[1] European Broadcasting Union and Union Européenne de Radio-Télévision. ETSI ES 201 980 V2.2.1 Digital radio mondiale(DRM)system specification [S]. European Broadcasting Union and Union Européenne de Radio-Télévision, 2005.
[2] European Broadcasting Union and Union Européenne de Radio-Télévision. ETSI EN 300 401 V1.3.1 Digital audio broadcasting(DAB)to mobile, portable and fixed receivers [S]. European Broadcasting Union and Union Européenne de Radio-Télévision, 2000.
[3] Zhou Jianzheng, Wang Zhigong, Li Li, et al. Frequency planning of RF front-end for DRM receivers [J]. Chinese High Technology Letters, 2008, 18(5): 480-486.(in Chinese)
[4] Unkrich M A, Meyer R G. Conditions for start-up in crystal oscillators [J]. IEEE Journal of Solid-State Circuits, 1982, 17(1): 87-90.
[5] Toki M. High effective Q CMOS crystal oscillator design [C]//Proceedings of the Annual IEEE International Frequency Control Symposium. Besançon, France, 1999: 366-369.
[6] Hajimiri A, Lee T H. A general theory of phase noise in electrical oscillators [J]. IEEE Journal of Solid-State Circuits, 1998, 33(2):179-194.
[7] Oh N J, Lee S G. 11-GHz CMOS differential VCO with back-gate transformer feedback [J]. IEEE Microwave and Wireless Components Letters, 2005, 15(11): 733-735.
[8] Addouche M, Brendel R, Gillet D, et al. Modeling of quartz crystal oscillators by using nonlinear dipolar method [J]. IEEE Transactions on Ultrasonic, Ferroelectrics, and Frequency Control, 2003, 50(5): 487-495.
[9] Ivanilevic I I, Vasiljevic D M. The quartz crystal oscillator realization using current conveyors [J]. IEEE Transactions on Circuits and Systems, 1993, 40(8): 530-533.
[10] Karthaus U. A differential two-pin crystal oscillator-concept, analysis, and implementation [J]. IEEE Transactions on Circuits and Systems, 2006, 53(10): 1073-1077.
[11] Zhou Shaohua, Zeng Jianping, Xiong Qi, et al. Study and design of integrated crystal oscillator [C]//2009 International Conference on Wireless Communications and Signal Processing. Nanjing, China, 2009: 1027-1030.