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A Technical Review of Software Defined Radios: Vision, Reality, and Current Status

机译:软件无线电的技术回顾:视觉,现实和当前状态

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Since the 1980s, the US military has been seeking a way to improve the ease and flexibility of communications within and between the Services. Forces deployed at that time used dozens of different radios, most of which could only communicate with other radios of the same type. Software Defined Radio (SDR) offered the promise of not only interoperating with all existing radios, but also allowing those legacy radios to communicate with each other. Just as important, SDR would enable future communications systems to be implemented on already-deployed hardware. This vision of interoperability and forward compatibility has not been realized, despite billions of dollars of investment in the Joint Tactical Radio System (JTRS). The authors reviewed JTRS program archives and studied the hardware and software architectures to determine whether there are fundamental technical reasons behind this failure. Our findings, which invoke the familiar trade off between performance and power consumption, are summarized in this paper. We identify three different architectural approaches used by the JTRS community over the years, and discuss why none has been able to realize the program's goals.
机译:自1980年代以来,美国军方一直在寻求一种改善军种内部和军种之间通信的便利性和灵活性的方法。当时部署的部队使用了数十种不同的无线电,其中大多数只能与相同类型的其他无线电通信。软件定义无线电(SDR)不仅可以与所有现有无线电互操作,而且还可以使那些传统无线电相互通信。同样重要的是,SDR将使将来的通信系统能够在已经部署的硬件上实现。尽管对联合战术无线电系统(JTRS)进行了数十亿美元的投资,但尚未实现这种互操作性和前向兼容性的愿景。作者回顾了JTRS程序档案,并研究了硬件和软件体系结构,以确定此故障背后是否存在根本的技术原因。本文总结了我们的发现,它们在性能和功耗之间进行了熟悉的折衷。我们确定了JTRS社区多年来使用的三种不同的体系结构方法,并讨论了为什么没有一种方法能够实现该程序的目标。

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