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Dependability Analysis of Wireless Local Area Networks

机译:无线局域网的可靠性分析

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The complex behavior of wireless signal propagation, particularly indoors, is caused mainly by attenuation introduced both by distance from the transmitter and by stationary or moving obstacles blocking the signal's path to the receiver. This leads to frame corruption at the link-layer (layer 2), which in turn results in packet losses, and more variable packet latencies, at higher layers that will affect the wireless network dependability. An extreme form of attenuation is blocking of radio signals due to existing obstacles between senders and receivers. When a mobile station roams into a blocking region, it loses its network connectivity. IEEE 802.11 Wireless Local Area Networks (WLANs), has limited frequency spectrum, therefore it is not always possible to eliminate a blocking region by adding another cell at a different frequency as the case for cellular networks. WLANs are being used for military and multimedia applications, where high system dependability and the ability to stay in communication with Access points (APs) are absolutely required. The main contribution of our paper is to provide a comprehensive dependability analysis of WLAN using a software tool for system dependability measurement, modeling and evaluation (MEADEP) Academic Version 1.8.1, and to suggest methods to increase the communication link reliability and availability of Wireless LANs. An additional access point (AP) is placed in the blocking region to serve the mobile stations, which roam into that region. Since the additional AP operates on the same frequency as the existing AP, it will not form a separate cell.
机译:无线信号传播,特别是在室内的复杂行为主要是通过距变送器距离引入的衰减和通过静止或移动障碍阻挡信号的接收器的路径而引起的。这导致链路层(第2层)的帧损坏,这反过来导致数据包丢失,更可变的分组延迟,在更高的层中会影响无线网络可靠性的较高层。由于发件人和接收器之间的现有障碍,极端的衰减形式阻塞无线电信号。当移动台漫游到阻挡区域时,它会失去其网络连接。 IEEE 802.11无线局域网(WLAN)具有有限的频谱,因此并不总是可以通过以不同的频率添加另一个单元来消除阻塞区域,而作为蜂窝网络的情况。 WLAN用于军事和多媒体应用,其中绝对需要高系统可靠性和保持与接入点(AP)通信的能力。本文的主要贡献是使用软件工具提供用于系统可靠性测量,建模和评估(MEADEP)学术版本1.8.1的软件工具的全面可靠性分析,并建议提高无线通信链路可靠性和可用性的方法兰斯。额外的接入点(AP)被放置在阻挡区域中以服务于移动台,该移动站漫游到该区域中。由于附加的AP以与现有AP相同的频率操作,因此它不会形成单独的单元格。

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