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Compensation: Architecture for supporting dynamicity and negotiation in accounting, charging and billing

机译:补偿:用于支持计费,计费和计费中的动态和协商的体系结构

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摘要

As of today, contractual agreements govern the terms of interaction between users and providers as well as between interoperating providers. Such contracts indicate usable services and resources, tariffs, payment methods, etc. Typically, these terms are negotiated once before the contract is signed and are seldom changed thereafter, such that contracts are rather static and inflexible. Furthermore, establishing such a contract requires human involvement. As a consequence, it is difficult for small content or access providers to reach users and to find interoperation partners amongst the large operators. In addition, providers in general lack flexibility with respect to charging according to demand, and users are unable to easily change their preferred access and service conditions depending on their current life situation and location. Supporting automated and dynamic negotiation of contractual agreements as well as implementing these agreements in an automated, ad hoc fashion are therefore key requirements for compensation systems in future mobile networks. In this paper we propose a functional compensation architecture that meets these key requirements. The architecture is furthermore designed to be able to operate atop of current compensation systems and thus protects and even leverages prior investments. Finally, the architecture allows for the integration of different legacy and non-legacy compensation-related components and thus supports heterogeneous systems. The description of the conceptual architecture in this work is complemented by presenting a prototype including first performance indicators.
机译:到目前为止,合同协议支配着用户与提供者之间以及互操作的提供者之间的交互条款。此类合同指示可用的服务和资源,资费,支付方式等。通常,这些条款在合同签订之前先经过协商,之后很少更改,因此合同相当静态且缺乏灵活性。此外,建立这样的合同需要人的参与。结果,小型内容或访问提供商很难到达用户并在大型运营商之间找到互操作伙伴。另外,提供商通常在根据需求收费方面缺乏灵活性,并且用户不能根据其当前生活状况和位置轻易地改变其优选的接入和服务条件。因此,支持合同协议的自动和动态协商以及以自动化,临时的方式实施这些协议是未来移动网络中补偿系统的关键要求。在本文中,我们提出了一种满足这些关键要求的功能补偿架构。该体系结构还被设计为能够在当前补偿系统之上运行,从而保护甚至利用先前的投资。最后,该体系结构允许集成不同的遗留和非遗留补偿相关组件,从而支持异构系统。通过提供一个包含第一项性能指标的原型,可以补充本文对概念体系结构的描述。

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