用于物联网无线设备的ZigBee发射器

A. Mounica, G. Subbareddy
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引用次数: 1

摘要

无线网络在过去的几年中得到了快速发展,其目标是高速和远程应用。短距离无线通信有不同的协议标准,即蓝牙、ZigBee、Wimax和Wi-Fi。在这些标准中,ZigBee基于IEEE 802.15.4协议,由于其电池长期运行和网状网络架构的可靠性,可以满足更广泛的实际工业需求。对低数据速率和低功耗网络的需求日益增长,导致了ZigBee技术的发展。该技术是为无线个人区域网络(WPAN)开发的,针对控制和军事应用,其中低成本,低数据速率和更长的电池寿命是主要要求。本文介绍了用于物联网应用的ZigBee发射机的顶层模块(循环冗余校验、位码块、符号芯片块、OQPSK块和脉冲整形)的VerilogHDL仿真。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
ZigBee Transmitter for IoT Wireless Devices
The rapid development in wireless networking has been witnessed in past several years, which aimed on high speed and long range applications. There are different protocol standards used for the short range wireless communication namely the Bluetooth, ZigBee, Wimax and Wi-Fi. Among these standards ZigBee is based on IEEE 802.15.4 protocol can meet a wider variety of real industrial needs due to its long-term battery operation and reliability of the mesh networking architecture. The increasing demand for low data rate and low power networking led to the development of ZigBee technology. This technology was developed for Wireless Personal Area Networks (WPAN), directed at control and military applications, where low cost, low data rate, and more battery life were main requirements. This paper presents VerilogHDL simulation of the Top level module (Cyclic Redundancy Check, Bit-to-Symbol block, Symbol-to-Chip block, OQPSK block and Pulse shaping) of the ZigBee transmitter for IoT applications.
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