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Modeling and Simulating the Networks Framework for FH Communication Radios

Jingye Cai

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Abstract

As the Frequency Hopping (FH) communications technologies being widely applied in wireless communications, it is more and more necessary to organize the networks for FH Radios, while papers on the collision in FH radios is difficult to find. Firstly, the theoretical tolerance of the numbers of FH sequences while building FH communication networks are presented.Then,assuming there are 53 valid frequency points, as an example, the non-repeating collision FH sequences are obtained. Finally, the performance of the FH sequences and the probability of collision are simulated under the condition of asynchronous networking.

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What this paper is about

As the Frequency Hopping (FH) communications technologies being widely applied in wireless communications, it is more and more necessary to organize the networks for FH Radios, while papers on the collision in FH radios is difficult to find. Firstly, the theoretical tolerance of the numbers of FH sequences while building FH communication networks are presented.Then,assuming there are 53 valid frequency points, as an example, the non-repeating collision FH sequences are obtained. Finally, the performance of the FH sequences and the probability of collision are simulated under the condition of asynchronous networking.

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Available abstract

As the Frequency Hopping (FH) communications technologies being widely applied in wireless communications, it is more and more necessary to organize the networks for FH Radios, while papers on the collision in FH radios is difficult to find. Firstly, the theoretical tolerance of the numbers of FH sequences while building FH communication networks are presented.Then,assuming there are 53 valid frequency points, as an example, the non-repeating collision FH sequences are obtained. Finally, the performance of the FH sequences and the probability of collision are simulated under the condition of asynchronous networking.

Key concepts: Asynchronous communication, Frequency-hopping spread spectrum, Collision, Computer science, Wireless, Computer network, Wireless network, Telecommunications

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