A Multi-Perspective Review on Embedded Systems Quality: State of the Field, Challenges, and Research Directions

IF 1.7 4区 计算机科学 Q3 COMPUTER SCIENCE, SOFTWARE ENGINEERING
Müge Canpolat Şahin, Ayça Kolukisa Tarhan
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Abstract

The use of embedded systems has increased significantly over the last decade with the proliferation of Internet of Things technology, automotive and healthcare innovations and the use of smart home appliances and consumer electronics. With this increase, the need for higher quality embedded systems has increased. There are various guidelines and standards, such as ISO/IEC 9126 and ISO/IEC 25010, for product quality evaluation. However, these guidelines cannot be directly applied to embedded systems due to the nature of these systems. Applying traditional quality standards or guidelines on these systems without modification may degrade the performance of the system, increase memory usage or energy consumption, or affect other critical physical metrics adversely. Consequently, several models and approaches have either been introduced or have adopted existing guidelines to produce high-quality embedded systems. With this motivation, to understand the state of the art, and to identify the research directions in the field, we conducted a systematic literature review (SLR). In our research, we have investigated studies published from 1980 to 2024 and provided a comprehensive review of the scientific literature on quality models, quality attributes, employed practices, and the challenges, gaps, and pitfalls in the field.

嵌入式系统质量的多视角综述:领域现状、挑战与研究方向
在过去十年中,随着物联网技术、汽车和医疗保健创新以及智能家电和消费电子产品的普及,嵌入式系统的使用显著增加。随着这种增长,对高质量嵌入式系统的需求也在增加。有各种指南和标准,如ISO/IEC 9126和ISO/IEC 25010,用于产品质量评估。然而,由于嵌入式系统的性质,这些指导方针不能直接应用于这些系统。在这些系统上不加修改地应用传统的质量标准或指导方针可能会降低系统的性能,增加内存使用或能源消耗,或对其他关键物理指标产生不利影响。因此,已经引入了一些模型和方法,或者采用了现有的指导方针来生产高质量的嵌入式系统。带着这样的动机,为了了解该领域的现状,并确定该领域的研究方向,我们进行了系统的文献综述(SLR)。在我们的研究中,我们调查了1980年至2024年发表的研究,并对质量模型、质量属性、采用的实践以及该领域的挑战、差距和陷阱的科学文献进行了全面的回顾。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Journal of Software-Evolution and Process
Journal of Software-Evolution and Process COMPUTER SCIENCE, SOFTWARE ENGINEERING-
自引率
10.00%
发文量
109
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