Title :
Optimal portfolio for a robust financial system
Author :
Maeno, Y. ; Morinaga, Satoshi ; Nishiguchi, Kenji ; Matsushima, Hirokazu
Author_Institution :
NEC Corp., Kawasaki, Japan
Abstract :
This study presents an ANWSER model (asset network systemic risk model) to quantify the risk of financial contagion which manifests itself in a financial crisis. The transmission of financial distress is governed by a heterogeneous interbank credit network and an investment portfolio of banks. Bankruptcy reproductive ratio of a financial system is computed as a function of the diversity and risk exposure of an investment portfolio of banks, and the denseness and concentration of a heterogeneous interbank credit network. An analytic solution of the bankruptcy reproductive ratio for a small financial system is derived and a numerical solution for a large financial system is obtained. For a large financial system, large diversity among banks in the investment portfolio makes financial contagion more damaging on the average. But large diversity is essentially effective in eliminating the risk of financial contagion in the worst case of financial crisis scenarios. A bank-unique specialization portfolio is more suitable than a uniform diversification portfolio and a system-wide specialization portfolio in strengthening the robustness of a financial system.
Keywords :
banking; economic cycles; investment; risk analysis; ANWSER model; asset network systemic risk model; bank investment portfolio; bank-unique specialization portfolio; bankruptcy reproductive ratio; diversification portfolio; financial contagion risk quantification; financial crisis scenario; financial distress transmission; heterogeneous interbank credit network; numerical solution; optimal portfolio; risk exposure; robust financial system; system-wide specialization portfolio; Analytical models; Computational modeling; Economics; Electronic mail; Investment; Portfolios; Robustness;
Conference_Titel :
Computational Intelligence for Financial Engineering & Economics (CIFEr), 2013 IEEE Conference on
Conference_Location :
Singapore
DOI :
10.1109/CIFEr.2013.6611695