Estimation of heading misalignment between a pedestrian and a wearable device

Abdelrahman Ali, J. Georgy, D. B. Wright
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引用次数: 5

Abstract

The wearable devices market has witnessed major technological advancements in recent years. These achievements have greatly increased their ability to be involved in applications such as location-based services (LBS), portable navigation, and guidance applications. In certain applications, providing a navigation solution based on inertial sensors stand-alone requires the user to keep the portable device in a specific orientation with respect to the user's body. It is unreasonable to assume that the device will remain in a fixed orientation all the time. In this paper, a technique is proposed to provide the heading misalignment angle between the wearable smart device and the pedestrian. Different test scenarios were conducted to assess the performance of the proposed technique including different use cases. The results show that the proposed technique is able to provide continuous and reliable consumer localization without any restrictions on the way the user holds or uses the device.
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行人与可穿戴设备方向不对准的估计
近年来,可穿戴设备市场见证了重大的技术进步。这些成就极大地提高了它们在诸如基于位置的服务(LBS)、便携式导航和制导应用等应用中的应用能力。在某些应用中,提供基于惯性传感器的独立导航解决方案需要用户将便携式设备保持在相对于用户身体的特定方向上。假设设备将始终保持固定方向是不合理的。本文提出了一种提供可穿戴智能设备与行人之间的方向不对准角的技术。进行了不同的测试场景,以评估所建议的技术的性能,包括不同的用例。结果表明,所提出的技术能够提供连续可靠的消费者定位,而不受用户持有或使用设备的方式的限制。
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