Experimental evaluation of technology enablers for cutting edge wearables' applications

Krystof Zeman, Pavel Mašek, Jiri Hosek, P. Dvorák, Radovan Josth, T. Jankech
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引用次数: 2

Abstract

Nowdays, wearables are very important part of Internet of Things (IoT) concept. They share a lot of parameters with embedded devices and add some new requirements. Most of those requirements are created by their unique usage - these devices are in user proximity, mostly directly on a human body. This brings also a lot of complications for researchers and engineers. They must consider i.e. safety terms or small dimensions, which are interfering with requirements such as battery life and computational power. This paper presents a study of computational power versus power efficiency of modern System on a Chip (SoC) platform for Internet of Things (IoT). Target of this study is to determine which currently accessible SoC on the market is most suitable for usage in wearables and emerging applications like e.g. augmented reality. Three different platforms were tested and the results are presented at the end of this paper.
对尖端可穿戴设备应用的技术推动者进行实验评估
如今,可穿戴设备是物联网(IoT)概念的重要组成部分。它们与嵌入式设备共享许多参数,并增加了一些新的要求。这些要求大多是由它们独特的使用方式产生的——这些设备离用户很近,大多直接放在人体上。这也给研究人员和工程师带来了许多复杂的问题。他们必须考虑安全因素或小尺寸,这些因素会干扰电池寿命和计算能力等要求。本文研究了现代物联网(IoT)系统芯片(SoC)平台的计算能力与功耗效率。本研究的目标是确定目前市场上可访问的SoC最适合用于可穿戴设备和新兴应用,例如增强现实。本文最后对三种不同的平台进行了测试,并给出了测试结果。
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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