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IoT enabled communication device with mixer less low complex QPSK based transmitter architecture for low frequency applications

机译:具有IoT功能的通信设备,具有混频器较少,低复杂度,基于QPSK的发射机架构,适用于低频应用

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摘要

echnological development in the area of wireless communications lead to the requirement of tight integration of both the digital and analog functional units. Integrating mixers is a challenging task, especially in mixed signal design. IoT communication devices require low design complexity as we expect millions of devices connected. In this paper we propose a mixer less low complex QPSK based transmitter architecture targeting low frequency applications which reduced the complexity in transmitter design. A prototype has been developed using Bipolar Junction Transistors (BJTs) and FPGA as the base band controller. The design can easily be adapted to MOSFET technology and modulation is achieved without the need of generating the carrier externally. The prototype developed was tested successfully by generating frequencies of range varying from 1 KHz to 120 MHz. The proposed architecture can also be used for any other digital modulation scheme such as BPSK, FSK etc.
机译:无线通信领域的技术发展导致对数字和模拟功能单元的紧密集成的要求。集成混频器是一项艰巨的任务,尤其是在混合信号设计中。物联网通信设备所需的设计复杂度较低,因为我们希望可以连接数百万个设备。在本文中,我们针对低频应用提出了一种基于混频器,低复杂度,基于QPSK的发射机架构,该架构降低了发射机设计的复杂性。使用双极结型晶体管(BJT)和FPGA作为基带控制器,已经开发出了原型。该设计可轻松适应MOSFET技术,并且无需外部产生载流子即可实现调制。通过产生范围从1 KHz到120 MHz的频率,成功测试了开发的原型。提出的体系结构还可用于任何其他数字调制方案,例如BPSK,FSK等。

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