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Modeling and Optimal Design of Linear Network Coding for Secure Unicast with Multiple Streams

机译:多流安全单播线性网络编码的建模与优化设计

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In this paper, we will address the modeling and optimal design of linear network coding (LNC) for secure unicast with multiple streams between the same source and destination pair. The objectives include 1) satisfying the weakly secure requirements, 2) maximizing the transmission data rate, and 3) minimizing the size of the finite field. To fulfill the first two objectives, we formulate a secure unicast routing problem and prove that it is equivalent to a constrained link-disjoint path problem. Based on this fact, we develop an efficient algorithm that can find the optimal unicast topology in a polynomial amount of time. With the given topology, we investigate the design of both weakly secure deterministic LNC and weakly secure random LNC. In the designs of deterministic LNC and random LNC, we prove that the required size of the finite field decreases with the decrease of the number of intermediate nodes in the topology. Therefore, to meet the third objective, we formulate a problem to minimize the number of intermediate nodes. We prove that this problem is NP-Complete and develop an approximation algorithm to solve it. Finally, extensive simulation experiments have been conducted, and the results demonstrate the effectiveness of the proposed algorithms.
机译:在本文中,我们将解决线性网络编码(LNC)的建模和优化设计问题,以实现在同一源对和目标对之间具有多个流的安全单播。目标包括1)满足弱安全性要求; 2)最大化传输数据速率; 3)最小化有限域的大小。为了实现前两个目标,我们制定了一个安全的单播路由问题,并证明它等效于约束链路不相交路径问题。基于这一事实,我们开发了一种可以在多项式时间内找到最佳单播拓扑的有效算法。对于给定的拓扑,我们研究了弱安全确定性LNC和弱安全随机LNC的设计。在确定性LNC和随机LNC的设计中,我们证明了所需的有限域大小随拓扑中中间节点数量的减少而减小。因此,为了达到第三个目标,我们提出了一个问题,以减少中间节点的数量。我们证明这个问题是NP-Complete,并开发了一种近似算法来解决。最后,进行了广泛的仿真实验,结果证明了所提算法的有效性。

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