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Mobility and address freedom in AllNet

机译:AllNet中的移动性和地址自由

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Mobile devices can be addressed through a variety of means. We propose that each device select its own addresses, we motivate this choice, and we describe mechanisms for delivering data using these addresses. Hierarchical point-of-attachment addresses are not effective with mobile devices. To support mobility, the network has to maintain a global mapping between addresses and locations. Given that such a mapping must be maintained anyway, there is no reason for structure in mobile addresses. Mobile addresses may therefore be unstructured and even self-selected. The advantages of self-selected addresses include the ability of devices to join and form a network without any need for prior agreement or central coordination, and the ability to choose a personal, memorable address. Self-selection does require a mechanism to resolve ambiguity when the same address is selected by multiple devices. Of the many possible ways to provide such disambiguation, we investigate disambiguation that relies on the authentication and encryption used for communications security. The principles presented here are general, and complemented by examples of unstructured and self-selected addresses used within the AllNet network protocol.
机译:可以通过多种方式寻址移动设备。我们建议每个设备选择其自己的地址,以激发这一选择,并描述使用这些地址传递数据的机制。层次结构的连接点地址在移动设备上无效。为了支持移动性,网络必须维护地址和位置之间的全局映射。鉴于无论如何都必须保持这样的映射,因此没有理由在移动地址中进行结构化。因此,移动地址可能是非结构化的,甚至是自行选择的。自选地址的优点包括无需预先协议或中央协调即可加入设备并形成网络的能力,以及选择个人难忘地址的能力。当多个设备选择相同的地址时,自选确实需要一种机制来解决歧义。在提供这种歧义消除的许多可能方法中,我们研究了歧义消除,这种歧义依赖于用于通信安全性的身份验证和加密。此处介绍的原理是通用的,并由AllNet网络协议中使用的非结构化和自选地址的示例进行了补充。

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