What a battery does outside the balancing mechanism, derived from its meter
Until September 2026 this site said that what a battery does in the wholesale market is published nowhere and could only be modelled. That was wrong, and it was wrong for a reason worth stating: Elexon publishes the metered output of every balancing mechanism unit for every half hour, and we had not read it. This page is what reading it gives, and what it does not.
Three published numbers per half hour
| Number | Where from | Status |
|---|---|---|
| What the meter recorded, import or export | Elexon dataset B1610, per unit, per settlement period | measured |
| What NESO accepted in the balancing mechanism, offers and bids | Elexon settlement stack, the same file the balancing line on every page is built from | measured |
| The market index price | Elexon market index, APX, the volume weighted price of short term wholesale trading in that half hour | published benchmark |
Meter minus accepted volumes is what the unit did that NESO did not instruct. We call it the position outside the balancing mechanism. Multiplied by the index price, half hour by half hour, it becomes a value: what that position was worth at the benchmark.
What the pilot showed
Blackhillock unit 2, a year to 27 August 2026. Its meter took in 36,150 MWh and gave back 31,459 MWh, a round trip of 87 per cent. NESO accepted 67,546 MWh of bids from it. The bids exceed everything the battery ever took in. So most of them were not charging. They were NESO buying back a discharge the unit had already sold: on 10 March 2026 the unit notified a full discharge, NESO accepted a bid against most of it, and the meter read almost nothing. The energy stayed in the battery to be sold again. The site had described these units as absorbing trapped wind. The meter says they sell forward and are paid to stand down. That is a better story, and it is measured.
Reconciling against the unit's own notification
Every unit tells NESO, before each half hour, the level it intends to run at. For Blackhillock unit 2 across fourteen days in March the derived position matched that notification to a median of 0.05 MWh per half hour. For Thurrock and West Burton it matched as closely. For Dollymans, Lakeside and Ocker Hill it did not, on a third of half hours, by more than 2 MWh. The difference is frequency response and reserve delivery, which moves the meter without a balancing acceptance and without a change to the notified level. So the derived position is exactly what its name says, the position outside the balancing mechanism, and it is not always the wholesale contract alone. We publish it as the former.
Why the merchant leg on its own can be negative
An English battery that buys in the wholesale market and sells through balancing offers shows its purchases in the derived line and its sales in the measured balancing line. Read alone, the derived line is a cost. That is why every page also prints the two together, balancing and outside balancing, net. That combined figure is the one to compare between units. On the pilot fleet, 118 units, it came to about £93m for the year, against £59m for the outside balancing line alone.
Six things wrong with it
| Limit | What we do about it |
|---|---|
| The index is a benchmark. A good trader beats it, a poor one does not, and nobody trades at it exactly. | The figure says "valued at the market index" on the line itself. It is never called revenue. |
| The position contains response and reserve delivery, not only trading. | Stated on every page. Netting off the awarded response volumes is the next version. |
| The imbalance leg is invisible. A unit that delivered more or less than it contracted settles the gap at the imbalance price, and the contract is private. | The position is treated as the contract. The notification check above says how far that holds. |
| Elexon revises. Interim figures are replaced by final ones weeks later and reconciled for over a year. | The archive keeps the latest run per half hour, counts the provisional days, and the page prints the count. |
| Metered data lags about ten days behind the settlement stack. | The derived line ends earlier than the balancing line, and the page says which day. |
| Only units with a balancing mechanism identifier have a published meter. Auction only registrations, 99 of the 217, have none. | Their pages say so rather than showing a blank. |
One rule that makes the meter different from the balancing data
A balancing mechanism imbalance can be explained by trading in another market: Blackhillock's bids exceed its imports because it sold forward and was bought back. A metered imbalance cannot. Every physical megawatt hour crosses the settlement meter whatever market it was sold in, so the gap between what a unit takes in and what it gives back is losses, its own standing load, the change in what it holds, anything else behind the same settlement boundary, or a data fault. Nothing else. Across the 99 units with a full year the apparent meter to meter efficiency is 85 per cent at the median, 76 per cent at the tenth percentile and 88 at the ninetieth, and it falls with utilisation: units that ran fewer than 300 full power hours in the year sit at 78 per cent, units above 800 hours at 87. Each page prints the unit's own figure with a reading against these bands: above 91 per cent, exceptionally efficient or a short period; 83 to 91, an ordinary battery; 77 to 83, losses plus a standing load that is material against a modest throughput; 67 to 77, worth investigating; below 67, not ordinary battery losses alone.
The checks every unit is put through
Before a figure is published the unit is tested: the meter must never exceed the registered power by more than fifteen per cent; exports against imports must be what a battery does, between 60 and 102 per cent; at least 300 of the 364 days must be metered; and every half hour must carry a price. A unit that fails keeps its figures and carries the flag, printed beside them, because a flagged figure with its flag is more use than a blank. In the first run 28 of 118 units carried one. Several are real findings, and one of them was first read wrongly. West Burton B, Penycae and Neilston return barely half of what they take in; the first reading was that something behind each meter consumes the rest, and the meter does not support it. Neilston exported 784 MWh in the whole year on 50 MW, sixteen full power hours, and West Burton draws about 2.6 MWh a day on days it exports nothing. These are units run for frequency response rather than energy, and when throughput is that small a battery's own standing load and losses dominate it. The flag now says so. Tye Lane's meter peaked at 100 MW of import against a 59 MW registration, which is still unexplained.
The scripts are gb/refresh_meter.py, which keeps the archive current twice a week and refreshes the last ninety days in full each run for revisions, and gb/merchant.py, which derives the figures and runs the checks. The pilot is written up in the project notes for 7 September 2026.