European electricity markets are in the midst of unprecedented changes—caused by Russia’s invasion of Ukraine and the rise of renewable sources of energy. Using high-frequency data, this paper investigates volatility spillovers across 24 countries in the European Union (EU) during the period 2014–2024 to provide a better understanding of the transmission of risks in an international context. We develop both a static and a dynamic assessment of spillover effects and directional decomposition between individual countries. Our main findings show that about 73 percent of the forecast error variation is explained by cross-variance shares, which means only 27 percent can be attributed to shocks within each country. In other words, cross-border volatility spillovers dominate the behavior in national electricity markets in Europe—and this effect has grown over time. We also implement an augmented gravity model of bilateral volatility spillovers across power markets in the EU. Altogether, these results provide important insights to policymakers and regulators with regards to greater integration of electricity markets and infrastructure improvements that would also help with the transition to low-carbon sources of power generation and strengthen energy security in Europe.
This paper uses VAR models to examine the magnitude and sources of growth spillovers to the Baltics from key trading partners, as well asfrom the real effective exchange rate (REER). Our results show there are significant cross-country spillovers to the Baltics with those from the EU outweighing spillovers from Russia. Shocks to the REER generally depress growth in the Baltics, and this intensifies over time. We also find that financial and trade channels dominate the transmission of spillovers to the region which partly explains the realization of downside risks to the Baltics from the global slowdown.