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雷达ESM(电子支援措施)系统具有两个功能:预警即将来临的威胁和确定雷达的工作范围。自动的雷达FSM系统是被动式雷达接收机,它接收从其它雷达站来的发射波,测量接收到的每个脉冲的参数,并且将它们分类以便能够测定每部发射机的雷达参数。然后,将这些参数与存贮的已知雷达参数位相比较,以鉴别发射体类型可能是威胁或是雷达站。本文集中讨沦每秒有几十万个脉冲数据流的发射体去参差,这是其中的一个外理步骤。发射体去参差包括将接收到的雷达脉冲分类成分离的脉冲串,每串脉冲和唯一的一部发射机相联系。本文把已经广泛应用的卡特拉斯自动雷达ESM系统作为例子,着重研究在高脉冲密度环境中工作时它的传输技术的优点。
The radar ESM (Electronic Support Measures) system has two functions: alerting of upcoming threats and determining the scope of the radar. Automatic radar FSM systems are passive radar receivers that receive transmitted waves from other radar stations, measure the parameters of each pulse received, and classify them so that the radar parameters of each transmitter can be determined. These parameters are then compared with stored known radar parameter bits to identify whether the emitter type may be a threat or a radar station. This article concentrates on discussing how to emit emitters with hundreds of thousands of pulses of data flow per second. This is one of the external steps. Emitter de-inclusion consists of classifying the received radar pulses into separate bursts, each burst being associated with a single transmitter. In this paper, the already widely used Cartesian automatic radar ESM system is taken as an example to highlight the advantages of its transmission technology when working in a high-pulse-density environment.