Maximizing throughput for satellite communication in a hybrid FEC/ARQ scheme using LDPC codes

S. Shambayati, C. Jones, D. Divsalar
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引用次数: 4

Abstract

A hybrid forward error correction (FEC)/automatic repeat request (ARQ) has been considered as a mechanism for providing reliable communication between NASA orbiters and landers at the planet Mars. On such a link it is proposed to use a family of capacity achieving LDPC channel codes for FEC and go-back-N protocols for ARQ. In this paper, we analyze such a system and derive equations for its performance. We then use these equations to optimize the performance of the link in terms of information throughput subject to limitations on maximum channel baud rate and spacecraft power and select the best channel code and packet size accordingly at different link path lengths. In this optimization, first the frame error rate of the channel code is expressed in terms of a simple exponential function of the transmitted bit signal-to-noise ratio (Eb/N0), obtained through curve-fitting. Then the standard throughput equation for the go-back-N protocol in terms of the channel codes frame error rate is derived. Next, using the equations for the throughput and the frame error rate, the received Eb/N0 is calculated as a function of transmitted Eb/N0. By minimizing this function, the throughput of the system is maximized for a given available spacecraft power. In the course of this optimization, we quantify the advantage afforded by a system that supports a set of possible code rates and bandwidths as opposed to a system that uses a single rate at different link path lengths.
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在使用LDPC码的混合FEC/ARQ方案中最大化卫星通信吞吐量
混合前向纠错(FEC)/自动重复请求(ARQ)被认为是NASA轨道飞行器和火星着陆器之间提供可靠通信的一种机制。在这样的链路上,建议使用一组容量来实现LDPC信道码的FEC和回退n协议的ARQ。在本文中,我们分析了这样一个系统,并推导了其性能方程。然后,我们利用这些方程在最大信道波特率和航天器功率的限制下,从信息吞吐量方面优化链路的性能,并在不同的链路路径长度下选择最佳的信道代码和数据包大小。在该优化中,首先将信道码的帧误码率表示为传输比特信噪比(Eb/N0)的简单指数函数,通过曲线拟合得到。然后推导了基于信道码帧误码率的回退n协议的标准吞吐量方程。接下来,利用吞吐量和帧错误率方程,计算接收到的Eb/N0作为发送Eb/N0的函数。通过最小化该函数,系统的吞吐量在给定的可用航天器功率下得到最大化。在此优化过程中,我们量化了支持一组可能的码率和带宽的系统所提供的优势,而不是在不同链路路径长度上使用单一速率的系统。
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