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引用次数: 31
摘要
无线传感器网络要求设计高能效且灵活的传感器节点。动态适应所需的硬件灵活性传统上是通过基于软件的处理器或现场可编程门阵列(fpga)来实现的,与专用集成电路(asic)相比,这两种方法都具有显着的能量,面积和性能成本。本文针对基于nios的SOPC平台,提出了一种具有动态可重构功能单元的软硬件接口综合设计方法。该节点在Cyclone II FPGA上实现并测试了其功能。最后开发了四个节点的小型网络,并对该节点在实时环境下的森林火灾探测应用进行了测试。本文还探讨了从测试节点到基站的数据传输所涉及的不同方法,并使用了节能的MAC协议。
Reconfigurable wireless sensor network node based on Nios core
Wireless sensor networks require the design of highly energy-efficient and yet flexible sensor nodes. The hardware flexibility required for dynamic adaptation is traditionally achieved with software based processors or field programmable gate arrays (FPGAs), both of which come with significant energy, area and performance costs when compared to application-specific integrated circuits (ASICs). In this paper, we propose a new HW/SW interface synthesis design method aiming at the Nios-based SOPC platform with a dynamically reconfigurable functional unit. The node was implemented on the Cyclone II FPGA and tested its functionality. Finally small network with four nodes has been developed and tested the node in real time environment for forest fire detection application. This paper also explores different approaches involved in the transfer of data from the test node to the base station and an energy efficient MAC protocol is used.