基于zigbee的共存个人区域网络资源分配

N. Thepvilojanapong, S. Motegi, A. Idoue, H. Horiuchi
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引用次数: 3

摘要

个人医疗保健是个人局域网(PAN)发展前景广阔的市场。PAN由一个数据采集器和多个可穿戴传感器组成,这些传感器必须根据每个PAN指定的频率向采集器发送数据。数据收集器可以是任何手持或便携式设备,例如,移动电话、PDA或腕表。个人用户需要PAN来检测、跟踪或管理他/她的健康状况。用于这类目的的多个pan很可能在同一地区共存,特别是在存在大量用户的地方。由于在这种情况下,多个pan必须共享资源(如无线信道、传输时间),因此这些pan之间的分组冲突问题是不可避免的。因此,使用PAN的个人医疗保健系统不能作为服务提供给用户,因为数据收集器不能正确地从每个传感器收集传感数据。本文提出了一种自适应的资源分配方案。该方案在分配无线信道和传输时间等资源时区分PAN和节点。根据当前同一区域内存在的pan数量动态分配资源。特别是,拟议的方案在任何pan进入或离开共存区域时自动重新分配资源。该方案的一个显著特点是分配传输时间以满足应用程序对报告间隔的要求。因此,对延迟敏感的应用程序可以正确、及时地收集传感数据。评估结果表明,该方案比标准ZigBee实现了更高的分组传输速率。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Resource Allocation for Coexisting ZigBee-Based Personal Area Networks
Personal healthcare is a promising market of a personal area network (PAN). The PAN consists of a data collector and multiple wearable sensors which must send data to the collector according to the frequency specified by each PAN. The data collector may be any hand-held or portable device, e.g., a mobile phone, a PDA, or a wristwatch. An individual user needs a PAN in order to detect, track, or manage his/her health. Multiple PANs for such purposes are likely to coexist in a same area, especially a place where a large number of users exist. Because multiple PANs must share resources (e.g., wireless channels, transmitting time) in this scenario, a problem of packet collisions among such PANs is unavoidable. As a result, the personal healthcare system using PAN cannot be provided as a service for the users because the data collector cannot collect sensing data from each sensor correctly. This paper proposes an adaptive scheme to allocate resources for coexisting PANs. The scheme distinguishes a PAN and a node when allocating resources such as wireless channel and transmitting time. Resources are dynamically allocated according to the current number of PANs that exist in the same area. In particular, the proposed scheme automatically reallocates resources when any PANs come into or leave from the coexisting area. As one of salient features, the scheme allocates transmitting time to meet a requirement on reporting interval determined by an application. Thus applications that are sensitive to delay can collect sensing data correctly and in time. The evaluation results show that our scheme achieves higher packet delivery rate than the standard ZigBee.
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