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The application of decay rate analysis for WSN buffer dimensioning

机译:WSN缓冲尺寸衰减率分析的应用

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The provisioning of a Quality of Service (QoS) for applications requiring real-time service demands low latency, low Bit Error Rate (BER) and bounded end to end delay guarantees. Facilitating this within a Wireless Sensor Network (WSN) is Guaranteed Time slots (GTS's) activated using a beacon enabled mode and under the governance of the accepted protocol of the IEEE 802.15.4 standard. However the limitation in design of only seven GTS per superframe duration pre-determines a problem of allocation when requirements by applications in need of good QoS exceed the supply of GTS's. This results in the QoS aware traffic requiring differentiation of service in the buffer of the Personal Area Network Coordinator (PANC). A question arises as to the true ability of service dimensioning of networks without the prior knowledge of buffer allocation. In some WSN the buffer shares memory with the application and radio stack. This memory requirement will vary depending on the application. This research complements a previous paper in which the application of Decay Rate Analysis in relation to the dimensioning of buffer allocation of the various nodes was analysed using simulation and analytical methodology. The results illustrated the probability of queue occupancy for a specific application namely VoIP. This paper proposes that by employing the decay rate analysis a better understanding of buffer requirements at the PANC can be determined for different sensor applications. This analysis will further enhance the pre-deployment dimensioning of a network for greater operational efficiency and overall cost effectiveness.
机译:为需要实时服务的应用程序提供服务质量(QoS)要求低延迟,低位错误率(BER)和有界结束以结束延迟保证。促进无线传感器网络(WSN)内的促进功能是使用信标模式和IEEE 802.15.4标准的已接受协议的治理激活的保证时隙(GTS)。然而,设计的限制仅在每个超帧持续时间内仅在需要良好QoS的应用程序超过GTS的供应时预先确定分配问题。这导致QoS意识到在个人区域网络协调员(PANC)的缓冲区中需要差异的服务。如果没有先前的缓冲区分配,则会出现一个人的服务维度的真正能力。在一些WSN中,缓冲区使用应用程序和无线电堆栈共享内存。此内存要求将根据应用程序而有所不同。本研究补充了先前的论文,其中使用模拟和分析方法分析了与各种节点的缓冲区分配的尺寸分析相关的衰减率分析。结果说明了特定应用程序的队列占用概率即VoIP。本文提出,通过采用衰减率分析,可以确定不同的传感器应用,可以更好地了解Panc的缓冲区要求。该分析将进一步增强网络的预部署维度,以获得更高的运营效率和整体成本效益。

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