Today's Internet is heavily used for multimedia streaming from cloud backends, while the Internet of Things (IoT) reverses the traditional data flow, with high data volumes produced at the network edge. Information Centric Networking (ICN) advocates against a host-centric communication model which is promising for distributed edge computing environments and the execution of IoT applications in a decentralized fashion. By using naming schemes, data is tightly coupled to names instead of hosts which simplifies discovery and access to data and services. However, the tight coupling challenges network performance due to additional synchronization overhead of large data volumes and services. We present Tangle Centric Networking (TCN) -- a decentralized data structure for coordinated distributed applications and data exchange following principles of ICN. TCN can react on data and service changes and update them accordingly in network nodes, provide distributed data structures and enable cooperative work on the same data without huge overhead by using Tangles for coordination. We implemented TCN in simulations and evaluated the concept against a base line scenario.
翻译:今天的互联网被大量用于云层后端的多媒体流,而物联网(IoT)则逆转传统数据流,在网络边缘生产大量数据。信息中心网络(ICN)主张反对一种以主机为中心的通信模式,这种模式对分布式边缘计算环境以及分散地应用IoT应用程序很有希望。通过使用命名办法,数据与名称紧密结合,而不是与简化发现和获取数据与服务的主机紧密结合。然而,由于大量数据量和服务的额外同步性间接费用,网络的运行十分紧张。我们提出了Tangle Centric网络(TCN) -- -- 一种分散的数据结构,用于协调分布式应用和数据交换。 TCN可以对数据和服务变化作出反应,并在网络节点上相应更新数据,提供分布式数据结构,并通过使用Tangles进行协调,使在无巨大高端数据上的合作工作得以进行。我们在模拟中应用TCN,并根据基准线情景对概念进行了评估。