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Implementation of Digital Radio Mondiale receiver — Part II

机译:数字无线电Mondiale接收机的实现-第二部分

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Analog shortwave radio on bands up to 30 MHz has typically been limited in applicability for long-distance broadcast applications requiring high signal fidelity. This is because of the vulnerability of analog modulation schemes to atmospheric dispersion; however, the Digital Radio Mondiale (DRM) standard, introduced in 2001, is a promising solution for shortwave radio. DRM provides various audio and data digital encoding methods that utilize current data compression and error-detection features. These characteristics are attractive for shortwave broadcasters, particularly those desiring to implement economical, reliable studio-to-transmitter links. This paper presents a DRM receiver design which implements these features in addition to possessing firmware scalability for a planned diversity implementation. Significant improvements to the DRM receiver design presented in a previous paper are discussed, and the receiver's increased performance is evaluated, particularly with regards to signal-to-noise ratio. The paper concludes with a discussion of future work.
机译:高达30 MHz的频带上的模拟短波无线电通常在要求高信号保真度的长距离广播应用中的适用性受到限制。这是因为模拟调制方案容易受到大气扩散的影响。然而,2001年推出的Digital Radio Mondiale(DRM)标准是一种有希望的短波无线电解决方案。 DRM提供了各种利用当前数据压缩和错误检测功能的音频和数据数字编码方法。这些特性对短波广播公司具有吸引力,特别是那些希望实现经济,可靠的演播室到发射机链接的广播公司。本文提出了一种DRM接收器设计,该设计除了具有固件可伸缩性以实现计划的多样性实现外,还实现了这些功能。讨论了对先前论文中提出的DRM接收机设计的重大改进,并评估了接收机的性能提高,尤其是在信噪比方面。本文最后讨论了未来的工作。

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