed good performance: a field-effect mobility of $3.75cm_2/Vs$, an $I_{on}/I_{off}$ ratio of $1.8{\times}10^5$, a threshold voltage of 1.13 V, and a subthreshold swing of 1.21 V/dec. Our IZO-TFT-based N-MOS inverter performed well at operating voltage, and therefore, is a good candidate for advanced logic circuits and display backplane.

비휘발성 메모리 시스템을 위한 저전력 연쇄 캐시 구조 및 최적화된 캐시 교체 정책에 대한 연구 (A Study on Design and Cache Replacement Policy for Cascaded Cache Based on Non-Volatile Memories)

  • 최주희
    • 반도체디스플레이기술학회지
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    • 제22권3호
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    • pp.106-111
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    • 2023
  • The importance of load-to-use latency has been highlighted as state-of-the-art computing cores adopt deep pipelines and high clock frequencies. The cascaded cache was recently proposed to reduce the access cycle of the L1 cache by utilizing differences in latencies among banks of the cache structure. However, this study assumes the cache is comprised of SRAM, making it unsuitable for direct application to non-volatile memory-based systems. This paper proposes a novel mechanism and structure for lowering dynamic energy consumption. It inserts monitoring logic to keep track of swap operations and write counts. If the ratio of swap operations to total write counts surpasses a set threshold, the cache controller skips the swap of cache blocks, which leads to reducing write operations. To validate this approach, experiments are conducted on the non-volatile memory-based cascaded cache. The results show a reduction in write operations by an average of 16.7% with a negligible increase in latencies.

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작업 이주시 보장/예약 기법을 이용한 프로세서 쓰레싱 빈도 감소 (Reducing the frequency of processor thrashing using guarantee/reservation in process migration)

  • 이준연;임재현
    • 정보처리학회논문지A
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    • 제8A권2호
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    • pp.133-146
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    • 2001
  • In a dynamic load distribution policies, each node gathers the current system sates information before making a decision on load balancing. Load balancing policies based on this strategy can suffer from processor thrashing. In this paper, we propose a new algorithm which attempts to decrease the frequency of the processor thrashing, the algorithm is based on the integration of three components. The first, the algorithm of which determine the size of jobs be transferred. The second, negotiation protocol with obtains a mutual agreement between a sender and a receiver on the transferring job size. And the third, a symmetrically-initiated location policy. The algorithm proposed in this paper used Siman IV as simulation tool to prove the improvement of performance. I analyzed the result of simulation, and compared with related works. The mean response time shows that there are no difference with existing policy, but appear a outstanding improvement in high load. The thrashing coefficient that shows the average response time, CPU overhead and the thrashing ratio at both the receiving and sending node has been used in the analysis. A significant improvement in the average response time and the CPU overhead ratio was detected using our algorithm when an overhead occurred in the system over other algorithm. The thrashing coefficient differed in the sending node and the receiving node of the system. Using our algorithm, the thrashing coefficient at the sending node showed more improvement when there was an overhead in the system, proving to be more useful. Therefore, it can be concluded that the thrashing ratio can be reduce by properly setting the maximum and minimum value of the system’s threshold queue.

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라이다 임베디드 프로세서를 위한 동적 객체인식 아키텍처 구현 (Dynamic Object Detection Architecture for LiDAR Embedded Processors)

  • 정민우;이상훈;김대영
    • Journal of Platform Technology
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    • 제8권4호
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    • pp.11-19
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    • 2020
  • 자율주행 환경은 실시간으로 상황이 급변하기 때문에 동적 객체인식 알고리즘이 반드시 필요하다. 또한, 자율주행자동차에 내장된 센서와 제어모듈이 증가하면서 중앙제어장치의 부하가 급격히 증가하고 있다. 중앙제어장치의 부하를 줄이기 위해서 단일 센서에서 출력되는 데이터의 최적화가 필요하다. 본 연구는 라이다에 탑재된 임베디드 프로세서를 기반으로 한 동적 객체인식 알고리즘을 제안한다. 라이다에서 출력되는 포인트클라우드 기반 객체인식을 위한 오픈소스들이 존재하지만, 대부분 고성능 프로세서를 요구한다. 라이다에 탑재된 임베디드 프로세서는 리소스 제약 때문에 기능 구현을 위한 최적화 된 아케텍처가 반드시 필요하다. 본 연구에서는 자율주행자동차를 위한 라이다 임베디드 프로세서 기반 동적 객체인식 아키텍처를 설계하고, 포인트클라우드 크기와 객체인식 처리 지연시간의 상관관계를 분석하였다. 제안하는 객체인식 아키텍처는 포인트클라우드 크기가 증가함에 따라 객체인식 처리 지연시간이 증가하였고, 특정한 지점에서 프로세서의 과부하가 발생하여 포인트를 처리하지 못하는 현상이 발생하였다.

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VM Scheduling for Efficient Dynamically Migrated Virtual Machines (VMS-EDMVM) in Cloud Computing Environment

  • Supreeth, S.;Patil, Kirankumari
    • KSII Transactions on Internet and Information Systems (TIIS)
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    • 제16권6호
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    • pp.1892-1912
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    • 2022
  • With the massive demand and growth of cloud computing, virtualization plays an important role in providing services to end-users efficiently. However, with the increase in services over Cloud Computing, it is becoming more challenging to manage and run multiple Virtual Machines (VMs) in Cloud Computing because of excessive power consumption. It is thus important to overcome these challenges by adopting an efficient technique to manage and monitor the status of VMs in a cloud environment. Reduction of power/energy consumption can be done by managing VMs more effectively in the datacenters of the cloud environment by switching between the active and inactive states of a VM. As a result, energy consumption reduces carbon emissions, leading to green cloud computing. The proposed Efficient Dynamic VM Scheduling approach minimizes Service Level Agreement (SLA) violations and manages VM migration by lowering the energy consumption effectively along with the balanced load. In the proposed work, VM Scheduling for Efficient Dynamically Migrated VM (VMS-EDMVM) approach first detects the over-utilized host using the Modified Weighted Linear Regression (MWLR) algorithm and along with the dynamic utilization model for an underutilized host. Maximum Power Reduction and Reduced Time (MPRRT) approach has been developed for the VM selection followed by a two-phase Best-Fit CPU, BW (BFCB) VM Scheduling mechanism which is simulated in CloudSim based on the adaptive utilization threshold base. The proposed work achieved a Power consumption of 108.45 kWh, and the total SLA violation was 0.1%. The VM migration count was reduced to 2,202 times, revealing better performance as compared to other methods mentioned in this paper.

ATM 교환기에서 멀티미디어 트래픽 지원을 위한 효율적인 셀 큐잉 및 스케줄링 알고리즘에 관한 연구 (A Study on Efficient Cell Queueing and Scheduling Algorithms for Multimedia Support in ATM Switches)

  • 박진수;이성원;김영범
    • 전기전자학회논문지
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    • 제5권1호
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    • pp.100-110
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    • 2001
  • 본 논문에서는 공유 메모리형 ATM 스위치 설계에 있어서 스위치 자원의 이용률 향상과 서비스 품질 기능 지원을 위한 버퍼관리방안을 고찰하고 여러 기법들의 성능을 비교 분석하였다. 정적 임계법(ST)와 푸시 아웃(PO) 그리고, 동적 임계법(DT)의 성능을 시뮬레이션을 통하여 비교 분석하였고, 특히 동적임계법이 트래픽 부하 및 버스티니스 (Burstyness), 복수개 출력포트간 부하의 불균형성 (Non-uniformity)등의 트래픽 특성 변화에 대해 푸시아웃 (Pushout)에 가까운 견고성 (Robustness)을 가짐을 보였다. 또한, 서비스 품질 기능 구현에 있어서 연결승인제어 (CAC)로부터 구한 트래적 기술자를 이용하여 각 셀 스트림의 서비스 요구조건에 맞도록 메모리 공간을 할당하는 가상분할법 (VP: Virtual partitioning)과 동적분할법 (DP: Dynamic partitioning)등의 버퍼관리 메커니즘을 고찰하였다. 이 기법들을 사용할 경우 규정된 트래픽 (Regulated traffic)과 규정되지 않은 (Unregulated) best-effort 트래픽의 공존이 가능하며 규정되지 않은 트래픽이 존재하더라도 규정된 트래픽이 연결승인제어에 의해 계산된 셀 유실률을 보장받게 됨을 컴퓨터 시뮬레이션을 통하여 보였으며, 특히 과부하 상태에서 DP가 VP에 비해 서비스품질 지원 기능 면에서 우수함을 보였다.

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SVM-Based Incremental Learning Algorithm for Large-Scale Data Stream in Cloud Computing

  • Wang, Ning;Yang, Yang;Feng, Liyuan;Mi, Zhenqiang;Meng, Kun;Ji, Qing
    • KSII Transactions on Internet and Information Systems (TIIS)
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    • 제8권10호
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    • pp.3378-3393
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    • 2014
  • We have witnessed the rapid development of information technology in recent years. One of the key phenomena is the fast, near-exponential increase of data. Consequently, most of the traditional data classification methods fail to meet the dynamic and real-time demands of today's data processing and analyzing needs--especially for continuous data streams. This paper proposes an improved incremental learning algorithm for a large-scale data stream, which is based on SVM (Support Vector Machine) and is named DS-IILS. The DS-IILS takes the load condition of the entire system and the node performance into consideration to improve efficiency. The threshold of the distance to the optimal separating hyperplane is given in the DS-IILS algorithm. The samples of the history sample set and the incremental sample set that are within the scope of the threshold are all reserved. These reserved samples are treated as the training sample set. To design a more accurate classifier, the effects of the data volumes of the history sample set and the incremental sample set are handled by weighted processing. Finally, the algorithm is implemented in a cloud computing system and is applied to study user behaviors. The results of the experiment are provided and compared with other incremental learning algorithms. The results show that the DS-IILS can improve training efficiency and guarantee relatively high classification accuracy at the same time, which is consistent with the theoretical analysis.

The study of frictional damper with various control algorithms

  • Mirtaheri, Masoud;Samani, Hamid Rahmani;Zandi, Amir Peyman
    • Earthquakes and Structures
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    • 제12권5호
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    • pp.479-487
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    • 2017
  • Frictional dampers are used in structural engineering as means of passive control. Meanwhile, frictional damper shave a disadvantage compared to viscous rivals since the slippage force must be exceeded to activate the device, and cannot be ideal full range of possible events. The concept of semi-active control is utilized to overcome this shortcoming. In this paper, a new semi-active frictional damper called Smart Adjustable Frictional (SAF) damper is introduced. SAF damper consists of hydraulic, electronic units and sensors which are all linked with an active control discipline. SAF acts as a smart damper which can adapt its slippage threshold during a dynamic excitation by measuring and controlling the structural response. The novelty of this damper is, while it controls the response of the structure in real time with acceptable time delay. The paper also reports on the results of a series of experiments which have been performed on SAF dampers to obtain their prescribed hysteretic behavior for various control algorithms. The results show that SAF can produce the desired slippage load of various algorithms in real time. Numerical models incorporating control simulations are also made to obtain the hysteretic response of the system which agrees closely with test results.

Active VM Consolidation for Cloud Data Centers under Energy Saving Approach

  • Saxena, Shailesh;Khan, Mohammad Zubair;Singh, Ravendra;Noorwali, Abdulfattah
    • International Journal of Computer Science & Network Security
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    • 제21권11호
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    • pp.345-353
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    • 2021
  • Cloud computing represent a new era of computing that's forms through the combination of service-oriented architecture (SOA), Internet and grid computing with virtualization technology. Virtualization is a concept through which every cloud is enable to provide on-demand services to the users. Most IT service provider adopt cloud based services for their users to meet the high demand of computation, as it is most flexible, reliable and scalable technology. Energy based performance tradeoff become the main challenge in cloud computing, as its acceptance and popularity increases day by day. Cloud data centers required a huge amount of power supply to the virtualization of servers for maintain on- demand high computing. High power demand increase the energy cost of service providers as well as it also harm the environment through the emission of CO2. An optimization of cloud computing based on energy-performance tradeoff is required to obtain the balance between energy saving and QoS (quality of services) policies of cloud. A study about power usage of resources in cloud data centers based on workload assign to them, says that an idle server consume near about 50% of its peak utilization power [1]. Therefore, more number of underutilized servers in any cloud data center is responsible to reduce the energy performance tradeoff. To handle this issue, a lots of research proposed as energy efficient algorithms for minimize the consumption of energy and also maintain the SLA (service level agreement) at a satisfactory level. VM (virtual machine) consolidation is one such technique that ensured about the balance of energy based SLA. In the scope of this paper, we explore reinforcement with fuzzy logic (RFL) for VM consolidation to achieve energy based SLA. In this proposed RFL based active VM consolidation, the primary objective is to manage physical server (PS) nodes in order to avoid over-utilized and under-utilized, and to optimize the placement of VMs. A dynamic threshold (based on RFL) is proposed for over-utilized PS detection. For over-utilized PS, a VM selection policy based on fuzzy logic is proposed, which selects VM for migration to maintain the balance of SLA. Additionally, it incorporate VM placement policy through categorization of non-overutilized servers as- balanced, under-utilized and critical. CloudSim toolkit is used to simulate the proposed work on real-world work load traces of CoMon Project define by PlanetLab. Simulation results shows that the proposed policies is most energy efficient compared to others in terms of reduction in both electricity usage and SLA violation.