QoS-aware Metamorphic Testing: An Elevation Case Study

被引:24
作者
Ayerdi, Jon [1 ]
Segura, Sergio [2 ]
Arrieta, Aitor [1 ]
Sagardui, Goiuria [1 ]
Arratibel, Maite [3 ]
机构
[1] Mondragon Unibertsitatea, Arrasate Mondragon, Spain
[2] Univ Seville, Seville, Spain
[3] Orona, Yangon, Myanmar
来源
2020 IEEE 31ST INTERNATIONAL SYMPOSIUM ON SOFTWARE RELIABILITY ENGINEERING (ISSRE 2020) | 2020年
关键词
Cyber-Physical Systems; Elevators; Metamorphic Testing; Quality of Service;
D O I
10.1109/ISSRE5003.2020.00019
中图分类号
TP31 [计算机软件];
学科分类号
081202 ; 0835 ;
摘要
Elevators are among the oldest and most widespread transportation systems, yet their complexity increases rapidly to satisfy customization demands and to meet quality of service requirements. Verification and validation tasks in this context are costly, since they rely on the manual intervention of domain experts at some points of the process. This is mainly due to the difficulty to assess whether the elevators behave as expected in the different test scenarios, the so-called test oracle problem. Metamorphic testing is a thriving testing technique that alleviates the oracle problem by reasoning on the relations among multiple executions of the system under test, the so-called metamorphic relations. In this practical experience paper, we report on the application of metamorphic testing to verify an industrial elevator dispatcher. Together with domain experts from the elevation sector, we defined multiple metamorphic relations that consider domain-specific quality of service measures. Evaluation results with seeded faults show that the approach is effective at detecting faults automatically.
引用
收藏
页码:104 / 114
页数:11
相关论文
共 50 条
[31]   QoS-Aware Selection of IoT-Based Service [J].
Singh, Manisha ;
Baranwal, Gaurav ;
Tripathi, Anil Kumar .
ARABIAN JOURNAL FOR SCIENCE AND ENGINEERING, 2020, 45 (12) :10033-10050
[32]   QoS-Aware Selection of IoT-Based Service [J].
Manisha Singh ;
Gaurav Baranwal ;
Anil Kumar Tripathi .
Arabian Journal for Science and Engineering, 2020, 45 :10033-10050
[33]   QoS-Aware and Fault-Tolerant Replica Placement [J].
Hu, Jingkun ;
Du, Zhihui ;
Zhang, Sen ;
Bader, David A. .
ALGORITHMS AND ARCHITECTURES FOR PARALLEL PROCESSING, ICA3PP 2020, PT II, 2020, 12453 :157-172
[34]   QoS-aware bandwidth provisioning for IP network links [J].
van den Berg, H ;
Mandjes, M ;
van de Meent, R ;
Pras, A ;
Roijers, F ;
Venemans, P .
COMPUTER NETWORKS, 2006, 50 (05) :631-647
[35]   Component based methodology for QoS-aware network design [J].
Teyssi, Cedric ;
Espes, David ;
Mammeri, Zoubir .
ICSOFT 2007: PROCEEDINGS OF THE SECOND INTERNATIONAL CONFERENCE ON SOFTWARE AND DATA TECHNOLOGIES, VOL SE: SOFTWARE ENGINEERING, 2007, :190-197
[36]   Towards adaptive management of QoS-aware service compositions [J].
Momotko, Mariusz ;
Gajewski, Michal ;
Ludwig, Andre ;
Kowalczyk, Ryszard ;
Kowalkiewicz, Marek ;
Zhang, Jian Ying .
MULTIAGENT AND GRID SYSTEMS, 2007, 3 (03) :299-312
[37]   Quantitative trust management with QoS-aware service selection [J].
Kim, Yukyong ;
Shin, Yongtae ;
Doh, Kyung-Goo .
INTERNATIONAL JOURNAL OF WEB AND GRID SERVICES, 2015, 11 (03) :247-264
[38]   QoS-aware scheduling of Workflows in Cloud Computing environments [J].
Bousselmi, Khadija ;
Brahmi, Zaki ;
Gammoudi, Mohamed Mohsen .
IEEE 30TH INTERNATIONAL CONFERENCE ON ADVANCED INFORMATION NETWORKING AND APPLICATIONS IEEE AINA 2016, 2016, :737-745
[39]   QoS-aware Energy Management Architecture for Cloud Services [J].
Alodib, Mohammed .
2013 IEEE SIXTH INTERNATIONAL CONFERENCE ON SERVICE-ORIENTED COMPUTING AND APPLICATIONS (SOCA), 2013, :328-332
[40]   QoS-aware mobile service transactions in a wireless environment [J].
Younas, Muhammad ;
Chao, Kuo-Ming ;
Wang, Ping ;
Huang, Chun-Lung .
CONCURRENCY AND COMPUTATION-PRACTICE & EXPERIENCE, 2007, 19 (08) :1219-1236