标题: | 异质网路环境之行动搜寻关键技术-子计画四---以感测系统为基础之整合式室内及室外定位系统 Mobipositioning --- Sensor-Based Integrated Indoor and Outdoor Positioning Systems(I)(II)(III) |
作者: | 易志伟 Yi Chih-Wei 国立交通大学资讯工程学系(所) |
关键字: | 全球定位系统;个人导航系统;无线感测网路;室内定位系统;计步器;GPS;personal navigation systems;wireless sensor networks;indoor positioning;pedometer;accelerometer;magnetic compass;gyro;walking path tracking |
公开日期: | 2009 |
摘要: | 摘要:现代人希望能随时随地得到充足的周围环境资讯,例如:道路、店家、气候、景点等, 由于网路资讯发达,各地的环境资讯,皆可透过网际网路查询取得大量相关的资讯,但这些资讯 却不一定是使用者所需要的资料,大量的资讯反而造成使用者的困惑。在许多的应用中,资讯的 价值基本上会和使用者或资讯所在的地点有强烈的相关性,因此定位系统在这些的应用中就显得 十分重要,而定位系统的准确性及可获得性即为当中的关键性技术。 目前的定位技术,大略可分为室外及室内系统。室外系统以全球定位系统(GPS)为主流,透 过与图资的整合,可提供使用者路径规划及即时道路况等资讯,目前已大量应用在汽車等的导航 系统上,但在室内或隧道中因无法接收到卫星讯号,而无法提供有效的定位资讯。室内系统则以 量测无线频谱讯号的强度來做为估算量测点与讯号源之间距離为主要依据來进行定位,但由于无 线讯号的多路径传输特性,常造成定位上的误差。 目前商品化的GPS 设备,其精确度约在三十公尺,虽然在車辆导航系统上,可透过图资及行 进位移來加以修正,但却也无法有效的进行平面及立体的車道判断,此外,若要应用在个人的步 行导航系上,因行人的位移不够快,无法有效弥补GPS 精确度不足的问题。因此,我们希望透过 整合在个人手持數位设备(如:PDA、GPS)或車载數位系统上的微型感测元件,來分析行人或車 辆的移动,用以提升现有室外之GPS 定位系统及室内无线感测网路定位系统的精准度;此外,利 用无线网路通讯技术,使用者间可以互相交换资讯,让使用者能够知道一定范围内其他使用者的 所在位置及收集相关资讯,我们希望透过资讯的交换可以发展出团队导航的功能,此项功能可应 用在观光导览、車队路线协调及自动化路况判断等应用上。 我们主要使用的感测元件有:加速度计、角速度计、电子陀螺仪及磁力计等,希望透过分析 微型感测元件的量测资料及配合现有的定位系统能达成下列四个研究成果:(1)以低廉的成本达到 改善全球定位系统的精确度;(2)提升室内定位系统的精确度;(3)利用无线网路通讯技术,发展 团队导航功能;(4)以个人定位系统为基础,开发可还原汽車运动轨迹之車辆行进记錄器。 Abstract: Due to the convenience of Internet, people eager to grab information available to them. But on the contrary, too many unimportant data decrease the value of information and even confuse people. In many applications, the value of information usually strongly relates to the location of users, and position systems are a key technology for those applications. The accuracy of location information would be the most important issue. Positioning systems can be categorized into two types, indoor systems and outdoor systems. The main technology for outdoor systems is the Global Positioning System (GPS). It is widely used for car navigation systems. But the inaccuracy of the commercial GPS is about 30 meters. Although the inaccuracy can be corrected by the car navigation software, it is not acceptable for personal navigation systems. The indoor positioning systems usually are based on measuring the strength of radio frequency signals. But this approach suffers for the multipath progression problems of radio frequency signals. We can improve the accuracy of indoor and outdoor positioning systems by utilizing embedded tiny sensors in hand held devices. By analyzing data collected from various sensors, we can know the movement of users (or cars), and according to the displacement and direction information, we can reconstruct the walking paths of users or moving tracks of cars. Applying those tracking information, we can improve the accuracy of positioning systems. In this proposal, we would like to use embedded sensors like accelerometers, gyroscopes, magnetometers, etc., to collect movement information. By combining the analysis results of sensor readings and indoor or outdoor positioning systems, we would like to achieve the following four objectives: (1) Improve the accuracy of GPS by applying low cost sensors; (2) Improve the accuracy of indoor positioning systems; (3) Utilize the wireless sensor network technology, we would like to develop group navigation systems. (4) Based on the technology developed for personal navigation systems, we would like to develop equipments that can record sensor readings such that we can reconstruct the movement history of cars from these data. |
官方说明文件#: | NSC97-2221-E009-052-MY3 |
URI: | http://hdl.handle.net/11536/100969 https://www.grb.gov.tw/search/planDetail?id=1747981&docId=297736 |
显示于类别: | Research Plans |