MODELING OF IEEE 802.11 COMPUTER NETWORKS OPERATION AT INCREASED INTERFERENCE INTENSITY

IF 0.2 Q4 COMPUTER SCIENCE, HARDWARE & ARCHITECTURE
V. Khandetskyi, N. Karpenko
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引用次数: 0

Abstract

Context. High level of industrial noise increases the loss of information frames during transmission, which in turn decreases the network throughput. We propose a mathematical model of IEEE 802.11 networks operation under conditions of increased interference intensity. Objective. The purpose of this paper is to express in an explicit analytical form the effect of bit error rate (BER) on the probability of frame transmission and the network throughput. Method. We have proposed the method for constructing a model that allows you to directly calculate the dependence of the frame transmission probability on the number of stations operating in saturation mode, which is convenient for engineering calculations. The values of the model coefficients were selected by comparing the calculation results with the results obtained using the known Bianchi model, which describes the network operation in the form of a Markov process. In the range of up to 23 stations working with one access point, which corresponds to a collision probability of up to 0.5, the indicated dependences for both models satisfy each other with an accuracy sufficient for the practical application. An expression for the network throughput has been defined. Results. The results of the model development were used to take into account the effect of interference intensity on the information transfer process. This made it possible to explicitly express the effect of BER on the probability of frame transmission and the network throughput in the case of variations in the length of the frames and with a different number of competing stations. The degree of throughput reduction has been determined for BER = 10–5, 5∙10–5, 10–4 and increasing value of minimum contention window. Conclusions. In this work, a mathematical model has been developed for direct calculation of the probability of frame transmission and network throughput at different levels of BER.
ieee 802.11计算机网络在增加干扰强度下运行的建模
上下文。高水平的工业噪声增加了传输过程中信息帧的丢失,这反过来又降低了网络吞吐量。提出了干扰强度增加条件下IEEE 802.11网络运行的数学模型。本文的目的是以显式的解析形式表达误码率(BER)对帧传输概率和网络吞吐量的影响。我们提出了一种建立模型的方法,可以直接计算帧传输概率与饱和模式下台站数的依赖关系,便于工程计算。通过将计算结果与已知Bianchi模型的计算结果进行比较,选择模型系数的值。Bianchi模型以马尔可夫过程的形式描述网络的运行。在多达23个站点与一个接入点工作的范围内,对应的碰撞概率高达0.5,两种模型的指示依赖关系相互满足,具有足够的精度,可以用于实际应用。定义了网络吞吐量的表达式。利用模型开发的结果考虑了干扰强度对信息传递过程的影响。这使得明确表达误码率对帧传输概率和网络吞吐量的影响成为可能,在帧长度变化和具有不同数量的竞争站的情况下。确定了BER = 10 - 5,5∙10 - 5,10 - 4和最小争用窗口增加值时吞吐量降低的程度。在这项工作中,开发了一个数学模型,用于直接计算不同BER水平下的帧传输概率和网络吞吐量。
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来源期刊
Radio Electronics Computer Science Control
Radio Electronics Computer Science Control COMPUTER SCIENCE, HARDWARE & ARCHITECTURE-
自引率
20.00%
发文量
66
审稿时长
12 weeks
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