A Novel Distributed Medium Access Control and Synchronization for Ad-Hoc Sensor Networks

R. Ghanadan, S. Mo, Mingchuan Luo, K. Guan, J. Hsu
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Abstract

In this paper, we provide a general framework of distributed medium access control (DMAC) and synchronization for ad-hoc sensor networks with omni-directional antennas. Compared to existing works that focus on minimizing the energy consumption, our design objectives aim to increase the throughput, to lower the latency, and to solve hidden and exposed nodes problem in a traffic-heavy and dynamic environment. DMAC uses different transmission techniques based on the type of outbound packets, to effectively reduce the overhead and complexity of channel access coordination. At its core, DMAC relies on node activate medium access (NAMA) scheduling to coordinate collision-free transmissions. As time synchronization plays a fundamental role in DMAC scheduling, we also design a synchronization scheme tailored to multi-hop networks with heavy traffic and packet loss. We evaluate the performances of the proposed framework via extensive simulations. Our results show that DMAC provides higher system throughput compared with carrier sense multiple access/collision avoidance (CSMA/CA) scheme. In addition, the proposed synchronization scheme can achieve synchronization error within 1 mus in the presence of packet loss and measurement noise, while incurring minimal increment of overheads.
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一种新型的自组织传感器网络分布式介质访问控制与同步
在本文中,我们提供了一个具有全向天线的自组织传感器网络的分布式介质访问控制(DMAC)和同步的通用框架。与现有的专注于最小化能耗的工作相比,我们的设计目标是提高吞吐量,降低延迟,并解决在交通繁忙和动态环境下隐藏和暴露节点的问题。DMAC根据出站报文的类型采用不同的传输技术,有效地降低了通道访问协调的开销和复杂度。在其核心,DMAC依赖于节点激活介质访问(NAMA)调度来协调无冲突传输。由于时间同步在DMAC调度中起着至关重要的作用,我们还设计了一种适合于流量大、丢包的多跳网络的同步方案。我们通过广泛的模拟来评估所提出的框架的性能。我们的研究结果表明,与载波感知多址/避免碰撞(CSMA/CA)方案相比,DMAC方案提供了更高的系统吞吐量。此外,在存在丢包和测量噪声的情况下,所提出的同步方案可以实现1 μ s以内的同步误差,同时开销增量最小。
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