New Classes of Optimal Low Hit Zone Frequency Hopping Sequences with New Parameters by Interleaving Technique
Xianhua Niu, Daiyuan Peng, Zhengchun Zhou
Abstract
Xianhua Niu, Daiyuan Peng, Zhengchun Zhou
Abstract
In this paper, new design of optimal frequency hopping sequences (FHSs) with low hit zone (LHZ) with respect to the Peng-Fan-Lee bound is presented based on interleaving techniques. By the new design, new classes of optimal LHZ FHS sets with large family size are obtained. It is shown that all the sequences in the proposed FHS sets are shift distinct. The proposed FHS sets are suitable for quasi-synchronous time/frequency hopping code division multiple access systems to eliminate multiple-access interference.
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In this paper, new design of optimal frequency hopping sequences (FHSs) with low hit zone (LHZ) with respect to the Peng-Fan-Lee bound is presented based on interleaving techniques. By the new design, new classes of optimal LHZ FHS sets with large family size are obtained. It is shown that all the sequences in the proposed FHS sets are shift distinct. The proposed FHS sets are suitable for quasi-synchronous time/frequency hopping code division multiple access systems to eliminate multiple-access interference.
Key concepts: Interleaving, Frequency-hopping spread spectrum, Interference (communication), Computer science, Code (set theory), Algorithm, Topology (electrical circuits), Mathematics