Connect the evidence.
Retrieve controlled documents and match operational observations to the right asset, timestamp and context.

Thank you for taking a look. This is TrueLens: an idea for connecting the knowledge inside an organisation with the signals that reveal what comes next. Prepared for you, through the lens of photovoltaic energy and VESS vanadium flow battery solutions.
Start with the dataWhat if you could ask your solar plant and energy storage a better question? Connect trusted documentation, operational data and predictive models in one conversation. Understand the past. Explore the next decision.
“With lower solar output tomorrow, how should we compare VESS discharge schedules against reserve needs, conversion and pump losses, and the evidence behind each forecast?”
A falling yield curve tells you something changed. A battery schedule adds another question: when should that energy be available? Solar forecasts, storage telemetry and technical documentation belong in the same view.
TrueLens is a vision for that connection. Ask naturally. Trace the evidence. Visualise the patterns. Compare future scenarios before choosing where to invest time, attention and resources.
Explore how solar performance and VESS storage could connect through evidence, reinforced learning and reviewed operational decisions.
Designed for evidence-led assistance. Important decisions remain with authorised people.
RAG retrieves the applicable source passages for the conversation. Analytical tools calculate trends and forecasts from connected data. The LLM brings both into an explanation, with sources, assumptions and uncertainty visible.
Retrieve controlled documents and match operational observations to the right asset, timestamp and context.
Use analytical models to compare performance and quantify scenarios. Ask the LLM to explain the results alongside the supporting sources.
Capture observations, reviewed root causes and corrective actions. Measure effectiveness and reinforce the lessons through targeted training.
The source material changes. The need for an answer you can act on doesn't.
VESS vanadium redox-flow batteries store energy in liquid electrolyte that circulates between tanks and electrochemical stacks. Stack configuration and electrolyte volume allow power and energy capacity to be sized separately.
TrueLens could connect that physical system to a shared view of documentation, telemetry and forecasts. Ask what changed, explore a schedule, and follow the evidence behind the answer.
Technology reference: VESSProposed TrueLens use case. Conceptual data connections; no live VESS integration.
Compare solar surplus, demand peaks and an end-of-day reserve target. Show net delivery after conversion and auxiliary consumption.
Compare two schedules ↗Track energy at consistent meter boundaries. Compare stack and PCS behaviour with pump load, flow and temperature to guide an investigation.
Explore drift in operating trends, forecast deviations and maintenance needs. Bring the relevant VESS documentation into each reviewed hypothesis.
Move between solar performance, loss breakdowns, forecast ranges and battery schedules. Compare energy delivered now with energy retained for later, and inspect the assumptions behind each decision.
Illustrative data throughout. A pilot would connect your sources and validate analytical models against observed outcomes. Forecast ranges express uncertainty; they are not promised results.
Overlay solar yield, demand and state of charge. Surface patterns a single metric hides.
Map deviations across inverters, stacks and auxiliary equipment. Connect each signal to the asset and its history.
Compare solar forecasts, storage schedules and reserve targets. Evaluate net energy, uncertainty and the next investigation.
Mr. Gradev, let’s choose a solar-plus-VESS question for a focused pilot: the data available, the decision to improve, and the outcomes we would measure together.