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Commercial BESS in Mexico: Interconnection and Procurement for Industrial Sites

Installing battery storage at a Mexican factory is not only a peak-shaving or backup-power decision. The project must first define its regulatory classification, permissible charging power, export restrictions and connection-study path.

For a typical commercial BESS project in Mexico associated with an industrial load center, the direct procurement rule is:

Do not release the BESS purchase order until the EPC has confirmed the SAEE participation mode, contracted or maximum demand, grid-charging limit, zero-export requirement, applicable CENACE studies and responsibility for protection, FAT and site acceptance.

Mexico published its current General Administrative Provisions for integrating Electrical Energy Storage Systems—Sistemas de Almacenamiento de Energía Eléctrica, or SAEE—on April 16, 2026. The rules entered into force on the following business day and repealed Agreement A/113/2024, published on March 7, 2025.

The complete regulation is available through the official SIDOF publication of Mexico’s 2026 SAEE provisions.

How the 2026 SAEE Rules Classify Industrial Storage

The rules recognise several participation modes, including SAEE associated with generating plants, load centers, self-consumption facilities, transmission or distribution infrastructure, and standalone storage.

A factory system will commonly be evaluated as an SAEE associated with a load center (Centro de Carga), or SAEE-CC. Under Section 4.1, the storage system forms part of the associated load center’s installations and does not require a separate storage permit under this specific configuration.

This does not eliminate the need for connection studies, technical-modification procedures or electrical approval. A standalone storage plant or a system intended to sell stored electricity requires a different regulatory assessment.

Charging Power Counts Toward Facility Demand

Section 4.2 requires SAEE charging power drawn from the RNT or RGD to be included in the contracted demand of a basic-supply user or the maximum demand of a qualified user. The combined facility load and battery charging power must not exceed the applicable demand limit.

This means that a 100kW BESS does not automatically have permission to charge from the grid at 100kW.

The RFQ should define:

A dynamic EMS limit should use:

Available BESS charging power = Site demand limit − Current facility demand − Control margin

Illustrative Demand-Margin Calculation

Illustrative Engineering Calculation — Not a Connection-Study Result

Engineering inputIllustrative value
Contracted demand1,000kW
Factory load during charging920kW
Proposed BESS charging power125kW
Combined site demand1,045kW
Demand exceedance45kW

In this example, the EPC would need to reduce the charging setpoint, move charging to a lower-load period, use verified PV surplus or complete an approved demand modification.

Stored Energy Must Remain Onsite

Section 4.3 requires energy stored by an SAEE-CC to serve the onsite requirements of the associated load center. It must not be injected into the National Transmission Network—RNT—or the General Distribution Networks—RGD—and must not be sold under this configuration.

The EMS must therefore include tested zero-export control, not merely a software option described in a brochure.

The design should define:

The EPC can review the MegSolid BMS and EMS communication architecture, but each project still requires its own signal matrix and operating-state description.

Existing and New Load Centers Follow Different Study Paths

For an existing load center, integrating an SAEE is treated as a Modificación Técnica. Under Sections 2.4 and 4.6.5, the load-center representative must submit a study request to CENACE.

CENACE then performs a Quick Study under Section 2.11.2 to determine whether the project requires an Indicative Study, Impact Study, Installations Study, only part of that sequence, or no additional study beyond an updated connection contract.

For a new load center, Section 4.4 provides that the Connection Application is submitted to CENACE or the relevant Distributor, as applicable. New load centers integrating SAEE require an Impact Study and an Installations Study.

The EPC should separately coordinate project-specific protection, metering, connection works and acceptance responsibilities with the Transportista or Distribuidora. This coordination does not replace the CENACE study-request path for an existing load center.

During the current transitional framework, adding SAEE to an operating installation must not increase capacity or demand at the applicable point of interconnection or connection.

Existing and New Load Centers Follow Different Study Paths

The 2026 rules require applicants to identify storage technology, storage capacity, SAEE power, response time, charging and discharging capability, and DOD.

The supplier quotation should distinguish:

ParameterProcurement definition
Rated powerContinuous AC output at the agreed voltage and temperature
Rated energyNominal battery or system energy
Usable energyDeliverable energy within the approved SOC range
Grid-charging powerMaximum draw permitted at the connection point
Discharge powerContinuous and temporary output capability
DurationOperating time at a stated AC power
DODDepth used for warranty and duty-cycle calculations
Ramp rateRequired rate of active-power change
Response timeDefined measurement point and test method
DegradationCapacity or energy commitment at a specified date

Nominal DC battery energy should not be presented as guaranteed usable AC energy.

Standards Listed in the 2026 Rules

The official provisions identify the following versions:

The international and foreign standards apply while a dedicated Mexican Official Standard for the subject is not in place. Compliance must be demonstrated under Mexico’s Quality Infrastructure Law.

A logo or standards list on a supplier webpage is not sufficient evidence. The EPC should request the exact certificate, covered model, configuration, standard edition, certificate holder and validity.

Commercial and Industrial BESS Evidence in Mexico

The FRV Frigarsa Energy Storage-as-a-Service project demonstrates that battery storage has been deployed for a Mexican industrial consumer.

FRV identifies the Mexico City installation as a 480kW/0.96MWh C&I energy-storage project under a service-based model. It provides up to two hours of stored energy and is designed to optimise energy consumption for an industrial customer.

This is a third-party FRV project, not a MegSolid installation. Its regulatory classification, design and commercial results must not be transferred directly to another factory.

MegSolid Options for Mexican Industrial Sites

MegSolid product selection must follow exact model-level data. Chemistry, cooling and efficiency claims cannot be transferred between product families.

100kW 215kWh Air-Cooled C&I Energy Storage System

The 100kW 215kWh air-cooled C&I energy storage system, model ESSA0100B-0215, can be evaluated for factory peak shaving, solar self-consumption and defined backup loads.

ParameterVerified value
Rated AC power100kW
Rated energy215.04kWh
Battery280Ah LFP
Nominal voltage768V
Voltage range672–850V
Charge/discharge rate0.5C at 25°C
Listed cycle life≥5,000 cycles
CoolingIntelligent air cooling
Operating temperature0–45°C
EnclosureIP54
Net weight3,900kg

The product must not be described as liquid-cooled or hybrid solid-state. Its 100kW rating also does not mean that the factory may charge it from the grid at 100kW; the EMS limit must follow the approved demand margin.

261.24kWh Liquid-Cooled C&I Energy Storage System

The 261.24kWh liquid-cooled C&I energy storage system uses 314Ah LFP cells and provides 125kVA rated AC capacity.

Its listed operating range is -20°C to 55°C, with derating above 45°C. It has an IP54 enclosure and supports up to ten units in parallel.

The published 90% figure is maximum system efficiency. It must not be renamed round-trip efficiency without a defined test boundary, SOC range, power, temperature and treatment of auxiliary loads.

For customised architectures, the MEGA 30–500kW energy storage PCS can be integrated with project-specific batteries, transformers, switchgear and EMS controls.

Mexico-Specific Zero-Export FAT

A standard charge-discharge test is insufficient for an SAEE-CC project.

The FAT control sequence should reproduce:

Point-of-Connection Meter → EMS Import/Export Calculation → Zero-Export Margin → PCS Power Command → Communication-Loss Fallback

The FAT should verify:

The BESS Factory Acceptance Testing guide should be adapted to the approved Mexican connection design.

Final Procurement Recommendation

A factory BESS in Mexico cannot be selected independently from its load center and point of connection.

Before releasing the purchase order, confirm that:

FAQ

No. Under Section 4.1, it is treated as part of the associated load center. Other storage configurations may have different permit requirements.

No. Section 4.3 requires the stored energy to serve onsite needs and prohibits its injection into the RNT or RGD under this configuration.

Only when the facility load plus battery charging remain within the applicable contracted or maximum demand.

The load-center representative submits the technical-modification study request to CENACE, which performs the Quick Study.

A new load center integrating SAEE requires an Impact Study and an Installations Study.

It should verify charging limits, zero export, meter communications, PCS commands, SOC limits, ramp response, fallback modes and emergency shutdown.

MegSolid supplies air-cooled C&I systems, liquid-cooled LFP systems, PCS and containerised BESS for international industrial projects.

A 100kW/215.04kWh system may support defined peak shaving or short-duration backup. Final sizing requires facility load, demand and connection data.

Provide interval load data, contracted demand, transformer details, connection voltage, PV information, export requirements and the factory single-line diagram.

MegSolid (Hong Kong) Limited focuses on the R&D, design and supply of high-performance energy storage systems. With ten years of technical accumulation, we offer customized outdoor cabinet ESS, residential inverters and portable power solutions for global clients.
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