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Confirming Connectivity in Interworked Broadcast and Mobile Networks

机译:确认互通的广播和移动网络中的连接

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Industry reactions to major shifts such as mobile broadcast convergence are typically a mixture of opportunities and threats. Both the mobile and the broadcast industries acknowledge the role that convergence will play in their commercial futures, but both would prefer to achieve convergence "on their own patch." For this reason, the most appealing solution to fulfil the contrasting requirements from the different players is represented by interworking between these networks rather than integration. This approach avoids integration, thereby minimizing the changes required in each network and ensuring each network remains an autonomous, independently managed entity. The Internet protocol (IP) is chosen as the "glue" between these heterogeneous networks, providing the generic interworking platform. The main reason behind this choice is that IP was designed as an "interworking protocol" to connect multiple, physically-different networks in such a way as to remain independent of the underlying transport mechanisms used. This article concentrates on the confirm connectivity architecture definition of the interworking model between WLAN, 3G, and DVB. Broadcast networks are uni-directional in nature. When a user wants to receive a service over a broadcast network, there is no way to know whether the broadcast interface of the terminal is configured correctly. In this article we describe a method to automatically configure and test, without user intervention, that the DVB interface of the terminal can receive datagrams from the broadcast network. Furthermore, an optimization method to reduce the total number of confirm connectivity messages (CCMs) sent by the multimode terminals is introduced with simulation results to validate and prove its effectiveness
机译:行业对诸如移动广播融合之类的重大变化的反应通常是机遇与威胁的混合。移动和广播行业都承认融合将在其商业未来中扮演的角色,但两者都希望“在自己的补丁上”实现融合。因此,满足这些不同竞争者需求的最有吸引力的解决方案是这些网络之间的互通而不是集成。这种方法避免了集成,从而最大程度地减少了每个网络所需的更改,并确保每个网络仍然是一个自治的,独立管理的实体。 Internet协议(IP)被选择为这些异构网络之间的“胶水”,从而提供了通用的互通平台。该选择背后的主要原因是IP被设计为“互通协议”,以保持独立于所使用的基础传输机制的方式连接多个物理上不同的网络。本文重点介绍WLAN,3G和DVB之间互通模型的确认连接架构定义。广播网络本质上是单向的。当用户想要通过广播网络接收服务时,无法知道终端的广播接口是否配置正确。在本文中,我们描述了一种无需用户干预即可自动配置和测试的方法,即终端的DVB接口可以从广播网络接收数据报。此外,通过仿真结果介绍了一种减少多模终端发送的确认连接消息(CCM)总数的优化方法,以验证并证明其有效性。

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