1970•IEEE Transactions on Aerospace and Electronic SystemsRequires access

Tracking Performance of a Monopulse Radar in the Presence of Multiple Targets

James Howell

Open publisher page 4 citations

Abstract

The equations derived by A. J. Rainal for the probability density function of the angle error output of a monopulse radar excited by a Gaussian signal and Gaussian thermal noise are generalized to include the presence of multiple targets. The examples given demonstrate the radar's behavior for various combinations of target and noise parameters.

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What this paper is about

The equations derived by A. J. Rainal for the probability density function of the angle error output of a monopulse radar excited by a Gaussian signal and Gaussian thermal noise are generalized to include the presence of multiple targets. The examples given demonstrate the radar's behavior for various combinations of target and noise parameters.

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OpenAlex reports 4 citations for this work. Citation counts describe recorded attention and do not establish research quality.

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Available abstract

The equations derived by A. J. Rainal for the probability density function of the angle error output of a monopulse radar excited by a Gaussian signal and Gaussian thermal noise are generalized to include the presence of multiple targets. The examples given demonstrate the radar's behavior for various combinations of target and noise parameters.

Key concepts: Monopulse radar, Amplitude-Comparison Monopulse, Radar, Radar tracker, Gaussian noise, Probability density function, Computer science, Low probability of intercept radar

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