Research of DBA schemes and QoS in PON system

Li Li, Xin Shouting, Duan De-gong
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引用次数: 3

Abstract

With the further promotion of smart city, optical access for replacing copper access and integration of three networks, PON is widely considered as the best option for next-generation high-speed access network owing to its advantages such as high bandwidth, low cost and good compatibility. However, its point-to-multipoint topological structure is born with the problem of bandwidth allocation scheduling and there are serious security risks in its downlink broadcasting transmit mode, which impose restrictions on the widespread use of the technology. After making a detailed analysis and comparison of the existing bandwidth allocation algorithm, the deterioration of light load, low utilization rate of bandwidth, poor fairness and inability to guarantee QoS are pointed out and the original dual-clocking DBA algorithm is put forward. Meanwhile, OLT/ONU bidirectional authentication during registration is proposed and Diffie-Hellman key exchange protocol is introduced. The information that can perform key exchange is embedded into authentication information and passing another initial key is no longer needed for the following data encryptions, which strictly ensure system security in the authentication step. The experimental results show that this scheme has a great advantage in reducing average delay, queue delay and throughput of system as well as improving system security.
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PON系统中DBA方案与QoS的研究
随着智慧城市、光接入取代铜接入和三网融合的深入推进,PON以其带宽高、成本低、兼容性好等优点被广泛认为是下一代高速接入网的最佳选择。但其点到多点的拓扑结构生来就存在带宽分配调度问题,其下行广播传输方式存在严重的安全隐患,限制了该技术的广泛应用。在对现有带宽分配算法进行详细分析和比较后,指出了轻负载恶化、带宽利用率低、公平性差、不能保证QoS等问题,提出了原有的双时钟DBA算法。同时,提出了注册过程中的OLT/ONU双向认证,并引入了Diffie-Hellman密钥交换协议。将可以进行密钥交换的信息嵌入到鉴权信息中,后续数据加密不再需要传递另一个初始密钥,严格保证了鉴权步骤中的系统安全性。实验结果表明,该方案在降低系统平均延迟、队列延迟和吞吐量以及提高系统安全性方面具有很大的优势。
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