TY - GEN
T1 - Frequency hopping zero sidelobe code set with desirable frequency selective fading and multipath interference properties
AU - Fam, Adly T.
AU - Kadlimatti, Ravi
N1 - Publisher Copyright:
© 2014 IEEE.
PY - 2014/11/13
Y1 - 2014/11/13
N2 - This paper proposes a method of generating a zerosidelobe code set from a given code/code set via interleaving each code with zeroes and multiplication of their matched filter outputs, resulting in complete cancellation of the side lobes while reinforcing the main lobe. The new code set is generated via up sampling each code, in the underlying desired code set, by a number belonging to a set of relatively prime numbers. Each code is transmitted at a different frequency. With careful selection of the relatively prime numbers, the codes can be interlaced in the time domain resulting in a frequency hopping mechanism. Frequency selective fading will only change the magnitude of the reinforced main lobe, but the cancellation of the side lobes is not affected. This removes a fundamental weakness in Golay complementary sets due to the undesirable effect of inexact cancellation of the side lobes of Golay complementary sets, due to frequency selective fading, resulting in the reemergence of nonzero side lobes. In addition to that, the underlying code set of the proposed scheme can be chosen totally freely without any predetermined conditions, unlike the Golay complementary sets which have to satisfy the complementary property. The proposed code set is also shown to be resistant to the effects of multipath.
AB - This paper proposes a method of generating a zerosidelobe code set from a given code/code set via interleaving each code with zeroes and multiplication of their matched filter outputs, resulting in complete cancellation of the side lobes while reinforcing the main lobe. The new code set is generated via up sampling each code, in the underlying desired code set, by a number belonging to a set of relatively prime numbers. Each code is transmitted at a different frequency. With careful selection of the relatively prime numbers, the codes can be interlaced in the time domain resulting in a frequency hopping mechanism. Frequency selective fading will only change the magnitude of the reinforced main lobe, but the cancellation of the side lobes is not affected. This removes a fundamental weakness in Golay complementary sets due to the undesirable effect of inexact cancellation of the side lobes of Golay complementary sets, due to frequency selective fading, resulting in the reemergence of nonzero side lobes. In addition to that, the underlying code set of the proposed scheme can be chosen totally freely without any predetermined conditions, unlike the Golay complementary sets which have to satisfy the complementary property. The proposed code set is also shown to be resistant to the effects of multipath.
KW - Frequency hopping
KW - Frequency selective fading
KW - Interleaving
KW - Multipath interference
KW - Multiplicative
KW - Zero sidelobes
UR - https://www.scopus.com/pages/publications/84912535593
U2 - 10.1109/MILCOM.2014.117
DO - 10.1109/MILCOM.2014.117
M3 - Conference contribution
AN - SCOPUS:84912535593
T3 - Proceedings - IEEE Military Communications Conference MILCOM
SP - 669
EP - 674
BT - Proceedings - 2014 IEEE Military Communications Conference
PB - Institute of Electrical and Electronics Engineers Inc.
T2 - 33rd Annual IEEE Military Communications Conference, MILCOM 2014
Y2 - 6 October 2014 through 8 October 2014
ER -