An Enhanced Reliability Scheme for Wireless Sensor Networks using PSFQ

B. Paramasivan, Dr. S. Radha Krishnan
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引用次数: 1

Abstract

There is a growing need to support reliable data communications in Sensor Networks that are capable of supporting new applications. To our knowledge, there has been little work on the design of reliable transport protocols for sensor networks. This is because, vast majority of sensor network applications do not require reliable data delivery. There are a number of challenges associated with the development of a reliable transport protocol for Sensor Networks. Pump Slowly, Fetch Quickly [PSFQ], is the first developed protocol to provide data reliability in sensor networks. PSFQ is a simple, scalable, and robust transport protocol that is customizable to meet the needs of emerging reliable data applications in sensor networks. In this paper, we demonstrate a new dimension of PSFQ as an effort to increase the protocol performance. Here a sensor node is allowed to buffer a sufficiently large amount of data into its buffer, thereby allowing simultaneous transmission of multiple packets. In order to allow a sensor node to hold more number of data we are providing additional buffer space for each node. This enables the node to hold more than one packet in its buffer; thereby a sensor node can transmit more than one packet simultaneously. By this we can get an improved transmission rate and reduced latency. This would also quicken the fetch operation. By more buffer space we can hold more packets for a reasonable amount of time, this will improve the availability of the packets, and hence the fetches are made faster.
基于PSFQ的无线传感器网络可靠性增强方案
在能够支持新应用的传感器网络中,越来越需要支持可靠的数据通信。据我们所知,关于传感器网络可靠传输协议的设计工作很少。这是因为,绝大多数传感器网络应用不需要可靠的数据传输。为传感器网络开发可靠的传输协议存在许多挑战。Pump slow, Fetch quick [PSFQ]是第一个为传感器网络提供数据可靠性的协议。PSFQ是一种简单、可扩展且强大的传输协议,可定制以满足传感器网络中新兴可靠数据应用的需求。在本文中,我们展示了PSFQ的一个新维度,以提高协议的性能。在这里,允许传感器节点将足够大的数据缓冲到其缓冲区中,从而允许同时传输多个数据包。为了允许传感器节点保存更多的数据,我们为每个节点提供了额外的缓冲空间。这使节点能够在其缓冲区中保存多个数据包;因此,传感器节点可以同时传输一个以上的数据包。这样可以提高传输速率,减少延迟。这也将加快获取操作。通过更多的缓冲空间,我们可以在合理的时间内容纳更多的数据包,这将提高数据包的可用性,从而更快地进行读取。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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