ZOE:一种利用异构计算的无云对话连续传感可穿戴设备

N. Lane, Petko Georgiev, C. Mascolo, Ying Gao
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引用次数: 22

摘要

可穿戴革命,作为一种大众市场现象,终于到来了。因此,可穿戴设备在未来5到10年内应该如何发展的问题,在社会和商业上的重要性越来越高。例如,一系列开放的设计和系统问题正在出现:可穿戴设备如何从主要关注健康和健身转变为跟踪更广泛的生活事件?用户与可穿戴设备交互和使用收集到的数据的主要方法是什么?可穿戴设备是否注定要依赖云和/或智能手机来运行?为了建立解决这些问题所需的理解和经验的临界质量,我们设计并实施了ZOE——一个火柴盒大小(49克)的衣领或翻领传感器,它将可穿戴设备的边界推向了一个重要的新方向。首先,ZOE旨在对连续感测数据执行多个深度传感器推断,涵盖日常生活的关键方面(即个人、社会和地点信息);同时,它不仅在传统分析中提供这些数据,还通过语音对话系统提供这些数据,该系统能够回答用户提出的即兴问题。(这周我是不是比平时更有压力?)关键的是,与其他支持富传感或对话的可穿戴设备不同,ZOE在没有云或智能手机支持的情况下实现了这一点——这对隐私有重要的副作用,因为所有用户信息都可以保留在设备上。其次,ZOE结合了最新的单片系统技术和定制板,实现了三层低功耗处理器层次结构。我们将这种硬件设计与管理系统延迟的软件技术相结合,同时仍然允许ZOE保持节能(典型寿命为30小时),尽管它的高传感工作量,小尺寸,并且需要保持对用户对话请求的响应。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
ZOE: A Cloud-less Dialog-enabled Continuous Sensing Wearable Exploiting Heterogeneous Computation
The wearable revolution, as a mass-market phenomenon, has finally arrived. As a result, the question of how wearables should evolve over the next 5 to 10 years is assuming an increasing level of societal and commercial importance. A range of open design and system questions are emerging, for instance: How can wearables shift from being largely health and fitness focused to tracking a wider range of life events? What will become the dominant methods through which users interact with wearables and consume the data collected? Are wearables destined to be cloud and/or smartphone dependent for their operation? Towards building the critical mass of understanding and experience necessary to tackle such questions, we have designed and implemented ZOE - a match-box sized (49g) collar- or lapel-worn sensor that pushes the boundary of wearables in an important set of new directions. First, ZOE aims to perform multiple deep sensor inferences that span key aspects of everyday life (viz. personal, social and place information) on continuously sensed data; while also offering this data not only within conventional analytics but also through a speech dialog system that is able to answer impromptu casual questions from users. (Am I more stressed this week than normal?) Crucially, and unlike other rich-sensing or dialog supporting wearables, ZOE achieves this without cloud or smartphone support - this has important side-effects for privacy since all user information can remain on the device. Second, ZOE incorporates the latest innovations in system-on-a-chip technology together with a custom daughter-board to realize a three-tier low-power processor hierarchy. We pair this hardware design with software techniques that manage system latency while still allowing ZOE to remain energy efficient (with a typical lifespan of 30 hours), despite its high sensing workload, small form-factor, and need to remain responsive to user dialog requests.
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