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In systems with highly efficient turbo-codes, where §the operating SNR may be as low as 1-2 dB, excellent §estimation accuracy for synchronisation parameters §is required. However, in such conditions §conventional non-data-aided synchronisation §techniques become difficult due to the low SNRs. In §addition, to achieve a high efficiency, it is §desirable to recovery synchronisation from received §data signals without using preambles. This book §describes a novel concept, which is called a priori §probability aided synchronisation. This concept fits §particularly well with the iterative turbo decoder, §but it will also be applicable with other types of §code. The proposed synchronisation operates §iteratively and jointly with the turbo decoding, §rather than separately prior to the decoding. This §allows a successive refinement of synchronisation §and provides reliable estimation and robust data §decoding against a wide range of synchronisation §offsets. It is shown that remarkable §performance approaching that of the data-aided §techniques can be achieved using blind §synchronisation at low SNRs.