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An Adaptive Algorithm for Joint Data Detection and Channel Estimation for Meteor Burst Communications Based on Per-Survivor Processing

机译:基于PER-SURVIVIVOR处理的流星突发通信联合数据检测和信道估计的自适应算法

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For meteor burst communications (MBC), although per-survivor processing (PSP) based on joint data and channel estimation provides superior performance and robustness for meteor burst communications (MBC), great computational complexity constrains its application in practice. On this occasion, a dimension-down PSP (D-PSP) algorithm and a adaptive state reduction of PSP (ASRP) algorithm are proposed to curve this problem in this paper. On the basis of this, the adaptive state reduction using a dimension-down PSP (ADPSP) is proposed to combine the advantages of D-PSP and ASRP, which reduces the computational time and memory size for exponentially decaying meteor burst channels and makes maximum likelihood sequence detection (MLSD) possible for adaptive data transmission. Simulation results are presented to validate the theoretical analysis. It is shown that deploying the proposed ADPSP algorithm can achieve a good tradeoff between performance and computational complexity dynamically, and provide reliable data transmission for MBC systems with adaptive coding and modulation.
机译:对于流星突发通信(MBC),尽管基于联合数据和信道估计的每个Survivor处理(PSP)为流星突发通信提供了卓越的性能和鲁棒性,但是很大的计算复杂性在实践中限制了其应用。在这种情况下,提出了一种尺寸下的PSP(D-PSP)算法和PSP(ASRP)算法的自适应状态降低,以便在本文中曲线曲线。在此基础上,提出了使用维度下的PSP(ADPSP)的自适应状态减少以结合D-PSP和ASRP的优点,这降低了用于指数衰减的流星突发通道的计算时间和内存大小并制定最大可能性用于自适应数据传输的序列检测(MLSD)。提出了仿真结果验证了理论分析。结果表明,部署所提出的ADPSP算法可以动态地实现性能和计算复杂性之间的良好权衡,并为具有自适应编码和调制的MBC系统提供可靠的数据传输。

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