Title :
Adaptive synchronization and integration region optimization for energy detection IR-UWB receivers
Author :
Zhou, Qin ; Zou, Zhuo ; Tenhunen, Hannu ; Zheng, Li-Rong
Author_Institution :
Sch. of Inf. & Commun. Technol., iPack Vinn Excellence Center, R. Inst. of Technol. (KTH), Stockholm, Sweden
Abstract :
Non-coherent energy detection (ED) IR-UWB receivers exhibit strong advantages in low data rate, low power and low cost applications such as RFID and Wireless Sensor Networks. However, the performance of ED receivers is usually suffered from the noise enhancement due to the large time-bandwidth product. The integration region of the receiver integrator significantly affects the bit error rate (BER) performance. This paper presents a method of synchronization and estimating the optimal integration region (i.e., the starting point and the length of the integration window), which is based on the analysis of received signal energy capture and combined with a time of arrival (TOA) estimation. The proposed scheme is based on the symbol rate sampling and does not require a priori information about the channel delay profile. Besides, it can adapt to various indoor channel environments. The algorithm has a moderate accuracy but a very low complexity and fast synchronization speed. The validity of the proposed approach is demonstrated by numerical results using IEEE 802.15.4a channel models.
Keywords :
Zigbee; error statistics; optical communication; receivers; synchronisation; ultra wideband communication; wireless channels; BER; ED IR-UWB receivers; IEEE 802.15.4a channel models; TOA estimation; adaptive synchronization; bit error rate; channel delay profile; indoor channel environments; integration region optimization; low data rate; noise enhancement; noncoherent energy detection; optimal integration region; received signal energy capture; receiver integrator; symbol rate sampling; time of arrival estimation; Bit error rate; Delay; Energy capture; Optimization; Receivers; Synchronization; Wireless sensor networks; UWB; energy detection; integration region optimization; non-coherent; synchronization;
Conference_Titel :
Ultra-Wideband (ICUWB), 2012 IEEE International Conference on
Conference_Location :
Syracuse, NY
Print_ISBN :
978-1-4577-2031-4
DOI :
10.1109/ICUWB.2012.6340502