ZigBee网络在车载无线通信中的仿真研究

A. V. Durga Ganesh Reddy, Barathram Ramkumar
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引用次数: 17

摘要

车辆中部署的传感器和电子控制单元(ECU)数量的增加增加了线束的复杂性和给汽车行业带来的成本。有些传感器安装在非常难以接近的位置,例如汽车轮胎上的压力传感器和轮速传感器,它们通过电缆传输关键的实时数据。管理日益复杂的电子系统已成为汽车制造商及其供应商面临的主要挑战。这就产生了对无线网络的需求,无线网络可以有效地降低这种复杂性。Zigbee无线传感器网络因其网状网络功能和低功耗而被视为取代汽车内部有线网络的良好候选技术。ZigBee无线技术利用直接序列扩频(DSSS)技术解决多径衰落问题,利用载波感知多址(CSMA)技术抗干扰能力强,被认为是一种很有前途的车载无线网络。然而,车辆内部的传播通道是封闭的,并且受到车辆运动引起的机械振动的影响。因此,信道建模和自适应均衡器是促进车辆内部可靠通信的必要条件。本文提出了ZigBee网络物理层和车载传播信道的仿真,并在接收端设置自适应均衡器。最后给出了具体的仿真结果和未来的研究方向。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Simulation studies on ZigBee network for in-vehicle wireless communications
The increase in the number of sensors and Electronic Control Units (ECU) that are deployed in a vehicle has increased the wiring harness complexity and the cost brought to the automobile industry. Some sensors are installed at very inaccessible locations, such as pressure sensors and wheel speed sensors in car tires, which transmit crucial real time data via cables. Managing the increasing complexity of electronic system has become a key challenge for automobile manufacturers and their suppliers. There arises the need for Wireless networks which can effectively reduce this complexity. Zigbee wireless sensor networks are seen as a good candidate technology to replace the wired network inside an automobile because of its mesh networking capabilities and low power consumption. With its fine capability of solving multi-path fading using Direct Sequence Spread Spectrum (DSSS) technology and interference resilience using Carrier Sense Multiple Access (CSMA), ZigBee wireless technology is considered as a highly promising candidate for intra-vehicular wireless networks. However, the propagation channel inside a vehicle is closed and is effected by the mechanical vibrations caused by the movement of the vehicle. So, modelling of the channel and an adaptive equalizer is necessary to facilitate the reliable communication inside a vehicle. This paper proposes the simulation of physical layer of ZigBee network and the propagation channel inside a vehicle along with an adaptive equalizer at the receiver. Finally this paper gives the details of simulation results and the future scope for research in this area.
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