首页> 外文会议>International Conference on 3D Geoinformation >INDOOR LOCALIZATION USING WI-FI BASED FINGER PRINTING AND TRILATERATION TECHIQUES FOR LBS APPLICATIONS
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INDOOR LOCALIZATION USING WI-FI BASED FINGER PRINTING AND TRILATERATION TECHIQUES FOR LBS APPLICATIONS

机译:适用于LBS应用的基于Wi-Fi的指纹识别和三边技术的室内定位

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The past few years have seen wide spread adoption of outdoor positioning services, mainly GPS, being incorporated into everyday devices such as smartphones and tablets. While outdoor positioning has been well received by the public, its indoor counterpart has been mostly limited to private use due to its higher costs and complexity for setting up the proper environment. The objective of this research is to provide an affordable mean for indoor localization using wireless local area network (WLAN) Wi-Fi technology. We combined two different Wi-Fi approaches to locate a user. The first method involves the use of matching the pre-recorded received signal strength (RSS) from nearby access points (AP), to the data transmitted from the user on the fly. This is commonly known as "fingerprint matching". The second approach is a distance-based trilateration approach using three known AP coordinates detected on the user's device to derive the position. The combination of the two steps enhances the accuracy of the user position in an indoor environment allowing location-based services (LBS) such as mobile augmented reality (M AR) to be deployed more effectively in the indoor environment. The mapping of the RSS map can also prove useful to IT planning personnel for covering locations with no Wi-Fi coverage (ie. dead spots). The experiments presented in this research helps provide a foundation for the integration of indoor with outdoor positioning to create a seamless transition experience for users.
机译:过去几年已经看到广泛的户外定位服务,主要是GPS,融入日常设备,如智能手机和平板电脑。虽然户外定位已经受到公众良好的,但由于其更高的成本和复杂性来建立适当的环境,它的室内同行主要限于私人使用。本研究的目的是提供使用无线局域网(WLAN)Wi-Fi技术的室内定位的负担得起的平均值。我们组合了两个不同的Wi-Fi方法来找到用户。第一种方法涉及使用从附近接入点(AP)的预先记录的接收信号强度(RSS)匹配从用户发送从用户发送的数据。这通常被称为“指纹匹配”。第二种方法是使用在用户设备上检测到的三个已知的AP坐标的基于距离的三边方法来导出位置。两个步骤的组合增强了室内环境中的用户位置的准确性,允许在室内环境中更有效地部署基于位置的服务(LBS),例如移动增强现实(MAR)。 RSS地图的映射还可以对其规划人员来说,用于覆盖没有Wi-Fi覆盖的位置(即死点)。本研究中提出的实验有助于为室内与户外定位集成的基础,为用户创造无缝过渡体验。

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