Static reference dashboard

PV Underperformance Root Causes

Scan generated field-diagnostic references by category, severity, impact, and taxonomy labels.

Category

23 matching causes
ModulesHigh

Bypass Diode Failure

Failed bypass diodes can create substring loss, overheating, reverse-bias stress, arcing risk, and module-level performance loss.

Bypass diodePV failurehotspotmodule mismatch
WiringHigh

Cable Defect

Damaged or undersized DC cables can cause overheating, insulation faults, ground faults, production loss, and fire risk.

CablePV failureInsulation faultDC wiring
ModulesHigh

Cell Cracks

Severe cracks can isolate active cell area, create mismatch, activate bypass diodes, and reduce module output.

Cell crackPV failurePV agingelectroluminescence
ModulesHigh

Cell Interconnection Failure

Broken or resistive cell interconnections can block current, activate bypass diodes, and cause severe power loss or thermal stress.

PV cellcell interconnectionPV failuresolder bond
WiringHigh

Connector Defect

Connector defects can create resistance heating, open circuits, ground faults, arcing, electrical risk, and fire hazards.

ConnectorPV failureInsulation faultarcing
ModulesMedium

Flawed PAN File Yield Losses

Incorrect or nonrepresentative PAN files can bias simulated module performance, creating yield expectations that differ from field behavior before any physical plant fault exists.

yield loss
SoilingMedium

Widespread Fungal Soiling Losses

Fungal bio-soiling can create persistent 5-11% production losses in humid subtropical regions and may not recover after rainfall.

yield losssoilingbio-soiling
ModulesHigh

Glass Breakage

Broken module glass can cause safety hazards, insulation faults, moisture ingress, and accelerated electrical degradation.

Glass breakagePV failureinsulation faultmodule safety
SoilingMedium

Granular Dust Soiling Losses

Dust deposited on the module glass reduces transmittance, depresses array current, and can accumulate into persistent energy loss between rain or cleaning events.

yield loss
GridHigh

Grid Curtailment Yield Losses

Curtailment limits export below available plant power, reducing realized energy and complicating performance metrics when availability and equipment health remain normal.

yield loss
InvertersMedium

Inverter Voltage Floor Losses

When array Vmp falls below the inverter minimum DC input voltage, the inverter cannot hold the array at its maximum power point and recoverable energy can be left on the DC side.

yield loss
ModulesHigh

Junction Box Failure

Junction-box failures can interrupt module connections, damage bypass diodes, create arcing, and produce severe safety and performance issues.

Junction Box diodeArcingFirePV failure
ModulesMedium

Light Induced Degradation (LID)

Initial light exposure can cause technology-dependent module power loss, with amorphous silicon and susceptible crystalline modules showing material stabilization effects.

Light Induced DegradationLIDmodule degradationphotovoltaic
ModulesHigh

Module Hotspot from Cell Damage

Localized heating can reduce string output and create escalating reliability risk when bypass diodes or cracked cells remain in service.

droneyield loss
ModulesHigh

Potential Induced Degradation (PID)

High module-to-ground voltage can drive leakage-current mechanisms that substantially reduce string and module power.

PIDPV failuremodule degradationleakage current
ModulesHigh

Severe Metallization Corrosion

Water ingress and metallization corrosion can increase series resistance, reduce current collection, and create severe module power degradation.

CorrosionPV degradationwater ingressmetallization
SoilingMedium

Snow Accumulation Yield Losses

Snow cover blocks irradiance at the module surface, creates partial-string mismatch during melt and slide-off, and can materially reduce winter energy yield in cold regions.

yield loss
SoilingMedium

Soiling Losses

Dust, snow, dirt, and other deposited particles reduce irradiance reaching the module surface and can create geographically variable production losses.

SoilingPV losscleaningenvironmental loss
ModulesMedium

Spectral Effect Yield Losses

Differences between the incident solar spectrum, the reference spectrum, and module spectral response can bias capacity tests and shift realized energy yield.

yield loss
ModulesMedium

System Degradation vs Module Degradation

System-level degradation can be higher than the nameplate module degradation rate when modules degrade at different rates and create additional electrical mismatch.

degradationyield loss
TrackersMedium

Terrain Undulation Yield Losses

Rolling terrain changes tracker row geometry, backtracking behavior, and inter-row shading, which can leave recoverable energy losses concentrated in specific motor blocks.

yield loss
TrackersHigh

Performance Loss from Tracker Twist

Row torsion creates uneven plane-of-array angle, cosine loss, row-to-row shading, and persistent mismatch that can depress production across an entire tracker block.

yield loss
TrackersMedium

Tracker Wind Stow Production Losses

Gust-triggered stow events move trackers away from the optimal tracking angle, creating modeled and actual production losses that can be materially higher than hourly weather data suggests.

yield loss