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Loss of Continuity in Cellular Networks Under Stabilizing Transmit Power Control

机译:稳定发射功率控制下蜂窝网络的连续性损失

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摘要

Recently, passivity-based techniques to control the transmit power of mobile nodes have been proposed to ensure the finite gain stability of a class of cellular CDMA networks. These techniques implement the Zames-Falb multipliers at the mobile node and at the base stations. The finite gain stability of such a cellular network follows as a consequence of the fact that the Zames-Falb multipliers preserve positivity of monotone memoryless nonlinearities. In this note, we show that such a cellular network may not be a continuous system. Hence, the following undesirable scenarios may occur if the set-point is varied with time: (ⅰ) the Nash equilibrium may cease to exist, and (ⅱ) vanishingly small changes in set-points (such as the target SINR values) may cause the system trajectory to jump from one equilibrium point to another, leading to nonvanishingly small variations in the mobile transmit powers and the actual SINR values across such networks.
机译:最近,已经提出了基于无源性的技术来控制移动节点的发射功率,以确保一类蜂窝CDMA网络的有限增益稳定性。这些技术在移动节点和基站处实现Zames-Falb乘法器。这种蜂窝网络的有限增益稳定性是由于Zames-Falb乘法器保持单调无记忆非线性的正性这一事实的结果。在本说明中,我们显示了这样的蜂窝网络可能不是一个连续的系统。因此,如果设定点随时间变化,可能会发生以下不良情况:(ⅰ)Nash平衡可能不再存在,并且(ⅱ)设定点的微小变化(例如目标SINR值)逐渐消失系统轨迹从一个平衡点跳到另一个平衡点,从而导致此类网络中移动发射功率和实际SINR值的变化很小。

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