Namibia vs Peru: Getting electricity: Reliability of supply and transparency of tariff
Getting electricity: Reliability of supply and transparency of tariff over time
- Namibia
- Peru
How they compare
Namibia currently reports 6 DB16-20 methodology against 6 DB16-20 methodology in Peru, a difference of 0 DB16-20 methodology.
Across all 6 years both countries report, Peru has been ahead every year.
Namibia ranks 60th and Peru ranks 60th of 187 countries.
Peru has averaged higher in every one of the 1 decades both report.
Frequently asked questions
- Which has higher getting electricity: reliability of supply and transparency of tariff, Namibia or Peru?
- Namibia, at 6 DB16-20 methodology against 6 DB16-20 methodology in Peru as of 2019.
- What is the difference in getting electricity: reliability of supply and transparency of tariff between Namibia and Peru?
- 0 DB16-20 methodology, with Namibia ahead.
- How many years of comparable data are there for Namibia and Peru?
- 6 years are reported by both, from 2014 to 2019.
- How do Namibia and Peru rank globally for getting electricity: reliability of supply and transparency of tariff?
- Namibia ranks 60th and Peru ranks 60th of 187 countries.
- Where does this data come from?
- The World Bank, published as Getting electricity: Reliability of supply and transparency of tariff index (0-8) (DB16-20 methodology). Statizoid refreshes it automatically from the source and publishes the full history for both places.
Individual pages
About this data
The reliability of supply and transparency of tariff index is calculated on the basis of the following six components: (i) duration and frequency of power outages, (ii) tools to monitor power outages, (iii) tools to restore power supply, (iv) regulatory monitoring of utilities’ performance, (v) financial deterrents aimed at limiting outages, and (vi) transparency and accessibility of tariffs. An economy is eligible to obtain a score on the reliability of supply and transparency of tariffs index only if (i) the utility collects data on all types of outages (average total duration of outages per customer and the average number of outages per customer), including planned and unplanned outages, as well as load shedding, with the minimum outage time of not more than 5 minutes; and (ii) the SAIDI value is below a threshold of 100 hours and the SAIFI value is under 100 outages. The component indicator is computed based on the methodology in the DB16-20 studies.