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APP Decoding of Binary Linear Block Codes on Gilbert-Elliott Channels

机译:在Gilbert-elliott通道上的二进制线性块代码的应用解码

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In this paper, a mathematical framework for APP decoding of binary linear block codes on the Gilbert-Elliott channel (GEC) is developed. For this purpose, the theory of group representations and finite state machines are combined for deriving a `dual APP' algorithm for the GEC. The presented approach belongs to the class of single-sweep algorithms. As such, complexity benefits of the dual approaches are preserved while additional storage savings are obtained over other single sweep algorithms. The presented APP decoding technique also takes account of the increasing demand for efficient utilization of bandwidth making higher rate codes more desirable.
机译:在本文中,开发了用于Gilbert-elliott信道(GEC)上的二进制线性块代码的应用程序解码的数学框架。为此目的,组合组表示和有限状态机的理论用于导出GEC的“双应用”算法。所提出的方法属于单扫算法的类。因此,在其他单次扫描算法获得额外的存储节省时,保留了双方法的复杂性益处。所呈现的应用解码技术还考虑了有效利用带宽的需求不断增加,使得更高的速率代码更为希望。

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