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An Adaptive Reliable Transport Protocol Based on Automatic reSend reQuest(ASQ) Technique for Wireless Sensor Networks

机译:基于自动重发请求(ASQ)技术的无线传感器网络自适应可靠传输协议

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There are many wireless sensor network(WSN) applications which require reliable data transfer between the nodes. Several techniques including link level retransmission, error correction methods and hybrid Automatic Repeat re- Quest(ARQ) were introduced into the wireless sensor networks for ensuring reliability. In this paper, we use Automatic resend request(ASQ) technique with regular acknowledgement to design reliable end-to-end communication protocol, called Adaptive Reliable Transport(ARTP) protocol, for WSNs. Besides ensuring reliability, objective of ARTP protocol is to ensure message stream FIFO at the receiver side instead of the byte stream FIFO used in TCP/IP protocol suite. To realize this objective, a new protocol stack has been used in the ARTP protocol. The ARTP protocol saves energy without affecting the throughput by sending three different types of acknowledgements, viz. ACK, NACK and FNACK with semantics different from that existing in the literature currently and adapting to the network conditions. Additionally, the protocol controls flow based on the receiverȁ9;s feedback and congestion by holding ACK messages. To the best of our knowledge, there has been little or no attempt to build a receiver controlled regularly acknowledged reliable communication protocol. We have carried out extensive simulation studies of our protocol using Castalia simulator, and the study shows that our protocol performs better than related protocols in wireless/wire line networks, in terms of throughput and energy efficiency.
机译:有许多无线传感器网络(WSN)应用程序需要在节点之间进行可靠的数据传输。无线传感器网络中引入了多种技术,包括链路级重传,纠错方法和混合自动重发请求(ARQ),以确保可靠性。在本文中,我们使用带有定期确认的自动重发请求(ASQ)技术来设计用于WSN的可靠的端到端通信协议,称为自适应可靠传输(ARTP)协议。除了确保可靠性之外,ARTP协议的目的还在于确保接收方的消息流FIFO,而不是TCP / IP协议套件中使用的字节流FIFO。为了实现这个目标,在ARTP协议中使用了新的协议栈。 ARTP协议通过发送三种不同类型的确认(即确认),在不影响吞吐量的情况下节省了能量。 ACK,NACK和FNACK的语义与当前文献中存在的语义不同,并且适应网络条件。另外,该协议通过接收ACK消息来控制基于接收器9的反馈和拥塞。据我们所知,几乎没有或没有尝试建立受接收器控制的定期确认的可靠通信协议。我们已经使用Castalia模拟器对协议进行了广泛的仿真研究,研究表明,就吞吐量和能源效率而言,我们的协议在无线/有线网络中的性能优于相关协议。

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