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Frame Synchronization Method for BDS B2a Signal Under the Constraint of Non-binary LDPC Code

机译:非二进制LDPC码约束下的BDS B2a信号帧同步方法

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Low-Density Parity-Check (LDPC) Code has become one of the best coding technologies at present because of its low complexity iterative decoding algorithm and its performance with further close to the Shannon limit. Non-binary LDPC codes designed in high order Galois fields have shown better potential than binary LDPC codes with the same code length and code rate, therefore it was applied for the navigation message encoding in BeiDou satellite navigation system (BDS). The navigation message contains time information, ephemeris parameters, clock correction terms and so forth, which is necessary for navigation solution. As the synchronization head was not encoded, it is hard to deal with data synchronization and navigation data decoding when the navigation receiver works at a low Signal-to-Noise Ratio (SNR). Aiming at this problem, we present a synchronization scheme for BDS B2a signal by utilizing the information from the process of decoding. The synchronizer is based on syndrome checks using the decoding result of the Extended Min-Sum (EMS) algorithm. Ratios of satisfaction of all check restrictions are computed firstly, and then the boundary value is obtained through MonteCarlo method. Simulation results show that the proposed algorithm performs well at relatively low SNR compared with traditional method.
机译:低密度奇偶校验(LDPC)码由于其低复杂度的迭代解码算法以及更接近香农极限的性能而成为目前最好的编码技术之一。在相同的码长和码率下,在高阶Galois场中设计的非二进制LDPC码显示出比二进制LDPC码更好的潜力,因此,它被用于北斗卫星导航系统(BDS)中的导航消息编码。导航消息包含时间信息,星历表参数,时钟校正项等,这是导航解决方案所必需的。由于未对同步头进行编码,因此当导航接收器以低信噪比(SNR)工作时,很难处理数据同步和导航数据解码。针对这个问题,我们利用来自解码过程的信息,提出了一种针对BDS B2a信号的同步方案。同步器基于使用扩展最小和(EMS)算法的解码结果的校验子检查。首先计算所有检查限制的满足率,然后通过蒙特卡洛方法获得边界值。仿真结果表明,与传统方法相比,该算法在较低信噪比下表现良好。

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