Proof-of-Balance: Game-Theoretic Consensus for Controller Load Balancing of SDN

Siyi Liao, Jun Wu, Jianhua Li, A. Bashir
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Abstract

Software Defined Networking (SDN) focus on the isolation of control plane and data plane, greatly enhancing the network's support for heterogeneity and flexibility. However, although the programmable network greatly improves the performance of all aspects of the network, flexible load balancing across controllers still challenges the current SDN architecture. Complex application scenarios lead to flexible and changeable communication requirements, making it difficult to guarantee the Quality of Service (QoS) for SDN users. To address this issue, this paper proposes a paradigm that uses blockchain to incentive safe load balancing for multiple controllers. We proposed a controller consortium blockchain for secure and efficient load balancing of multi-controllers, which includes a new cryptographic currency balance coin and a novel consensus mechanism Proof-of-Balance (PoB). In addition, we have designed a novel game theory-based incentive mechanism to incentive controllers with tight communication resources to offload tasks to idle controllers. The security analysis and performance simulation results indicate the superiority and effectiveness of the proposed scheme.
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平衡证明:SDN控制器负载平衡的博弈论共识
软件定义网络(SDN)注重控制平面和数据平面的隔离,极大地增强了网络对异构性和灵活性的支持。然而,尽管可编程网络极大地提高了网络各方面的性能,但跨控制器的灵活负载均衡仍然对当前的SDN架构提出了挑战。复杂的应用场景导致通信需求灵活多变,难以保证SDN用户的QoS (Quality of Service)。为了解决这个问题,本文提出了一个使用区块链来激励多个控制器的安全负载平衡的范例。我们提出了一种用于安全高效的多控制器负载平衡的控制器联盟区块链,其中包括一种新的加密货币平衡币和一种新的共识机制平衡证明(PoB)。此外,我们设计了一种新颖的基于博弈论的激励机制,以激励通信资源紧张的控制器将任务卸载给空闲控制器。安全性分析和性能仿真结果表明了该方案的优越性和有效性。
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