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A Hybrid Sender- and Receiver-Initiated Protocol Scheme in Underwater Acoustic Sensor Networks

机译:水下声传感器网络中的发送方和接收方混合协议方案

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In this paper, we propose a method for sharing the handshakes of control packets among multiple nodes, which we call a hybrid sender- and receiver-initiated (HSR) protocol scheme. Handshake-sharing can be achieved by inviting neighbors to join the current handshake and by allowing them to send their data packets without requiring extra handshakes. Thus, HSR can reduce the signaling overhead involved in control packet exchanges during handshakes, as well as resolve the spatial unfairness problem between nodes. From an operational perspective, HSR resembles the well-known handshake-sharing scheme referred to as the medium access control (MAC) protocol using reverse opportunistic packet appending (ROPA). However, in ROPA the waiting time is not controllable for the receiver’s neighbors and thus unexpected collisions may occur at the receiver due to hidden neighbors, whereas the proposed scheme allows all nodes to avoid hidden-node-induced collisions according to an elaborately calculated waiting time. Our computer simulations demonstrated that HSR outperforms ROPA with respect to both the throughput and delay by around 9.65% and 11.36%, respectively.
机译:在本文中,我们提出了一种在多个节点之间共享控制数据包握手的方法,我们将其称为发送方和接收方混合(HSR)协议方案。可以通过邀请邻居加入当前握手并允许他们发送数据包而无需额外的握手来实现握手共享。因此,HSR可以减少握手期间控制数据包交换中涉及的信令开销,并解决节点之间的空间不公平问题。从操作角度来看,HSR与使用反向机会数据包附加(ROPA)的众所周知的握手共享方案(称为媒体访问控制(MAC)协议)相似。然而,在ROPA中,接收者的邻居的等待时间是不可控的,因此由于隐藏的邻居,接收器可能会发生意外冲突,而根据精心设计的等待时间,所提出的方案允许所有节点避免隐藏节点引起的冲突。 。我们的计算机模拟表明,就吞吐量和延迟而言,HSR的性能均优于ROPA,分别约为9.65%和11.36%。

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