A Second-order Bound with Excess Losses
About
We study online aggregation of the predictions of experts, and first show new second-order regret bounds in the standard setting, which are obtained via a version of the Prod algorithm (and also a version of the polynomially weighted average algorithm) with multiple learning rates. These bounds are in terms of excess losses, the differences between the instantaneous losses suffered by the algorithm and the ones of a given expert. We then demonstrate the interest of these bounds in the context of experts that report their confidences as a number in the interval [0,1] using a generic reduction to the standard setting. We conclude by two other applications in the standard setting, which improve the known bounds in case of small excess losses and show a bounded regret against i.i.d. sequences of losses.
Related benchmarks
| Task | Dataset | Result | Rank | |
|---|---|---|---|---|
| Load forecasting | RTE-FR Load (Lockdown) | RMSE (MW)1.07e+3 | 10 | |
| Load forecasting | RTE-FR Load (Pre-lockdown) | RMSE (MW)653.9 | 10 | |
| Load forecasting | RTE-FR Load (Post-lockdown) | RMSE (MW)584.1 | 10 | |
| Load forecasting | RTE-FR French electricity load (Overall) | RMSE (MW)673.2 | 10 | |
| Regression | TabRed delivery-eta | RMSE0.5447 | 10 | |
| Electricity load forecasting | French electricity-load Pre-lockdown 2019-2021 | RMSE653.9 | 8 | |
| Electricity load forecasting | French electricity-load 2019-2021 (Lockdown) | RMSE1.07e+3 | 8 | |
| Electricity load forecasting | French electricity-load 2019-2021 (Post-lockdown) | RMSE584.1 | 8 | |
| Electricity load forecasting | French electricity-load 2019-2021 (Overall) | RMSE673.2 | 8 | |
| Weather Prediction | TabReD Weather (test) | RMSE1.4577 | 4 |