Could more useful energy be extracted from the solar area already available?
SolaLinx combines modelling, physical photovoltaic augmentation, measurement and evidence to test whether constrained solar surfaces can deliver more useful energy — and whether that advantage is worth progressing.
What problem does this address?
How is the problem approached?
Solar generation can be constrained by available area, packaging, mass, structure, thermal conditions and the host system itself. The opportunity is enough additional useful energy to improve a meaningful system outcome.
Model → Augment → Measure → Decide. Model the architecture before larger commitments. Change the physical energy opportunity. Measure conditions, mechanism and response. Decide what the evidence supports.
LightEnhancer™
Can constrained PV area produce more useful generation?
LightEnhancer™ is SolaLinx’s optical-thermal photovoltaic augmentation technology. It is being developed where expanding the conventional array may be difficult, undesirable or disproportionately costly. LightEnhancer remains under development and validation.
YieldCore™
Is the evidence strong enough to progress?
YieldCore™ connects technical evidence to the question: What does the available evidence justify doing next? Outcomes include progress, redesign, further measurement, narrowing the claim, deferral or stopping. It is not an autonomous operating controller.
Test the architecture before committing to hardware
FluxForge™ is SolaLinx's multiphysics modelling and architecture-evaluation capability. It can test candidate designs, expose sensitivities and identify what is worth building or validating next.
FluxForge™ combines optical, photovoltaic, electrical, thermal, structural and operating-domain models to test candidate designs, expose sensitivities and identify what is worth building or validating next.
01
TopSense™
Measures incident and environmental state.
02
LightTrace™
Provides optical and local intervention evidence.
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PowerSense™
Measures electrical and thermal photovoltaic response.
What actually changed — and why? Together TopSense™, LightTrace™ and PowerSense™ help distinguish the conditions present, what changed around the intervention and how the PV system responded.
Why examine this now?
Distributed systems need more electrical energy while physical platforms remain constrained. Modelling and validation methods let candidate architectures be challenged before large hardware commitments.
Who might work with SolaLinx?
Potential collaborators include OEMs and integrators, Defence suppliers, research, engineering, manufacturing and validation organisations, and innovation programmes.