Aquaculture Intelligence
Built on years of operating farm data, UdangX uses our proprietary system, Panen.ai, to turn unpredictable pond cycles into reliable, high-yield harvests.
The same system engineers the facility, runs it day to day, and has proven itself across every environment we've deployed in — from a downtown high-rise to hostile, polluted source water.

Before stocking, the system evaluates site dynamics, water sources and biological capacity to engineer an optimised facility profile — tailored to each site's environmental and operational constraints.
How it works →
Feeding rates, dissolved-oxygen management and water interventions are never left to intuition — the system cross-examines sensor inputs and farm logs to protect biomass health and cut input waste.
What it runs →
Tested, stress-tested and validated across operational pond networks, harsh source water and high-density RAS — delivering predictable outcomes in variable, real-world environments.
See the proof →Successful aquaculture isn't about overpowering natural biology with software — it's about understanding it precisely. We developed Panen.ai through years of operating commercial ponds: diagnosing water crashes, tracking feed efficiency, and finding the early biological indicators that prevent crop loss.
The software is built on top of real mud, real ponds and actual commercial cycles — not theoretical lab simulations. The result is a tangible operating system that translates complex pond dynamics into repeatable, profitable harvest cycles.
Our approach in detail →
UdangX farm · Sumatra
Panen.ai models site conditions, calibrates protocols and evaluates multi-parameter signals across every pond — turning raw metrics into the daily calls that protect the crop and the margin.
Dynamically calibrates feeding schedules against biomass demand, water temperature and consumption velocity — driving down feed-conversion ratios while safeguarding water quality.
Correlates dissolved oxygen, salinity, pH, alkalinity and nitrogen spikes 24/7, flagging subtle imbalances early so the team can correct them before stock stress occurs.
Identifies anomalous environmental shifts days before clinical pathogen symptoms emerge, empowering technicians to quarantine and stabilise risks early.
Balances aerator load, remediation dosing and feeding volume directly against yield performance to maximise margin per kilogram produced.
Every call is logged and measured, so a protocol proven on one site becomes a repeatable standard across the network.
Closed-loop recirculation and disciplined inputs mean less water drawn, less discharge and a lighter footprint on the surrounding environment.
The system turns every farm into a live data model — reading water quality, shrimp health, growth, feed conversion and energy in real time. Those signals drive every plan and daily call: threats are flagged and corrected before they become losses, and opportunities to capture more value surface early. Refined across an 835-hectare network, every cycle makes it sharper.
panen.ai · live farm intelligence
Water, purified by Hycler™ AOP
Intelligence requires precise physical execution. Panen.ai interfaces directly with on-site hardware, including our Hycler™ Advanced Oxidation Process (AOP). By neutralising pathogens at the molecular level — without antibiotics or harsh chemicals — the system delivers continuous biosecurity against high-threat pathogens, including EHP (Enterocytozoon hepatopenaei) and WSSV (White Spot Syndrome Virus), even when operating with compromised or variable source waters.
The compound effect of combining rigorous farm husbandry with continuous protocol intelligence.
Molecular-level bio-treatment — without chemical or antibiotic reliance.
Greater carrying capacity, unlocked through continuous water balance and feed discipline.
Operating models honed across genuine production acreage — not synthetic simulations.
Continuous parameter tracking, translating raw pond metrics into actionable farm tasks.
The same intelligence, proven from a city-centre high-rise to hostile, polluted water — and from failing farms to brand-new builds.
Fatmawati · Central JakartaThe environment: a high-density farm in the middle of Jakarta. The system ran the daily protocol and Hycler™ held the water — and across multiple cycles it outperformed every conventional method. The proof point behind the platform.
West JavaA new build: the system designed and optimised the farm end to end — pond layout, closed-loop recirculation and the operating protocol — and Hycler™ enabled the water for high-density RAS at scale.
SumatraWhat we found: Contaminated intake water (Vibrio >1,000,000 CFU/mL), low water exchange and a 2.37 FCR had pushed survival down to 73.9%. The system's fix: Hycler™ advanced oxidation at the intake, RDF pre-filtration and continuous multi-parameter monitoring — deployed column by column to restore yield.
More across the network

Indoor RAS · hostile, polluted source water
Proved the system and Hycler™ against some of the toughest source water we've seen — indoor round-tank production, engineered for the environment.

Urban farming · city-fringe RAS
A new urban build in Bintaro, run by the system from day one — premium, clean-water shrimp at the edge of Jakarta.
From validated urban pilots to large-scale RAS and full farm turnarounds — all run by the same operating system and its Hycler™ hardware.
Talk to our team →Discover how UdangX and Panen.ai standardise water stability, reduce FCR and secure higher margins across every pond cycle.