It researches the requirements of control plane in T-MPLS and analyses the architecture of control plane based on TMPLS
testbed. With the growth of the demand for packet transport services, packet transport network is becoming the
core technology for transport network, especially T-MPLS. Because of simply implement, independent control plane,
complete OAM, T-MPLS becomes the most promising technology for packet transport network. The control plane is
responsible for handling dynamically and in real-time network's esources in order to manage the establishment and
deletion of label switch path(LSP), and for disseminating and discovering network topology and resource availability
through the exchange of control (signaling and routing) messages between neighbor nodes over the data communication
network (DCN). It is composed of mainly four modules, connection controller (containing signaling module), routing,
resource manager, and protocol controller module. The four modules interact with each other to complete the control
plane's functions. The flow of every module is designed in this paper to complete control plane's software programming.
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