Error Correction LDPC Encoder with Bit-Flipping Decoder

Sowmya K B, Rahul Raj D N, Sandesh Shetty
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Abstract

The communication method conveys information from the transmitter to the receiver over an intermediate medium. The competence of received information is determined by medium and clatter. There is a great need for robust error correction techniques with ever accumulative usage of wireless expedients such as portable electronic items and broadband modems. Wireless communication schemes depend on advanced error rectification techniques for their suitable functioning. Hence transferring and getting information with less or without error, while utilizing the accessible bandwidth is a foremost proposal, project necessities for present digital wireless communication systems comprising of high throughput, low power consumption, and less area. In this article, the functional analysis is performed for error control coding technique i.e., Low-Density-Parity-Check (LDPC) coding in terms of device utilization and power. The functional verification and the simulation are performed using Verilog HDL. Error correction techniques such as Linear block codes, RS codes, Convolutional codes are employed to implement forward error correction but as the constraint length increases the design of decoders becomes more complex. LDPC is a type of block code that is capable of correcting random errors. They are popular because of their eminent detection and correction capabilities. LDPC encoding technique provides high throughput and aims to improve BER when compared to conventional techniques. The decoding of LDPC codeword employs the Message Passing Algorithm, where each bit in a codeword is allocated to special nodes. The performance of these codes is hence better and easily attains Shannon’s limit than the previously used codes. Synthesis for the technique is performed and utilization reports are derived from the synthesis in Vivado.
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纠错LDPC编码器与位翻转解码器
该通信方法通过中间介质将信息从发送器传送到接收器。接收信息的能力是由媒介和噪声决定的。随着便携式电子产品和宽带调制解调器等无线设备的不断使用,非常需要强大的纠错技术。无线通信方案依赖于先进的纠错技术来实现其合适的功能。因此,在充分利用可访问带宽的情况下,以更少或更准确地传输和获取信息是当前高吞吐量、低功耗、小面积的数字无线通信系统的首要建议和工程要求。在本文中,对错误控制编码技术,即低密度奇偶校验(LDPC)编码在设备利用率和功耗方面进行了功能分析。利用Verilog HDL进行了功能验证和仿真。采用线性分组码、RS码、卷积码等纠错技术实现前向纠错,但随着约束长度的增加,解码器的设计变得更加复杂。LDPC是一种能够纠正随机错误的分组码。它们之所以受欢迎,是因为它们卓越的探测和校正能力。与传统编码技术相比,LDPC编码技术具有高吞吐量和提高误码率的目的。LDPC码字的解码采用消息传递算法,将码字中的每一位分配给特定的节点。因此,这些代码的性能比以前使用的代码更好,更容易达到香农极限。进行了该技术的合成,并从Vivado合成中获得了利用报告。
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