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P2P IP Telephony over wireless ad-hoc networks - Springer

机译:无线ad-hoc网络上的P2P IP电话-Springer

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This paper presents a new strategy to form P2P IP Telephony overlay for wireless ad-hoc networks. In the proposed strategy a structured P2P system is considered where some nodes, called super-nodes, with higher capacity form the overlay and provide registry and call routing services. As selection and admission of new super-nodes in wireless ad-hoc networks is more challenging than backbone networks, we define the strategies to select and admit new super-nodes into the overlay. On one hand, scarce resources and fluctuating link quality demand additional criteria than just node computing resources for super-nodes selection. On the other hand, the indiscriminate increase in super-node number can raise the call session setup delay and degrade the quality. This is due to the relaying of packets across multiple wireless links. In this paper, we first define the criteria to select super-nodes and then the major part of the paper is dedicated to defining the required strategies to admit new super-nodes. Our admission strategies add new super-nodes to the system whenever they are required. Since the strategy does not simply admit all eligible super-node candidates, this ensures control over the number of super-nodes and keeps the session setup delay within to the required service level threshold. We define a queuing network to model our system and evaluate the efficacy of our admission strategies with intensive simulations. Furthermore, we have implemented a P2P IP Telephony system that operates on wireless ad-hoc networks and validated the performance of our admission strategies on this real platform.
机译:本文提出了一种形成用于无线自组织网络的P2P IP电话覆盖的新策略。在提出的策略中,考虑了结构化的P2P系统,其中一些具有更高容量的节点(称为超级节点)形成了覆盖并提供注册表和呼叫路由服务。由于无线自组织网络中新超级节点的选择和接纳比骨干网络更具挑战性,因此,我们定义了选择新超级节点并将其接纳到覆盖中的策略。一方面,稀缺资源和波动的链路质量不仅需要用于超级节点选择的节点计算资源,还需要其他标准。另一方面,超级节点数目的任意增加会增加呼叫会话的建立延迟并降低质量。这是由于跨多个无线链路的数据包中继。在本文中,我们首先定义了选择超级节点的标准,然后本文的主要部分致力于定义接纳新超级节点所需的策略。我们的准入策略可在需要时将新的超级节点添加到系统中。由于该策略不能简单地接纳所有合格的超级节点候选者,因此可以确保对超级节点数量的控制,并将会话建立延迟保持在所需的服务级别阈值之内。我们定义了一个排队网络来对我们的系统进行建模,并通过深入的模拟来评估我们的录取策略的有效性。此外,我们已经实现了在无线ad-hoc网络上运行的P2P IP电话系统,并在此真实平台上验证了我们的接纳策略的性能。

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