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A new reaching law based sliding mode flow controller for connection-oriented data transmission networks

机译:基于新的基于判定定律滑动模式流量控制器,用于面向连接的数据传输网络

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In this paper we first propose a new reaching law for discrete time sliding mode control of linear time-invariant systems subject to disturbance and modelling uncertainty. The reaching law makes the sliding variable rate of change proportional to the inverse tangent of this variable, which results in bounded state and control effort. Then we apply the proposed reaching law to design an efficient flow control strategy for multi-source connection oriented (for example ATM or MPLS) data transmission networks. The strategy ensures full exploitation of the available bandwidth and eliminates the risk of data loss in the network. Moreover, the strategy proposed in this paper generates bounded data transmission rates which are limited by design parameters and do not depend on the initial state of the network.
机译:在本文中,我们首先提出了一种新的达成法,用于离散时间滑模控制线性时间不变系统受到干扰和建模不确定性。到达法律使得与该变量的逆正正成比例的滑动变化率,这导致有界状态和控制力。然后,我们应用建议的达法法设计有效的多源连接的有效流量控制策略(例如ATM或MPLS)数据传输网络。该策略确保了对可用带宽的充分利用,并消除了网络中数据丢失的风险。此外,本文中提出的策略生成受限于设计参数的限制的有界数据传输速率,并且不依赖于网络的初始状态。

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