Average illuminance lux
average_illuminance_lux
Average illuminance across the eight lighting grid rows
Scores if within ±0.5% of the reference value.
Calculates source-bound road visual operations metrics from a deterministic SSC-13 task-owned source pack. The template aggregates lighting grid illuminance, CCTV pixels-per-metre and retention storage, ITS network load, PoE headroom, fibre link margin, and UPS energy for a compact generated task instance.
with-tool: The model is given an executable Python calculator script.
Standards
One template produces many comparable benchmark tasks while keeping the scoring contract fixed.
01
The reusable contract shown on this page.
02
An archetype and site context are sampled.
03
Inputs may be hidden at harder tiers.
04
The model responds with the declared outputs.
Inputs the model receives, and the outputs it is scored on.
40 inputs
Included directly in every task prompt.
Lighting grid lg01
lighting_grid_lg01_lux
Lighting grid point LG-01 illuminance
Lighting grid lg02
lighting_grid_lg02_lux
Lighting grid point LG-02 illuminance
Lighting grid lg03
lighting_grid_lg03_lux
Lighting grid point LG-03 illuminance
Lighting grid lg04
lighting_grid_lg04_lux
Lighting grid point LG-04 illuminance
Lighting grid lg05
lighting_grid_lg05_lux
Lighting grid point LG-05 illuminance
Lighting grid lg06
lighting_grid_lg06_lux
Lighting grid point LG-06 illuminance
Lighting grid lg07
lighting_grid_lg07_lux
Lighting grid point LG-07 illuminance
Lighting grid lg08
lighting_grid_lg08_lux
Lighting grid point LG-08 illuminance
Cctv 01 target width
cctv_01_target_width_m
CCTV-01 target-zone width
Cctv 01 horizontal pixels
cctv_01_horizontal_pixels
CCTV-01 horizontal pixel count
Cctv 01 bitrate
cctv_01_bitrate_mbps
CCTV-01 recording bitrate
Cctv 02 target width
cctv_02_target_width_m
CCTV-02 target-zone width
Cctv 02 horizontal pixels
cctv_02_horizontal_pixels
CCTV-02 horizontal pixel count
Cctv 02 bitrate
cctv_02_bitrate_mbps
CCTV-02 recording bitrate
Retention
retention_days
Continuous recording retention period
Storage overhead factor
storage_overhead_factor
CCTV storage overhead multiplier
Cctv 01 network load
cctv_01_network_load_mbps
CCTV-01 network load
Cctv 02 network load
cctv_02_network_load_mbps
CCTV-02 network load
Vms network load
vms_network_load_mbps
VMS-01 network load
Environment sensor network load
environment_sensor_network_load_mbps
ENV-01 network load
Cabinet aux network load
cabinet_aux_network_load_mbps
CAB-01 auxiliary telemetry network load
Cctv 01 poe load
cctv_01_poe_load_w
CCTV-01 PoE load
Cctv 02 poe load
cctv_02_poe_load_w
CCTV-02 PoE load
Vms poe load
vms_poe_load_w
VMS-01 PoE communications load
Environment sensor poe load
environment_sensor_poe_load_w
ENV-01 PoE load
Poe budget
poe_budget_w
SW-01 PoE budget
Fibre length
fibre_length_km
FIB-01 fibre uplink length
Fibre loss db per km
fibre_loss_db_per_km
Single-mode fibre attenuation allowance
Connector loss
connector_loss_db
Connector loss allowance
Splice loss
splice_loss_db
Splice loss allowance
Fibre reserve loss
fibre_reserve_loss_db
Fibre design reserve loss allowance
Fibre budget
fibre_budget_db
FIB-01 optical loss budget
Luminaire 01 power
luminaire_01_power_w
L-01 normal lighting load
Luminaire 02 power
luminaire_02_power_w
L-02 normal lighting load
Luminaire 03 power
luminaire_03_power_w
L-03 normal lighting load
Luminaire 04 power
luminaire_04_power_w
L-04 normal lighting load
Vms power
vms_power_w
VMS-01 selected UPS case load
Cabinet aux power
cabinet_aux_power_w
CAB-01 selected UPS auxiliary load
Ups autonomy
ups_autonomy_h
Required UPS autonomy
Ups efficiency
ups_efficiency
UPS efficiency factor
14 outputs
average_illuminance_lux
Average illuminance across the eight lighting grid rows
Scores if within ±0.5% of the reference value.
minimum_illuminance_lux
Minimum illuminance across the lighting grid
Scores if within ±0.5% of the reference value.
uniformity_ratio
Minimum-to-average lighting uniformity ratio
Scores if within ±0.5% of the reference value.
cctv_01_pixels_per_meter
CCTV-01 target-zone pixel density
Scores if within ±0.5% of the reference value.
cctv_02_pixels_per_meter
CCTV-02 target-zone pixel density
Scores if within ±0.5% of the reference value.
cctv_01_storage_tb
CCTV-01 retained video storage
Scores if within ±0.5% of the reference value.
cctv_02_storage_tb
CCTV-02 retained video storage
Scores if within ±0.5% of the reference value.
total_cctv_storage_tb
Total retained CCTV storage
Scores if within ±0.5% of the reference value.
total_network_load_mbps
Total ITS network load
Scores if within ±0.5% of the reference value.
poe_load_w
Total PoE-powered device load
Scores if within ±0.5% of the reference value.
poe_headroom_w
Remaining PoE budget headroom
Scores if within ±0.5% of the reference value.
fibre_loss_db
Total FIB-01 optical link loss
Scores if within ±0.5% of the reference value.
fibre_margin_db
FIB-01 optical budget margin
Scores if within ±0.5% of the reference value.
ups_energy_kwh
UPS energy required for the selected operating case
Scores if within ±0.5% of the reference value.
Each template is sampled at three tiers. Harder tiers may hide inputs, forcing the model to infer them from the scenario description.
For this template, difficulty scales through parameter and scenario ranges rather than hidden information.
The exact instruction and parameter contract used to generate this task, pinned to the published library source.
/workspace
Teal lines show Jinja input conditions, not task visibility policy. A line renders only when that input or tool is visible.
1You are a road visual operations engineer checking a task-owned synthetic SSC-13 package for lighting, ITS, CCTV, communications, and field power handoffs.2 3Use only the task-owned synthetic source pack values shown below for numeric grading. External AGi32, DIALux, MUTCD, Axis/JVSG, ARC-IT, and NTCIP routes shape the workflow context only; they are not extra data sources for this instance.4 5## Scene6 7- Road segment: `RD-SSC13-001`8- Scenario: `NIGHT-INCIDENT-01`9- Cabinet: `CAB-01`10- Variable message sign: `VMS-01`11- PoE switch: `SW-01`12- Fibre uplink: `FIB-01`13- VMS policy: `MSG-POL-01`14- Allowed VMS messages: `INCIDENT AHEAD - MERGE RIGHT` and `REDUCE SPEED - QUEUE AHEAD`15 16## Lighting Grid17 18| Grid ID | Chainage | Lane | Illuminance |19|---------|----------|------|--------------|20| LG-01 | 15 m | near lane | {{ lighting_grid_lg01_lux }} lux |21| LG-02 | 15 m | far lane | {{ lighting_grid_lg02_lux }} lux |22| LG-03 | 45 m | near lane | {{ lighting_grid_lg03_lux }} lux |23| LG-04 | 45 m | far lane | {{ lighting_grid_lg04_lux }} lux |24| LG-05 | 75 m | near lane | {{ lighting_grid_lg05_lux }} lux |25| LG-06 | 75 m | far lane | {{ lighting_grid_lg06_lux }} lux |26| LG-07 | 105 m | near lane | {{ lighting_grid_lg07_lux }} lux |27| LG-08 | 105 m | far lane | {{ lighting_grid_lg08_lux }} lux |28 29Lighting checks:30 31- Average illuminance is the average of the eight grid rows.32- Minimum illuminance is the smallest grid-row value.33- Uniformity is minimum illuminance divided by average illuminance.34 35## CCTV36 37| Camera | Target zone | Target width | Horizontal pixels | Bitrate | Retention | Storage overhead |38|--------|-------------|--------------|-------------------|---------|-----------|------------------|39| CCTV-01 | west approach | {{ cctv_01_target_width_m }} m | {{ cctv_01_horizontal_pixels }} px | {{ cctv_01_bitrate_mbps }} Mbps | {{ retention_days }} days | {{ storage_overhead_factor }} |40| CCTV-02 | VMS zone | {{ cctv_02_target_width_m }} m | {{ cctv_02_horizontal_pixels }} px | {{ cctv_02_bitrate_mbps }} Mbps | {{ retention_days }} days | {{ storage_overhead_factor }} |41 42CCTV checks:43 44- Pixels per metre equals horizontal pixels divided by target width.45- Storage uses `bitrate_mbps x 24 x 3600 / 8 / 1000` GB per day, multiplied by retention days and storage overhead, then divided by 1000 for TB.46 47## Network, PoE, Fibre, And UPS48 49| Item | Network load | PoE load |50|------|--------------|----------|51| CCTV-01 | {{ cctv_01_network_load_mbps }} Mbps | {{ cctv_01_poe_load_w }} W |52| CCTV-02 | {{ cctv_02_network_load_mbps }} Mbps | {{ cctv_02_poe_load_w }} W |53| VMS-01 | {{ vms_network_load_mbps }} Mbps | {{ vms_poe_load_w }} W |54| ENV-01 | {{ environment_sensor_network_load_mbps }} Mbps | {{ environment_sensor_poe_load_w }} W |55| CAB-01 aux telemetry | {{ cabinet_aux_network_load_mbps }} Mbps | 0 W |56| SW-01 PoE budget | - | {{ poe_budget_w }} W |57 58Fibre check:59 60- FIB-01 length is {{ fibre_length_km }} km.61- Fibre attenuation is {{ fibre_loss_db_per_km }} dB/km.62- Connector, splice, and reserve losses are {{ connector_loss_db }} dB, {{ splice_loss_db }} dB, and {{ fibre_reserve_loss_db }} dB.63- Optical loss budget is {{ fibre_budget_db }} dB.64 65UPS selected operating case:66 67- Lighting load is four luminaires at {{ luminaire_01_power_w }} W, {{ luminaire_02_power_w }} W, {{ luminaire_03_power_w }} W, and {{ luminaire_04_power_w }} W.68- VMS selected load is {{ vms_power_w }} W.69- Cabinet auxiliary load is {{ cabinet_aux_power_w }} W.70- Autonomy is {{ ups_autonomy_h }} h.71- Efficiency is {{ ups_efficiency }}.72 73## Output Format74 75Write a compact memo to `/workspace/output.md`. Include a source-boundary statement that this is a task-owned synthetic source pack. Explain the calculations briefly, preserve the object IDs above, and state that the baseline source pack passes the current docs-only checks.76 77Do not claim authority approval, accepted project evidence, software export validity, full standards compliance, executable source-pack hardening, generated benchmark readiness, or benchmark readiness.78 79Include a fenced JSON block with exactly these numeric keys:80 81```json82{83 "average_illuminance_lux": <numeric_value>,84 "minimum_illuminance_lux": <numeric_value>,85 "uniformity_ratio": <numeric_value>,86 "cctv_01_pixels_per_meter": <numeric_value>,87 "cctv_02_pixels_per_meter": <numeric_value>,88 "cctv_01_storage_tb": <numeric_value>,89 "cctv_02_storage_tb": <numeric_value>,90 "total_cctv_storage_tb": <numeric_value>,91 "total_network_load_mbps": <numeric_value>,92 "poe_load_w": <numeric_value>,93 "poe_headroom_w": <numeric_value>,94 "fibre_loss_db": <numeric_value>,95 "fibre_margin_db": <numeric_value>,96 "ups_energy_kwh": <numeric_value>97}98```99 Each generated task is drawn from one of these realistic scenario bands.
Site contexts ground each scenario in a real locale the model can use to infer hidden values.
ssc13_seed
SSC-13 task-owned synthetic road lighting, visual, ITS, CCTV, and communications package
night-incident-road-visual-operations-ssc13-seed-preview — hard difficulty, all inputs given.
SSC-13 task-owned synthetic road lighting, visual, ITS, CCTV, and communications package. night-incident-road-visual-operations. Required outputs: average_illuminance_lux, minimum_illuminance_lux, uniformity_ratio, cctv_01_pixels_per_meter, cctv_02_pixels_per_meter, cctv_01_storage_tb
Scenario context and visible inputs.
Executable tool: road-visual-operations-package_calc.py
Inputs withheld at this difficulty.
Nothing. All inputs are supplied.
The scored JSON answer schema.
{
"average_illuminance_lux": <number>,
"minimum_illuminance_lux": <number>,
"uniformity_ratio": <number>,
"cctv_01_pixels_per_meter": <number>,
"cctv_02_pixels_per_meter": <number>,
"cctv_01_storage_tb": <number>,
"cctv_02_storage_tb": <number>,
"total_cctv_storage_tb": <number>,
"total_network_load_mbps": <number>,
"poe_load_w": <number>,
"poe_headroom_w": <number>,
"fibre_loss_db": <number>,
"fibre_margin_db": <number>,
"ups_energy_kwh": <number>
}