Need help? Click to chat with our experts ->
SOLUTION / 05 · Demand Control
Storage Peak Shaving

Demand Control
Solution

Half an hour of peak, a full month of bills.

Hero Image
01 / The Problem

Demand charges, the invisible profit drain

Demand charges are billed on the maximum power draw of the billing period. A peak that appears for half an hour decides the whole month's bill.

Pain Point 01

Half an hour of peak, a month of bills

In a 720-hour month, one half-hour spike sets the demand charge for the entire month. Most hours run far below the peak.

Half an hour of peak, a month of bills
Peak sets the month Profit drain
Pain Point 02

Production can't stop, peaks can't fall

Order pressure means lines cannot stop and equipment cannot be power-limited. Large equipment start-stop surges hit multiples of steady state.

Production can't stop, peaks can't fall
Process peaks Staggering is hard
Pain Point 03

Traditional fixes treat symptoms

Expansion costs more and raises the base; manual monitoring is slow and disrupts production; ignoring it lets profits erode.

Traditional fixes treat symptoms
Expansion costly Manual slow
02 / Traditional Approach

Accommodating peaks, not eliminating them

Expanding capacity or cutting load by hand never truly flattens the peak. The factory still pays for that half hour.

Option A Symptom fix

Expand / raise contract capacity

Large one-time investment, long approval cycles. And a higher contract capacity means a larger demand rate base.

Investment High
Rate base Larger
Approval cycle Long
Option B Symptom fix

Manual load shedding

Human response cannot keep up with power swings, and it disrupts production continuity. Not sustainable.

Response speed Slow
Production impact Yes
Sustainability Poor

The real answer: use storage to "flatten" the grid-side peak, while the factory's internal production rhythm stays completely untouched.

03 / Our Solution

Storage peak shaving, smart control

The EMS monitors gateway power every second, discharges precisely when a peak threatens the threshold, and recharges in safe windows. Zero production impact.

Step 1

Second-level monitoring

The EMS samples gateway power every second and continuously rolls up the current billing period's demand.

Step 2

Precise discharge

When the forecast demand would breach the threshold, the EMS orders storage to discharge just enough power. No more, no earlier.

Step 3

Smart recharging

Storage recharges at low power in safe windows, and charging is itself demand-constrained, so it never pushes demand higher.

System Architecture

System Architecture
04 / Key Equipment

Storage is the muscle, EMS is the brain

The storage cabinet buffers power and energy; the EMS decides when and how much to discharge; the cloud platform shows you the savings.

Equipment 01 · Physical

Storage Cabinet

Precise discharge at peak, controlled recharge otherwise. Air-cooled is mature and low-cost; liquid-cooled offers tighter temperature control.

Storage Cabinet
Air/Liquid Cooled 6,000+ Cycles Degradation Margin
Equipment 02 · Brain

Microgrid Controller EMS

Decides when, at what power, and how much to discharge. The precision of these three parameters decides results and revenue.

Microgrid Controller EMS
Real-time Calculation Trend Forecast Priority Arbitration
Equipment 03 · Operations

Cloud Platform

Demand control results are the KPI customers care about most. The platform calculates exactly how much was saved.

Cloud Platform
Daily Demand Savings Amount Revenue Trend
Closed Loop
05 / Project Process

Five stages, from inquiry to delivery

Modeling is based on real utility bills and load data, ensuring precise capacity sizing and quantifiable payback.

01

Project Inquiry

Project Inquiry
02

Site Measurement & Data Collection

Site Measurement & Data Collection
03

Technical Analysis & Capacity Sizing

Technical Analysis & Capacity Sizing
04

On-site Deployment

On-site Deployment
05

O&M Support

O&M Support
06 / Case Study

Malaysian cement plant, saving RM21.7k monthly

The benchmark case of industrial demand control. Four liquid-cooled cabinets cut demand from 974kW to 750kW, about 48-month payback.

Original Demand
974kW
Controlled to 750kW
Monthly Savings
21.7k RM
Zero production impact
Payback
48mo
4 liquid-cooled cabinets
Case Image
Case Image
Engineers online · Reply within 24h

Need a Custom Solution for Your Site?

Tell us about your grid capacity, charging goals, or scenario. We will recommend the optimal solar / storage / charging configuration — tailored, no obligation.