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Design the RS(255,239) Encoder and Interleaving in the Space Laser Communication System

机译:设计空间激光通信系统中的RS(255,239)编码器和交织器

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Space laser communication is researched by more and more countries. Space laser communication deserves to be researched. We can acquire higher transmission speed and better transmission quality between satellite and satellite, satellite and earth by setting up laser link. But in the space laser communication system, the reliability is under influences of many factors of atmosphere, detector noise, optical platform jitter and other factors. The intensity of the signal which is attenuated because of the long transmission distance is demanded to have higher intensity to acquire low BER. The channel code technology can enhance the anti-interference ability of the system. The theory of channel coding technology is that some redundancies is added to information codes. So it can make use of the checkout polynomial to correct errors at the sink port. It help the system to get low BER rate and coding gain. Reed-Solomon (RS) code is one of the channel code, and it is one kind of multi-ary BCH code, and it can correct both burst errors and random errors, and it is widely used in the error-control schemes. The new method of the RS encoder and interleaving based on the FPGA is proposed, aiming at satisfying the needs of the widely-used error control technology in the space laser communication field. An improved method for Finite Galois Field multiplier of encoding is proposed, and it is suitable for FPGA implementation. Comparison of the XOR gates cost between the optimization and original, the number of XOR gates is lessen more than 40% .Then give a new structure of interleaving by using the FPGA. By controllingthein-data stream and out-data stream of encoder, the asynchronous process of the whole frame is accomplished, while by using multi-level pipeline, the real-time transfer of the data is achieved. By controlling the read-address and write-address of the block RAM, the interleaving operation of the arbitrary depth is synchronously implemented. Compared with the normal method, it could reduce the complexity of the channel encoder and the hardware requirement effectively.
机译:越来越多的国家对空间激光通信进行了研究。空间激光通信值得研究。通过建立激光链路,我们可以在卫星与卫星之间,卫星与地球之间获得更高的传输速度和更好的传输质量。但是在空间激光通信系统中,可靠性受大气,探测器噪声,光学平台抖动等多种因素的影响。由于传输距离长而衰减的信号的强度要求具有更高的强度以获得较低的BER。信道编码技术可以增强系统的抗干扰能力。信道编码技术的理论是将一些冗余添加到信息代码中。因此,它可以利用校验多项式来纠正接收器端口上的错误。它有助于系统获得低BER速率和编码增益。里德-所罗门(Reed-Solomon,RS)码是一种信道码,是一种多元BCH码,可以同时纠正突发错误和随机错误,在差错控制方案中得到了广泛的应用。提出了一种基于FPGA的RS编码器和交织的新方法,旨在满足空间激光通信领域广泛使用的差错控制技术的需求。提出了一种改进的有限伽罗瓦编码场乘法器方法,适用于FPGA实现。优化和原始的异或门成本比较,异或门的数量减少了40%以上,然后使用FPGA给出了一种新的交错结构。通过控制编码器的内数据流和外数据流,完成了整个帧的异步处理,同时通过使用多级流水线,实现了数据的实时传输。通过控制块RAM的读地址和写地址,可以同步地实现任意深度的交织操作。与常规方法相比,可以有效降低信道编码器的复杂度和硬件要求。

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