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Performance comparison of static routing and dynamic routing in low-Earth orbit satellite networks

机译:低地球轨道卫星网络中静态路由和动态路由的性能比较

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We compare the performance of two routing schemes for LEO satellite networks through simulation. The two routing schemes represent static and dynamic routing for the case where the LEO satellite network is modeled as a finite state automaton (FSA). Each state in this FSA modeling corresponds to an equal-length interval within the period of the LEO satellite network. Modeling the LEO satellite network in this way allows us to consider the LEO satellite network as if it is a fixed topology network within each state. The routing table for the static routing is fixed within each state whereas that for the dynamic routing is updated continuously according to the shortest-path algorithm. The simulation results show that the static routing performs better in terms of newly initiated call blocking than the dynamic one. The results also show that the static routing gives lower ongoing call blocking probabilities than the dynamic counterpart since the former's pre-computed routing table is less susceptible to the abrupt topological change during a state transition.
机译:我们通过仿真比较了LEO卫星网络的两种路由方案的性能。对于LEO卫星网络被建模为有限状态自动机(FSA)的情况,这两种路由方案分别表示静态和动态路由。该FSA建模中的每个状态对应于LEO卫星网络周期内的等长间隔。以这种方式对LEO卫星网络进行建模使我们可以将LEO卫星网络视为每个州内的固定拓扑网络。静态路由的路由表固定在每个状态内,而动态路由的路由表则根据最短路径算法不断更新。仿真结果表明,静态路由在动态发起呼叫方面要比动态路由更好。结果还表明,静态路由提供的持续呼叫阻止概率低于动态路由,因为动态路由分配器的预先计算的路由表在状态转换期间不易受到拓扑突然变化的影响。

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