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On the Computational Complexity of Measuring Global Stability of Banking Networks

机译:衡量银行网络全球稳定性的计算复杂性

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Threats on the stability of a financial system may severely affect the functioning of the entire economy, and thus considerable emphasis is placed on the analyzing the cause and effect of such threats. The financial crisis in the current and past decade has shown that one important cause of instability in global markets is the so-called financial contagion, namely the spreadings of instabilities or failures of individual components of the network to other, perhaps healthier, components. This leads to a natural question of whether the regulatory authorities could have predicted and perhaps mitigated the current economic crisis by effective computations of some stability measure of the banking networks. Motivated by such observations, we consider the problem of defining and evaluating stabilities of both homogeneous and heterogeneous banking networks against propagation of synchronous idiosyncratic shocks given to a subset of banks. We formalize the homogeneous banking network model of Nier et al. (J. Econ. Dyn. Control 31:2033-2060, 2007) and its corresponding heterogeneous version, formalize the synchronous shock propagation procedures outlined in (Nier et al. J. Econ. Dyn. Control 31:2033-2060, 2007; M. Eboli Mimeo, 2004), define two appropriate stability measures and investigate the computational complexities of evaluating these measures for various network topologies and parameters of interest. Our results and proofs also shed some light on the properties of topologies and parameters of the network that may lead to higher or lower stabilities.
机译:对金融系统稳定性的威胁可能会严重影响整个经济的运作,因此,相当多的重点放在分析此类威胁的原因和影响上。当前和过去十年中的金融危机表明,全球市场不稳定的一个重要原因是所谓的金融传染,即网络的各个组成部分的不稳定性或故障向其他可能更健康的部分扩散。这就引出了一个自然的问题,即监管机构是否可以通过有效计算银行网络的某些稳定性指标来预测并缓解当前的经济危机。基于这样的观察,我们考虑定义和评估同质和异质银行网络的稳定性,以防止同步性特异冲击传递给一部分银行的问题。我们对Nier等人的同质银行网络模型进行形式化。 (J.Econ.Dyn.Control 31:2033-2060,2007)及其相应的异构版本,正式化了(Nier等人,J.Econ.Dyn.Control 31:2033-2060,2007;和N.等。 M. Eboli Mimeo,2004年),定义了两种适当的稳定性测度,并研究了针对各种网络拓扑和相关参数评估这些测度的计算复杂性。我们的结果和证明也揭示了可能导致更高或更低稳定性的网络拓扑和参数属性。

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