Service reliability modeling of distributed computing systems with virus epidemics

被引:20
|
作者
Li, Yan-Fu [1 ]
Peng, Rui [2 ]
机构
[1] Ecole Cent Paris SUPELEC, Paris, France
[2] Univ Sci & Technol Beijing, Dongling Sch Econ & Management, Beijing 100083, Peoples R China
关键词
Service reliability; Distributed computing system; Virus epidemics; Continuous-state model; Differential equations; Universal generating function; PARALLEL SYSTEMS; RISK-MANAGEMENT; AVAILABILITY; MULTISTATE; SERIES; CLASSIFICATION; APPROXIMATION; OPTIMIZATION; SIMULATION; REDUNDANCY;
D O I
10.1016/j.apm.2015.01.036
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
Distributed computing (DC) system is widely implemented due to its low setup cost and high computational capability. However, it might be vulnerable to malicious attacks like computer virus due to its network structure. The service reliability, defined as the probability of fulfilling a task before a specified time, is an important metric of the quality of a DC system. This paper attempts to model and compute the service reliability for the DC system under virus epidemics. Firstly, the DC system architecture is modeled by an undirected graph whose nodes (i.e. computers) have a continuous-state model representing its computational capability. Then a set of epidemic differential equations are formulated and solved to obtain the state dynamics of each node under the virus epidemics. A universal generating function (UGF) based approach is proposed to calculate the service reliability of DC system. Numerical results show the effectiveness of the proposed method. The sensitivity analysis on the model parameters, the comparison with centralized computing system and the optimization of defense level parameter are also conducted. (C) 2015 Elsevier Inc. All rights reserved.
引用
收藏
页码:5681 / 5692
页数:12
相关论文
共 50 条
  • [31] THE EFFECT OF DISTRIBUTED POWER SYSTEMS ON CUSTOMER SERVICE RELIABILITY.
    Ma, F.S.
    Patmore, J.W.
    Sidenblad, K.M.
    Electric Power Research Institute, (Report) EPRI EL, 1982,
  • [32] Algorithms for reliability-oriented module allocation in distributed computing systems
    Tom, PA
    Murthy, CSR
    JOURNAL OF SYSTEMS AND SOFTWARE, 1998, 40 (02) : 125 - 138
  • [33] Performance and Reliability of Non-Markovian Heterogeneous Distributed Computing Systems
    Pezoa, Jorge E.
    Hayat, Majeed M.
    IEEE TRANSACTIONS ON PARALLEL AND DISTRIBUTED SYSTEMS, 2012, 23 (07) : 1288 - 1301
  • [34] MARKOV RELIABILITY MODELS OF FAULT-TOLERANT DISTRIBUTED COMPUTING SYSTEMS
    LIRON, M
    MELAMED, B
    YAU, SS
    INFORMATION SCIENCES, 1986, 40 (03) : 183 - 206
  • [35] Task allocation algorithms for maximizing reliability of heterogeneous distributed computing systems
    Mahmood, A
    CONTROL AND CYBERNETICS, 2001, 30 (01): : 115 - 130
  • [36] GENERAL REDUCTION METHODS FOR THE RELIABILITY-ANALYSIS OF DISTRIBUTED COMPUTING SYSTEMS
    LIN, MS
    CHEN, DJ
    COMPUTER JOURNAL, 1993, 36 (07): : 631 - 644
  • [37] Reliability-aware scheduling strategy for heterogeneous distributed computing systems
    Tang, Xiaoyong
    Li, Kenli
    Li, Renfa
    Veeravalli, Bharadwaj
    JOURNAL OF PARALLEL AND DISTRIBUTED COMPUTING, 2010, 70 (09) : 941 - 952
  • [38] Reliability Computing For Service Composition
    Ding, Zuohua
    Jiang, Mingyue
    2009 THIRD IEEE INTERNATIONAL CONFERENCE ON SECURE SOFTWARE INTEGRATION AND RELIABILITY IMPROVEMENT, PROCEEDINGS, 2009, : 449 - 450
  • [39] Reliability analysis and modeling of green computing based software systems
    Malik S.
    Sharma K.
    Bala M.
    Recent Advances in Computer Science and Communications, 2021, 14 (04) : 1060 - 1071
  • [40] Soft computing approaches in reliability modeling and analysis of repairable systems
    Salgado, Marcia F. P.
    Caminhas, Walmir M.
    Menezes, Benjamim R.
    ANNUAL RELIABILITY AND MAINTAINABILITY SYMPOSIUM, 2010 PROCEEDINGS, 2010,