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首页> 外文期刊>IEEE Transactions on Consumer Electronics >Modem/radio IC architectures for ISM band wireless applications
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Modem/radio IC architectures for ISM band wireless applications

机译:用于ISM频段无线应用的调制解调器/无线电IC架构

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摘要

pi /4-DQPSK (differential quadrature phase shift keying) and F-QPSK modem/radio IC architectures are presented for unlicensed consumer electronics applications in the industrial, scientific, and medical (ISM) bands under FCC Part 15. An all-digital pi /4-DQPSK modulator design, which is the new US digital cellular standard, provides significant size and current drain reduction over conventional DSP-based techniques. The low-cost F-QPSK modem/radio architecture offers higher power efficiency as well as higher spectral efficiency. Detailed circuits and design aspects are presented. The performance of each scheme employed in an intelligent frequency-hopping system is evaluated for a Rayleigh-fading/AWGN environment. Experimental results and computer simulations demonstrate that the proposed modem/radio architectures have both power and spectral advantages for the ISM band wireless applications. With the intelligent frequency-hopping scheme, the BER (bit error rate) performance can be improved by 5-10 dB as compared to conventional QPSK systems.
机译:pi / 4-DQPSK(差分正交相移键控)和F-QPSK调制解调器/无线电IC架构针对FCC第15部分的工业,科学和医学(ISM)频段中的无牌消费电子应用进行了介绍。全数字pi / 4-DQPSK调制器设计是美国新的数字蜂窝标准,与传统的基于DSP的技术相比,可显着减小尺寸并降低电流消耗。低成本的F-QPSK调制解调器/无线电架构可提供更高的功率效率以及更高的频谱效率。介绍了详细的电路和设计方面。针对瑞利衰落/ AWGN环境,评估了智能跳频系统中采用的每种方案的性能。实验结果和计算机仿真表明,所提出的调制解调器/无线电架构在ISM频段无线应用中具有功率和频谱优势。与传统的QPSK系统相比,采用智能跳频方案,可以将BER(误码率)性能提高5-10 dB。

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