TY - CONF
T1 - A new tracking method for high dynamic DS-SS signal
AU - Yizhu, Zhan
AU - Jiansong, Ding
AU - Wenyu, Wu
AU - Jiangang, Hou
AU - Wei, Cui
PY - 2015
Y1 - 2015
N2 - As the key technique in the direct sequence spread spectrum (DS-SS) receiver, the tracking of carrier and pseudo code has been receiving a growing attention. Based on the DS-SS signals already accomplished acquisition, this paper proposes a novel high dynamic DS-SS signal tracking method. In the proposed method, the carrier tracking is achieved via the phase locked loop (PLL) serially assisted by the frequency locked loop (FLL). As for the pseudo code tracking, the wide-correlated digital delay locked loop (DDLL) and the narrow-correlated DDLL are jointly employed. Furthermore, the precision of tracking velocity and range is especially analyzed. Simulation results demonstrate that in the circumstance of high dynamic and low CNR, the method has a very high tracking accuracy.
AB - As the key technique in the direct sequence spread spectrum (DS-SS) receiver, the tracking of carrier and pseudo code has been receiving a growing attention. Based on the DS-SS signals already accomplished acquisition, this paper proposes a novel high dynamic DS-SS signal tracking method. In the proposed method, the carrier tracking is achieved via the phase locked loop (PLL) serially assisted by the frequency locked loop (FLL). As for the pseudo code tracking, the wide-correlated digital delay locked loop (DDLL) and the narrow-correlated DDLL are jointly employed. Furthermore, the precision of tracking velocity and range is especially analyzed. Simulation results demonstrate that in the circumstance of high dynamic and low CNR, the method has a very high tracking accuracy.
KW - Carrier tracking loop
KW - High dynamic DS-SS signal
KW - Pseudo-code tracking loop
KW - Tracking error
UR - http://www.scopus.com/inward/record.url?scp=84973514587&partnerID=8YFLogxK
M3 - Paper
AN - SCOPUS:84973514587
T2 - IET International Radar Conference 2015
Y2 - 14 October 2015 through 16 October 2015
ER -