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Design and simulation of state-of-art ZigBee transmitter for IoT wireless devices

机译:IOT无线设备的最先进ZigBee发射机的设计与仿真

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The rapid development in wireless networking has been witnessed in past several years, which aimed on high speed and long range applications. The increasing demand for low data 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. ZigBee is a standard, which defines set of communication protocols. ZigBee based devices operate in 868 MHz, 915 MHz and 2.4 GHz frequency bands. It has maximum data rate of 250K bits per second. This paper explores the architectural blocks of digital ZigBee transmitter. The advancement in VLSI technology led to the development of more efficient, accurate, small, and fast design. ZigBee has potential application in Internet of Things (IoT), because of the fact that it is a low power and low data rate device. The main focus of the project is to design a ZigBee transmitter using Verilog for IoT applications. A basic digital ZigBee transmitter consists of cyclic redundancy check, Bit-to-Symbol block, Symbol-to-Chip block, and a Modulator. This paper presents digital design and Verilog-HDL simulation of the Cyclic Redundancy Check and Bit-to-Symbol block of the ZigBee transmitter.
机译:在过去的几年中,无线网络的快速发展已得到见证,旨在高速和远程应用。对低数据和低电网的需求越来越大,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,指导控制和军用应用,低成本,低数据速率和更多电池寿命是主要要求。 ZigBee是一个标准,它定义了一组通信协议。基于ZigBee的设备在868 MHz,915 MHz和2.4 GHz频段中运行。它每秒最大数据速率为250k位。本文探讨了数字ZigBee发射器的架构块。 VLSI技术的进步导致开发更高效,准确,小和快速设计。 ZigBee在物联网(IOT)中具有潜在的应用,因为它是低功率和低数据速率设备。该项目的主要焦点是使用Verilog为IoT应用程序设计ZigBee发射机。基本数字ZigBee发射机由循环冗余校验,位对符号块,符号对芯片块和调制器组成。本文介绍了ZigBee发射器的循环冗余校验和符号块的数字设计和Verilog-HDL模拟。

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