This equation captures one of the core mathematical components of the system. cos(πππ΄) = sin(πΏ) β sin(πΏ) + cos(πΏ) β cos(πΏ) β cos(β)
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Physics-Informed State Space Models for Reliable Solar Irradiance Forecasting in Off-Grid Systems explores A thermodynamically consistent neural network for ultra-lightweight, zero-lag solar irradiance forecasting in off-grid systems.. Commercial viability score: 3/10 in Forecasting AI.
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This route is the stable paper-level surface for citations, viability, references, and downstream handoffs. Use it as the proof layer behind Signal Canvas, workspace creation, and launch-pack generation.
Page Freshness
Canonical route: /paper/physics-informed-state-space-models-for-reliable-solar-irradiance-forecasting-in-off-grid-systems
This page is showing the last landed evidence receipt and score bundle because the latest proof data is outside the freshness window.
Agent Handoff
Canonical ID physics-informed-state-space-models-for-reliable-solar-irradiance-forecasting-in-off-grid-systems | Route /paper/physics-informed-state-space-models-for-reliable-solar-irradiance-forecasting-in-off-grid-systems
REST example
curl https://sciencetostartup.com/api/v1/agent-handoff/paper/physics-informed-state-space-models-for-reliable-solar-irradiance-forecasting-in-off-grid-systemsMCP example
{
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"arguments": {
"arxiv_id": "2604.11807"
}
}source_context
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}Paper proof page receipt window
/buildability/physics-informed-state-space-models-for-reliable-solar-irradiance-forecasting-in-off-grid-systems
Subject: Physics-Informed State Space Models for Reliable Solar Irradiance Forecasting in Off-Grid Systems
Verdict
Ignore
Verdict is Ignore because current viability and proof state do not clear the buildability gate.
Time to first demo
Insufficient data
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Structured compute envelope
Insufficient data
No data, compute, hardware, memory, latency, dependency, or serving requirement receipt is attached.
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Dimensions overall score 3.0
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This equation captures one of the core mathematical components of the system. cos(πππ΄) = sin(πΏ) β sin(πΏ) + cos(πΏ) β cos(πΏ) β cos(β)
Page and bbox are available; crop image is pending.
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Receipt path
/buildability/physics-informed-state-space-models-for-reliable-solar-irradiance-forecasting-in-off-grid-systems
Paper ref
physics-informed-state-space-models-for-reliable-solar-irradiance-forecasting-in-off-grid-systems
arXiv id
2604.11807
Generated at
2026-04-14T16:51:57.649Z
Evidence freshness
stale
Last verification
2026-04-14T16:51:57.649Z
Sources
3
References
0
Coverage
50%
Lineage hash
07d993901dc4217d6f537711d8c6c0e187f5f4e8876e3ad496163f51dbb27970
Canonical opportunity-kernel lineage hash.
External signature
unsigned_external
No founder, registry, pilot, or production-adoption signature is attached to this receipt.
Verification
not_verified
Verification is blocked until an external signature is provided.
Pending verification refs / 3 sources / Verification pending
repo_url
references
This equation captures one of the core mathematical components of the system. π) πππππππ= sin(2 π β π) πΆππ ππππ= cos (2 π β
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This equation captures one of the core mathematical components of the system. Ξ΄ = 23.45 β sin β (284 + π))
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