Computer Science ›› 2018, Vol. 45 ›› Issue (10): 189-195.doi: 10.11896/j.issn.1002-137X.2018.10.035
• Software & Database Technology • Previous Articles Next Articles
ZHENG Jiao-jiao1, LI Tong2, LIN Ying1,2, XIE Zhong-wen1,2, WANG Xiao-fang1, CHENG Lei1, LIU Miao1
CLC Number:
[1]LI C Y,LI Y,WU J,et al.A Service-Oriented Software Model Supporting Dynamic Evolution[J].Chinese Journal of Compu-ters,2006,29(7):1020-1028.(in Chinese) 李长云,李莹,吴健,等.一个面向服务的支持动态演化的软件模型[J].计算机学报,2006,29(7):1020-1028. [2]MOKNI A,URTADO C,VAUTTIER S,et al.A formal approach for managing component-based architecture evolution[J].Science of Computer Programming,2016,127:24-29. [3]QING G,JUN L,YINGFEI X,et al.High-confidence software evolution[J].Science China(Information Sciences),2016,59(7):94-112. [4]XIE Z W,MING L,LIN Y,et al.The consistency analysis of software dynamic evolution based on Petri net[J].Computer Science,2016,43(11):234-241.(in Chinese) 谢仲文,明利,林英,等.基于Petri网的软件动态演化的一致性分析[J].计算机科学,2016,43(11):234-241. [5]ZHANG J,LEI H.Research on the reliability evolution of network software[J].Journal of Southwest Jiaotong University,2014,49(2):310-316.(in Chinese) 张靖,雷航.网构软件可靠性演化计算研究[J].西南交通大学学报,2014,49(2):310-316. [6]JIANMEI G,YINGLIN W,TRINIDAD P,et al.Consistency maintenance for evolving feature models[J].Expert Systems With Applications,2011,39(5):4987-4998. [7]LYTRA I,TRAN H,ZDUN U.Constraint-Based Consistency Checking between Design Decisions and Component Models for Supporting Software Architecture Evolution[C]∥European Conference on Software Maintenance & Reengineering.IEEE,2012:287-296. [8]RAMOS R,SAMPAIO A,MOTA A.Conformance notions for the coordination of interaction components[J].Science of Computer Programming,2010,75(5):350-373. [9]GURUNATHAM C H,RAJARAJESWARI P,VASUMATHI D D.Consistency Evolution of Process models based on Structural Analysis and Behavioral Profiles[J].International Journal of Modern Engineering Research,2012,4(2):2568-2573. [10]QUINTON C,PLEUSS C,BERRE D L,et al.Consistency Checking for the Evolution of Cardinality-based Feature Models[C]∥International Software Product Line Conference.2014:122-131. [11]WANG L,PENG X,ZHAO W Y.Framework for Software Dynamic Adaptation Evolution Based on Non-Functional Features[J].Computer Engineering,2008,34(24):74-76.(in Chinese) 王雷,彭鑫,赵文耘.基于非功能性特征的软件动态自演化框架[J].计算机工程,2008,34(24):74-76. [12]ZHOU Y,GE J D,ZHANG P C,et al.Model based verification of dynamically evolvable service oriented systems[J].Science China(Information Sciences),2016,59(3):5-21. [13]MA Y T,HE K Q,LI B,et al.Empirical Study on the Characteristics of Complex Networks in Networked Software[J].Journal of Software,2011,22(3):381-407.(in Chinese) 马于涛,何克清,李兵,等.网络化软件的复杂网络特性实证[J].软件学报,2011,22(3):381-407. [14]LI L M,WANG Z J,TANG L Y.Research on the Testing of Component Functional Behavior[J].Journal of Chinese ComputerSystems,2010,31(4):686-690.(in Chinese) 李良明,王志坚,唐龙业.构件功能行为测试的研究[J].小型微型计算机系统,2010,31(4):686-690. [15]ZHOU Y,HUANG Y K,HUANG Z Q,et al.Towards an Approach of Consistency Verification for Online Software Evolution in Open Environments[J].Journal of Software,2015,26(4):747-759.(in Chinese) 周宇,黄延凯,黄志球,等.一种开放环境下软件在线演化一致性验证方法[J].软件学报,2015,26(4):747-759. [16]MILADI M N,JMAIEL M,KACEM M H.A UML profile and a FUJABA plugin for modelling dynarnic software architectures [C]∥Proceedings of the Workshop on Model-Driven Software Evolution.Washington:IEEE Press,2007:20-26. [17]KACEM M H,KACEM A H,JMAIEL M,et al.Describing dynamic software architectures using an extended UML model [C]∥ACM the Symposium on Applied Computing.New York:ACM Press,2006:1245-1249. [18]QI X Y,WANG T,MA C.Research on interactive behavior consistency of Component Evolution[J].Computer Engineering,2010,36(24):51-53.(in Chinese) 祁晓园,王涛,马川.构件演化的交互行为一致性研究[J].计算机工程,2010,36(24):51-53. |
[1] | ZHANG Jiu-jie, CHEN Chao, NIE Hong-xuan, XIA Yu-qin, ZHANG Li-ping, MA Zhan-fei. Empirical Study on Stability of Clone Code Sets Based on Class Granularity [J]. Computer Science, 2021, 48(5): 75-85. |
[2] | WANG Ji-wen, WU Yi-jian, PENG Xin. Approach of God Class Detection Based on Evolutionary and Semantic Features [J]. Computer Science, 2021, 48(12): 59-66. |
[3] | HE Peng, YU Lv-jun. Analysis of Open Source Software Cliff Walls for Group Collaborative Development [J]. Computer Science, 2020, 47(6): 51-58. |
[4] | ZHANG Jing-xuan, JIANG He. Research Status and Development Trend of Identifier Normalization [J]. Computer Science, 2020, 47(3): 1-4. |
[5] | ZHONG Lin-hui, FU Li-juan, YE Hai-tao, QI Jie, XU Jing. Study on Reverse Engineering Generation Method of Software Evolution History [J]. Computer Science, 2020, 47(11A): 549-556. |
[6] | PAN Hao, ZHENG Wei, ZHANG Zi-feng, LU Chao-qun. Study on Fractal Features of Software Networks [J]. Computer Science, 2019, 46(2): 166-170. |
[7] | TANG Qian-wen, CHEN Liang-yu. Analysis of Java Open Source System Evolution Based on Complex Network Theory [J]. Computer Science, 2018, 45(8): 166-173. |
[8] | WANG Xiao-fang, XIE Zhong-wen, LI Tong, CHENG Lei, ZHENG Jiao-jiao and LIU Xiao-fang. Saas Service Evolution Consistency Checking with Tenant Tolerance [J]. Computer Science, 2018, 45(5): 147-155. |
[9] | HE Yun, WANG Wei and LI Tong. Formal Method for Describing Software Evolution Ability Feature [J]. Computer Science, 2017, 44(7): 128-136. |
[10] | ZHAO Hui-qun and HUANG Yu-han. Program Verification of Software Model’s Algebraic Properties [J]. Computer Science, 2017, 44(11): 240-245. |
[11] | ZHENG Ming, LI Tong, LIN Ying, ZHOU Xiao-xuan, LI Xiang and MING Li. Dynamic Evolution Consistency Verification Method for Component System Modeling [J]. Computer Science, 2017, 44(11): 80-86. |
[12] | ZHONG Lin-hui, LI Jun-jie, XIA Jin and XUE Liang-bo. Research on Evolution Similarity Measurement of Component-based Software Based on Multi-dimensional Evolution Properties [J]. Computer Science, 2016, 43(Z11): 499-505. |
[13] | QIAN Ye, LI Tong, YU Yong, SUN Ji-hong, YU Qian and PENG Lin. Approach to Modeling Software Evolution Process for Synchronous Interaction [J]. Computer Science, 2016, 43(8): 154-158. |
[14] | LIU Jin-zhuo, YU Qian, ZHAO Na, XIE Zhong-wen, YU Yong, HANG Fei-Lu and JIN Yun-zhi. Structure Verification Method for Software Evolution Process Based on Incidence Matrix [J]. Computer Science, 2015, 42(Z6): 519-524. |
[15] | HAN Jun-ming and WANG Wei. Method of Modeling Software Evolution Confirmation Based on LDA [J]. Computer Science, 2015, 42(Z11): 464-466. |
|