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首页> 外文期刊>IEEE Transactions on Aerospace and Electronic Systems >Signal-to-interference-plus- noise-ratio analysis for constrained radar waveforms
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Signal-to-interference-plus- noise-ratio analysis for constrained radar waveforms

机译:受限雷达波形的信号干扰加噪声比分析

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To fully appreciate the benefits of arbitrary waveform design capability for transmit adaptive systems, the trade space between constraints (employed to increase the measure of practicality for radar) and the usual performance driver (signal-to-interference-plus-noise ratio) needs to be better defined and understood.We address this issue by developing performance models for radar waveforms with cumulative-modulus and energy constraints. Radar waveforms typically require a constant-modulus (constant-amplitude) transmit signal to efficiently exploit the available transmit power. However, recent hardware advances and the capability for arbitrary (phase and amplitude) designed waveforms have forced a reexamination of this assumption in order to quantify the impact of the nonconstant modulus property.We develop performance models for the signal-to-interference-plus-noise ratio as a function of the cumulative modulus for a random colored interference environment and validate the models against measured data.
机译:为了充分认识到任意波形设计功能对发射自适应系统的好处,需要在约束条件(用于提高雷达实用性的度量)和通常的性能驱动因素(信号与干扰加噪声比)之间进行权衡。我们将通过开发具有累积模量和能量约束的雷达波形性能模型来解决此问题。雷达波形通常需要恒定模数(恒定振幅)发射信号,以有效利用可用发射功率。但是,最近的硬件进步和任意(相位和幅度)设计波形的能力都迫使人们重新检验这一假设,以便量化非恒定模量特性的影响。我们开发了信号加干扰的性能模型噪声比作为随机有色干扰环境下累积模量的函数,并针对测量数据验证模型。

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