Dynamic Count Models of Financial Contagion with Applications to Global Banking and Currency Crises. An international model of contagion and interconnectedness is developed and applied using annual time series on banking and currency crises in developed and emerging countries. The model represents a new class of multivariate dynamic count models that allows for important dynamical interactions to capture the transmission of financial crises across national and international asset markets. The p ....Dynamic Count Models of Financial Contagion with Applications to Global Banking and Currency Crises. An international model of contagion and interconnectedness is developed and applied using annual time series on banking and currency crises in developed and emerging countries. The model represents a new class of multivariate dynamic count models that allows for important dynamical interactions to capture the transmission of financial crises across national and international asset markets. The properties of the models are investigated as well as the development of new estimation methods based on simulation techniques. An important implication of the approach is that it can be used as an early warning signal of future crises, thereby providing an input into the design of future policy on crisis management.Read moreRead less
Asset Market Interconnectedness and Exotic Options: The Mean Impact Surface. The project intends to develop models to price financial risk more accurately during periods of financial stress and increasing global interconnectedness. Specifically, it plans to develop a new class of latent factor models with time-varying loadings to model the interconnectedness of global financial markets during periods of financial stress. A key feature of the proposed model is the role of second-order conditional ....Asset Market Interconnectedness and Exotic Options: The Mean Impact Surface. The project intends to develop models to price financial risk more accurately during periods of financial stress and increasing global interconnectedness. Specifically, it plans to develop a new class of latent factor models with time-varying loadings to model the interconnectedness of global financial markets during periods of financial stress. A key feature of the proposed model is the role of second-order conditional moments of the underlying innovation processes in modelling asset return dynamics. The proposed model is characterised by higher order nonlinear structures which are captured graphically by the mean impact surface. The project also plans to develop a new class of tests to detect higher order dependencies among asset returns in the presence of time-varying volatility, and to investigate the implications for constructing portfolios with exotic options to hedge risk during financial crises.Read moreRead less