Commercial and Industrial Peak Shaving Solution
Commercial and industrial electricity users face two separate cost problems: the energy tariff, which rewards shifting consumption to off-peak hours, and the demand charge, which penalises the highest fifteen- or thirty-minute int...

Commercial and Industrial Peak Shaving Solution

Tariff Arbitrage and Demand Charge Reduction
Two value streams usually justify a C and I battery: the spread between peak and off-peak energy prices, and the reduction of monthly maximum demand.
- Charge during off-peak or valley tariff windows, discharge during peak windows, once or twice per day
- Peak-shaving logic that trims site load above a configurable threshold rather than following a fixed schedule
- Typical daily cycling of one to two cycles, aligned with the site's operating hours
- Demand-limiting setpoint configured per month and adjusted seasonally
- Energy management controller that can run arbitrage, peak shaving or a blended strategy
We provide the load-data template we use for sizing, so the business case is built on the site's own interval meter data rather than generic assumptions. Battery power rating is sized on the site's load peaks rather than on average consumption, because the value of the system is concentrated in a small number of high-demand intervals each month.
Load-Shedding Resilience and Backup Function
In parts of Africa, South Asia and the Middle East, grid instability is a first-order concern rather than a secondary benefit. A storage system designed only for arbitrage is often unsuited to backup duty, so the two functions must be reconciled at design stage.
- Automatic transfer to backup mode on grid loss, with defined transition time and protected load circuits
- Reserve state-of-charge floor held back for outage coverage instead of being sold into the peak window
- Protected-load design so refrigeration, servers or critical process equipment stay energised while non-essential loads drop
- Sizing based on the longest expected outage and the critical load, not the whole site load
- Optional diesel or solar integration as a second layer where outages are long and frequent
Where backup and arbitrage share the same battery, we document the reserve policy explicitly so daily dispatch does not erode outage autonomy.
System Integration and Safety
C and I installations sit inside working facilities, so safety engineering and physical integration matter as much as energy capacity.
- All-in-one cabinet or containerised designs with integrated PCS, BMS, HVAC and fire suppression provisions
- Multi-level protection: cell monitoring, pack fuses, contactor control, insulation monitoring and arc detection options
- Thermal management by forced-air or liquid cooling depending on climate and duty cycle
- Grid-code and anti-islanding functions configured per destination market
- Parallel expansion of multiple units to reach larger capacities without replacing installed equipment
We supply layout drawings, cable schedules, earthing recommendations and commissioning procedures, and we can review your site's single-line diagram before finalising the configuration. Where site space is limited, cabinet units can be installed indoors against a wall with defined clearance, while containerised units suit yards and loading areas with road access for delivery and servicing.
What this design gives you
Two Revenue Streams
Energy arbitrage and demand charge reduction can be captured from the same asset, improving payback relative to a single-purpose installation and diversifying the project's revenue base.
Production Continuity
Backup-capable configurations keep critical loads energised through grid disturbances, protecting work in progress, refrigeration and temperature-sensitive stock from spoilage, rework and unplanned restart costs that would otherwise be absorbed by the operator.
Documented Reserve Policy
Where one battery serves both arbitrage and backup, the reserve state of charge is defined in writing so outage autonomy is not quietly traded away during daily dispatch optimisation.
Sized on Real Meter Data
Sizing uses the site's own interval load data and tariff schedule, so capacity, power rating and payback estimates reflect actual consumption patterns rather than generic industry assumptions or vendor averages.
Modular Expansion
Additional cabinets or containers can be paralleled as load grows, allowing phased investment instead of committing the full project capacity at the outset and spreading capital expenditure across budget cycles.
Project-Level Engineering Support
Single-line diagram review, layout drawings and commissioning procedures are provided so local contractors can install and test to a defined standard without factory supervision on site.
Reference specification
| Rated energy capacity | 100 kWh / 215 kWh / 500 kWh |
|---|---|
| Chemistry | LiFePO4 |
| AC output | 50-250 kW, 380/400V three phase |
| Daily cycling | 1-2 cycles per day |
| Round-trip efficiency | Approximately 85-90% at system level |
| Depth of discharge | Up to 90% with reserve policy applied |
| Cycle life at 80% DoD | 4,000-6,000 cycles |
| Thermal management | Forced air or liquid cooling |
| Grid interface | Grid-tied, with backup mode and anti-islanding |
Recommended products
Configuration is confirmed against your duty cycle before quotation.
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View productSend twelve months of interval meter data and your tariff schedule, and we will prepare a sizing and dispatch proposal.
