• 제목/요약/키워드: Markov Arrival Process

검색결과 41건 처리시간 0.027초

A Performance Analysis Model of PC-based Software Router Supporting IPv6-IPv4 Translation for Residential Gateway

  • Seo, Ssang-Hee;Kong, In-Yeup
    • Journal of Information Processing Systems
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    • 제1권1호
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    • pp.62-69
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    • 2005
  • This paper presents a queuing analysis model of a PC-based software router supporting IPv6-IPv4 translation for residential gateway. The proposed models are M/G/1/K or MMPP-2/G/1/K by arrival process of the software PC router. M/G/1/K is a model of normal traffic and MMPP-2/G/1/K is a model of burst traffic. In M/G/1/K, the arriving process is assumed to be a Poisson process, which is independent and identically distributed. In MMPP-2/G/1/K, the arriving process is assumed to be two-state Markov Modulated Poisson Process (MMPP) which is changed from one state to another state with intensity. The service time distribution is general distribution and the service discipline of the server is processor sharing. Also, the total number of packets that can be processed at one time is limited to K. We obtain performance metrics of PC-based software router for residential gateway such as system sojourn time blocking probability and throughput based on the proposed model. Compared to other models, our model is simpler and it is easier to estimate model parameters. Validation results show that the model estimates the performance of the target system.

낮은 교통밀도 하에서 서버 고장을 고려한 복수 서버 대기행렬 모형의 체제시간에 대한 분석 (On the Exact Cycle Time of Failure Prone Multiserver Queueing Model Operating in Low Loading)

  • 김우성;임대은
    • 산업경영시스템학회지
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    • 제39권2호
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    • pp.1-10
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    • 2016
  • In this paper, we present a new way to derive the mean cycle time of the G/G/m failure prone queue when the loading of the system approaches to zero. The loading is the relative ratio of the arrival rate to the service rate multiplied by the number of servers. The system with low loading means the busy fraction of the system is low. The queueing system with low loading can be found in the semiconductor manufacturing process. Cluster tools in semiconductor manufacturing need a setup whenever the types of two successive lots are different. To setup a cluster tool, all wafers of preceding lot should be removed. Then, the waiting time of the next lot is zero excluding the setup time. This kind of situation can be regarded as the system with low loading. By employing absorbing Markov chain model and renewal theory, we propose a new way to derive the exact mean cycle time. In addition, using the proposed method, we present the cycle times of other types of queueing systems. For a queueing model with phase type service time distribution, we can obtain a two dimensional Markov chain model, which leads us to calculate the exact cycle time. The results also can be applied to a queueing model with batch arrivals. Our results can be employed to test the accuracy of existing or newly developed approximation methods. Furthermore, we provide intuitive interpretations to the results regarding the expected waiting time. The intuitive interpretations can be used to understand logically the characteristics of systems with low loading.

Optimal Dynamic Operating Policies for a Tandem Queueing Service System

  • Hwang, Dong-Joon
    • 한국경영과학회지
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    • 제4권1호
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    • pp.51-67
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    • 1979
  • This paper considers the problem of determining an optimal dynamic operating policy for a two-stage tandem queueing service system in which the service facilities (or stages) can be operated at more than one service rate. At each period of the system's operation, the system manager must specify which of the available service rates is to be employed at each stage. The cost structure includes an operating cost for running each stage and a service facility profit earned when a service completion occurs at Stage 2. We assume that the system has a finite waiting capacity in front of each station and each customer requires two services which must be done in sequence, that is, customers must pass through Stage 1 and Stage 2 in that order. Processing must be in the order of arrival at each station. The objective is to minimize the total discounted expected cost in a two-stage tandem queueing service system, which we formulate as a Discrete-Time Markov Decision Process. We present analytical and numerical results that specify the form of the optimal dynamic operating policy for a two-stage tandem queueing service system.

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두 종류의 고객이 도착하는 M/M/2/K Queueing System에서의 Server 조정정책에 관한 연주 (A Study on the Service Control Policy of M/M/2/K Queueing System with Two Types of Customers)

  • 유인선;문기석
    • 산업경영시스템학회지
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    • 제6권8호
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    • pp.93-103
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    • 1983
  • In this paper, we study an optimal service policy of the M/M/2/K queueing system with two types of customers. The incurred costs consist of waiting cost, service cost and incurred costs consist of waiting cost, service cut and changeover cost. The changeover cost occurs when a server who assigned to serve a particular type of customers reassigned to the other types of customers. Two servers serve two types of customers who arrive to the two separate queues. The two types of customers differ in respect of their arrival rate, service rate, waiting cost, and service cost. The servers require a policy, for determining when they should change their service type, which minimizes the long run expected total cost. The policy is obtained by a Markov decision process model that consists of a finite number of states and actions. In order to find the optimal service policy, we define states and actions of the system, compute onestep transition probabilities, and apply to the successive approximations algorithm.

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무선인지기능 무전기의 적정 재고수준 산정 모형에 관한 연구 (A Model to Calculate the Optimal Level of the Cognitive Radiotelegraph)

  • 김영묵;최경환;윤봉규
    • 한국군사과학기술학회지
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    • 제15권4호
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    • pp.442-449
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    • 2012
  • Cognitive Radio(CR) is the technology that allocates the frequency by using dynamic spectrum access. We proposed a model to calculate the optimal level of the cognitive radiotelegraph, where secondary users opportunistically share the spectrum with primary users through the spectrum sensing. When secondary user with cognitive radio detects the arrival of a primary user in its current channel, the secondary user moves to the idle channel or be placed in the virtual queue. We assume that the primary users have finite buffers and the population of secondary users is finite. Using a two-dimensional Makov model with preemptive priority queueing, we could derive the blocking and waiting probability as well as the optimal level of cognitive radiotelegraph under a various range of parameter circumstances.

Computation Offloading with Resource Allocation Based on DDPG in MEC

  • Sungwon Moon;Yujin Lim
    • Journal of Information Processing Systems
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    • 제20권2호
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    • pp.226-238
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    • 2024
  • Recently, multi-access edge computing (MEC) has emerged as a promising technology to alleviate the computing burden of vehicular terminals and efficiently facilitate vehicular applications. The vehicle can improve the quality of experience of applications by offloading their tasks to MEC servers. However, channel conditions are time-varying due to channel interference among vehicles, and path loss is time-varying due to the mobility of vehicles. The task arrival of vehicles is also stochastic. Therefore, it is difficult to determine an optimal offloading with resource allocation decision in the dynamic MEC system because offloading is affected by wireless data transmission. In this paper, we study computation offloading with resource allocation in the dynamic MEC system. The objective is to minimize power consumption and maximize throughput while meeting the delay constraints of tasks. Therefore, it allocates resources for local execution and transmission power for offloading. We define the problem as a Markov decision process, and propose an offloading method using deep reinforcement learning named deep deterministic policy gradient. Simulation shows that, compared with existing methods, the proposed method outperforms in terms of throughput and satisfaction of delay constraints.

은닉 마르코프 모델을 이용한 버스 정보 시스템의 도착 시간 예측 (Arrival Time Estimation for Bus Information System Using Hidden Markov Model)

  • 박철영;김홍근;신창선;조용윤;박장우
    • 정보처리학회논문지:컴퓨터 및 통신 시스템
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    • 제6권4호
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    • pp.189-196
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    • 2017
  • 버스정보시스템은 버스도착시간 예측과 같은 버스와 관련한 여러 정보를 제공한다. BIS는 우리나라 거의 모든 도시에 구축되어 있고 대중교통의 편의성 개선에 능동적인 역할을 하고 있다. 현재 BIS 시스템에서 버스 도착 예정시간을 예측하기 위하여 사용되는 대표적인 방법으로는 이동평균필터, Kalman Filter, 회귀 모형 등이 있다. 버스 도착 시간 예측의 정확성은 BIS 시스템에서 고려하고 있는 교통 상황이나 예측 알고리즘에 따라 차이가 크다. 현재 BIS에서 사용하는 예측 기법은 구간 통과 시간과 거리만을 이용한다. 그러나 도착시간 예측은 교통흐름, 신호주기, 이상 상황, 데이터 결측 등에 큰 영향을 받는다. 버스 도착 시간 예측의 정확도를 높이기 위해서는 위의 문제를 고려하여 모델링해야 하는 어려움이 있다. 은닉 마르코프 모델은 이와 같은 다양한 상황을 효과적으로 모델링 할 수 있다. 따라서 버스 도착 시간 예측의 정확도를 높이기 위해 도착시간에 대한 HMM 예측 모델을 구축했다. 이 모델에서는 순천시의 2015년 한 해 동안 수집한 데이터가 이용되었으며, 순천시에는 2298개의 정류장과 217개의 노선이 있다. 모델은 주중과 주말의 패턴을 다르게 적용하며, 다른 구간과 시간에 대해 모델이 적용된다. 본 논문에서는 버스정보시스템에 은닉 마르코프 모델 적용방법과 검증을 통해 버스정보시스템에서 사용 중인 이동평균필터, Kalman Filter, 회귀 모형을 사용한 예측 방법 보다 정밀한 정확도를 얻는 방법을 제안한다.

시변 패킷 기반 무선 링크에서 정지-대기 ARQ 기반 메시지의 지연 시간 분석 (Delay Analysis of a Message based on the Stop-and-Wait ARQ in a Time- Varying Radio Link)

  • 정명순;박홍성
    • 한국통신학회논문지
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    • 제28권9A호
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    • pp.684-693
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    • 2003
  • 본 논문에서는 시변 패킷 기반 무선 링크에서 메시지와 패킷의 전송 지연 시간을 분석하였다. 메시지는 베르누이(Bernoulli) 프로세스에 따라 도착하고 생성되는 메시지의 길이는 지수 분포를 가진다고 가정하였다. 또한 시간 변이성을 가지는 무선 링크의 특성을 반영하기 위하여 2-상태 마코프 모델을 사용하여 해석하였다. 이 마코프 모델로부터, 패킷의 도착율과 패킷 전송 서비스 시간, 무선 링크의 평균 PER(packet error rate)의 항으로 패킷의 평균 전송 지연 시간과 평균 큐 길이를 해석적으로 분석하였고, 이러한 패킷의 성능 지표들로부터 메시지의 전송지연 시간 및 큐 길이를 유도하였다. 수치적 결과로부터 시변 패킷 기반 무선 링크의 안정적 동작과 전송 성능을 보장하기 위해서는 PER에 따라 메시지 도착율 및 길이가 제한되어야 한다는 것을 알 수 있었다. 또한 성능에는 각 상태의 머무는 시간보다 PER의 영향이 큼을 알 수 있었다.

입출력 큐를 갖는 ATM 스위치에서의 우선순위에 관한 성능 분석 (Performance study of the priority scheme in an ATM switch with input and output queues)

  • 이장원;최진식
    • 전자공학회논문지S
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    • 제35S권2호
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    • pp.1-9
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    • 1998
  • ATM was adopted as the switching and multiplexing technique for BISDN which aims at transmitting traffics with various characteristics in a unified network. To construct these ATM networks, the most important aspect is the design of the switching system with high performance and different service capabilities. In this paepr, we analyze the performance of an input and output queueing switch with preemptive priority which is considered to be most suitable for ATM networks. For the analysis of an input queue, we model each input queue as two separate virtual input queues for each priority class and we approximage them asindependent Geom/Geom/1 queues. And we model a virtual HOL queue which consists of HOL cells of all virtual input queues which have the same output address to obtain the mean service time at each virtual input queue. For the analysis of an output quque, we obtain approximately the arrival process into the output queue from the state of the virtual HOL queue. We use a Markov chain method to analyze these two models and obtain the maximum throughput of the switch and the mean queueing delay of cells. and analysis results are compared with simulation to verify that out model yields accurate results.

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시간제약이 있는 정보처리시스템의 성능분석 모형 (A Model for Performance Analysis of the Information Processing System with Time Constraint)

  • 허선;주국선;정석윤;윤주덕
    • 대한산업공학회지
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    • 제36권2호
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    • pp.138-145
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    • 2010
  • In this paper, we consider the information processing system, which organizes the collected data to meaningful information when the number of data collected from multiple sources reaches to a predetermined number, and performs any action by processing the collected data, or transmits to other devices or systems. We derive an analytical model to calculate the time until it takes to process information after starting to collect data. Therefore, in order to complete the processing data within certain time constraints, we develop some design criteria to control various parameters of the information processing system. Also, we analyze the discrete time model for packet switching networks considering data with no particular arrival nor drop pattern. We analyze the relationship between the number of required packets and average information processing time through numerical examples. By this, we show that the proposed model is able to design the system to be suitable for user's requirements being complementary the quality of information and the information processing time in the system with time constraints.