J P Amorim Vicente, C Silva Mateus, A R Oliveira Ricardo
Department of Computing, Federal University of Ouro Preto, Morro do Cruzeiro Campus, Ouro Preto, CEP 35400-000, Brazil.
Sensors (Basel). 2019 Apr 22;19(8):1904. doi: 10.3390/s19081904.
Wearable device requirements currently vary from soft to hard real-time constraints. Frequently, hardware improvements are a way to speed-up the global performance of a solution. However, changing some parts or the whole hardware may increase device complexity, raising the costs and leading to development delays of products or research prototypes. This paper focuses on software improvements, presenting a tool designed to create different versions of operating systems (OSs) fitting the specifications of wearable devices projects. Authors have developed a software tool allowing the end-user to craft a new OS in just a few steps. In order to validate the generated OS, an original wearable prototype for mining environments is outlined. Resulting data presented here allows for measuring the actual impact an OS has in different variables of a solution. Finally, the analysis also allows for evaluating the performance impact associated with each hardware part. Results suggest the viability of using the proposed solution when searching for performance improvements on wearables.
目前,可穿戴设备的要求在软实时约束和硬实时约束之间有所不同。通常,硬件改进是提高解决方案整体性能的一种方式。然而,更改部分或整个硬件可能会增加设备的复杂性,提高成本,并导致产品或研究原型的开发延迟。本文着重于软件改进,介绍了一种旨在创建符合可穿戴设备项目规格的不同版本操作系统(OS)的工具。作者开发了一种软件工具,使终端用户能够在短短几步内制作出一个新的操作系统。为了验证生成的操作系统,概述了一种用于采矿环境的原始可穿戴原型。此处呈现的结果数据能够衡量操作系统对解决方案中不同变量的实际影响。最后,该分析还能够评估与每个硬件部件相关的性能影响。结果表明,在寻求可穿戴设备性能提升时,使用所提出的解决方案是可行的。