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首页> 外文期刊>IEEE transactions on mobile computing >Proximity-Aware Location Based Collaborative Sensing for Energy-Efficient Mobile Devices
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Proximity-Aware Location Based Collaborative Sensing for Energy-Efficient Mobile Devices

机译:节能移动设备的基于位置感知的位置协同感知

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摘要

A fundamental question in the study of location-based mobile sensing is how much energy can be saved while still guaranteeing the reliable localization accuracy. In this paper, we analyze key features of human proximity and find a motivation which implies that the energy-efficient and accurate localization is possible by sharing the locations of nearby mobile devices. From the location-based collaborative sensing idea, we formulate an optimization problem which aims to minimize the total number of location measurements for a given fairness criterion. Then, we propose a practical and distributed location sharing (DLS) protocol and an optimal parameter control algorithm (OWD) which makes the DLS protocol attain an asymptotic optimal performance. Via extensive simulations under various environments including real mobility traces, we verify that the proposed DLS+OWD policy significantly reduces the average power consumption of mobile devices with a higher fairness compared to the existing algorithms.
机译:在基于位置的移动传感研究中,一个基本问题是可以节省多少能量,同时仍然保证可靠的定位精度。在本文中,我们分析了人类接近性的关键特征,并找到了一种动机,即暗示可以通过共享附近移动设备的位置来实现节能,准确的定位。从基于位置的协作感知思想出发,我们制定了一个优化问题,旨在针对给定的公平性标准,最小化位置测量的总数。然后,我们提出了一种实用的分布式位置共享(DLS)协议和一种使DLS协议达到渐近最优性能的最优参数控制算法(OWD)。通过在包括真实移动性轨迹在内的各种环境下进行广泛的仿真,我们验证了与现有算法相比,所提出的DLS + OWD策略以更低的公平性显着降低了移动设备的平均功耗。

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