With respect to the advent of radar systems technology, necessity of using advanced and complex processing in the receivers, transfer of high volume of data and need of real time processing in relation to radar signal...
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ISBN:
(纸本)9781424412464
With respect to the advent of radar systems technology, necessity of using advanced and complex processing in the receivers, transfer of high volume of data and need of real time processing in relation to radar signals, appropriate processor must provide the required processing speed. This performance usually is provided with programmable digital signal processors. In this paper, first, processes such as pulse compression with phase coding method, clutter canceling with delay line canceller and Doppler filter bank methods are introduced, then several procedures of parametric and clutter map constant false alarm ratio along with combination of these two methods are described and. finally possibility of implementation of these processes on a Texas Instrument DSP are investigated.
The growing worldwide interest in exploiting programmable digital signal processors (DSPs) in telecommunication applications and systems has established the need for a prototyping environment. This environment compris...
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The growing worldwide interest in exploiting programmable digital signal processors (DSPs) in telecommunication applications and systems has established the need for a prototyping environment. This environment comprises various computer-aided software and hardware tools to meet the requirements of the development process, including specification, algorithm simulation, analysis, implementation and verification. This article discusses the issues concerning a prototyping process and the need for support tools for developing DSP applications. It is followed by an overview of existing tools and techniques. An integrated signal processing application development environment (SPADE) is then described.
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