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Overhearing Gain Analysis in Low-Traffic CDMA Wireless Sensor Networks

机译:低流量CDMA无线传感器网络中的窃听增益分析

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There have been trends in using spread spectrum channel accessing techniques in wireless sensor networks to mitigate the effect of potential collisions in concurrent transmissions and to increase the throughput as well as countering jamming-like noises. Overhearing of the data has been previously analyzed in cellular CDMA networks as this technique was first introduced for mobile communications with multiple transmitting users sending their data to a single base station which controls their transmission power. But sensor (and ad hoc) networks are usually devoid of any coordinating devices and the transmission is usually done toward different local destinations using distributed power controlling methods. This paper provides a systematic analysis of overhearing performance in low-traffic sensor networks especially when the sensing point is located somewhere at the middle of the network which is not necessarily near the sink. The distributed code assignment which is a key issue in infrastructureless CDMA networks has been taken into account in the development of a theoretical model. The result of this analysis shows that the higher the number of used codes, the higher is the gain of overhearing. Thus using this parameter, the network designer has statistical control over the amount of potential overheard data. We have also developed simulations of the proposed model and the results support the predictions of the theoretical model.
机译:在无线传感器网络中使用扩频信道接入技术来减轻并发传输中潜在冲突的影响并增加吞吐量以及抵抗类似干扰的噪声已经成为趋势。以前在蜂窝CDMA网络中已经分析了数据的窃听,因为该技术最初是为移动通信而引入的,具有多个发送用户将其数据发送到控制其发送功率的单个基站。但是传感器(和ad hoc)网络通常没有任何协调设备,并且通常使用分布式功率控制方法向不同的本地目标进行传输。本文提供了对低流量传感器网络中的监听性能的系统分析,尤其是当传感点位于网络中间的某个位置(不一定靠近接收器)时。在理论模型的开发中已经考虑了分布式代码分配,这是无基础设施CDMA网络中的关键问题。分析结果表明,使用的代码数量越多,窃听的收益就越高。因此,使用此参数,网络设计人员可以对潜在的窃听数据量进行统计控制。我们还开发了拟议模型的仿真,其结果支持了理论模型的预测。

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