Title :
Ambiguity Mitigating Technique for Cosine-Phased Binary Offset Carrier Signal
Author :
Zhou, Yanling ; Hu, Xiulin ; Ke, Ting ; Tang, Zuping
Author_Institution :
Dept. of Electron. & Inf. Eng., Huazhong Univ. of Sci. & Technol., Wuhan, China
fDate :
6/1/2012 12:00:00 AM
Abstract :
This letter focuses on mitigating ambiguity for cosine-phased binary offset carrier (BOC) modulated signals which are used in the global navigation satellite system (GNSS). The main idea is to use the cross-correlation function (CCF) of the received cosine-phased BOC signal with the specifically designed local auxiliary signal to counterbalance the undesired side peaks of the received BOC autocorrelation function (ACF), the final correlation function has only two small positive side peaks which can be rectified by combing with the classical bump jump (BJ) technique easily. The modulated symbol of the local auxiliary signal is derived and simulations show that at the cost of some degradation of detection probability in the acquisition phase the proposed method is better than the traditional BJ method in mitigating the ambiguity for cosine-phased BOC signals, especially when the subcarrier frequency is high and even under multipath interference.
Keywords :
phase modulation; probability; satellite navigation; BJ technique; GNSS; acquisition phase; ambiguity mitigating technique; auxiliary signal modulated symbol; bump jump technique; cosine-phased BOC signal modulation; cosine-phased binary offset carrier signal modulation; cross-correlation function; detection probability; global navigation satellite system; multipath interference; received BOC autocorrelation function; subcarrier frequency; Bandwidth; Correlation; Delay; Global Navigation Satellite Systems; Modulation; Noise; Shape; Binary offset carrier (BOC) modulation; bump jump (BJ); global navigation satellite system (GNSS); mitigating ambiguity;
Journal_Title :
Wireless Communications, IEEE Transactions on
DOI :
10.1109/TWC.2012.041612.110531