Operating Experiments
Inspired by 52 weeks and 30 days of Ham Radio, here is a long list of experiments and challenges.
Completed Experiments
Document finished experiments with notes and results.
Example:
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Minimal Power Contact
Goal: Contact using <1 watt
Band: 2m
Result: Successful 14-mile contact
Notes: Terrain significantly influenced signal reach
Experiment: Two Transistor LED Flasher
Goal: Understand transistor switching
Key Concept: RC timing
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In Progress
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APRS Propagation Study
Logging reception quality at varying power levels and path configurations. -
Home RF Noise Survey
Identify and map sources of interference within the immediate area.
VHF Range & Propagation
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Maximum VHF Reach
Map VHF transmit/receive limits in multiple directions and document terrain effects. -
Tropospheric Ducting Hunts
Log distant signals during favorable atmospheric conditions. -
Line-of-Sight Mapping
Compare predicted vs observed reception ranges based on terrain.
Satellite & Space Operations
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ISS Contact / Packet Reception
Attempt two-way contacts or receive telemetry from the International Space Station. -
Satellite Pass Tracking
Receive signals from amateur satellites and measure Doppler shift.
Data & Digital Modes
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APRS Packet Analysis
Collect, decode, and analyze APRS traffic over time. Study digipeater paths and station density. -
Path Optimization Studies
Test different APRS path configurations and document reception differences.
Antenna & Feedline Experiments
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Antenna Comparison
Evaluate two antennas under similar conditions to quantify performance differences. -
Polarization Effects
Compare vertical vs horizontal signal reception. -
Feedline Loss Measurement
Measure the impact of coaxial cable length and type on signal strength.
Strange Signals Log
A running record of unusual or unidentified signals encountered during monitoring.
Example Entry:
- Frequency: 145.825 MHz
- Date: YYYY-MM-DD
- Description: Short digital bursts at regular intervals
- Hypothesis: Possible ISS APRS packets
- Next Step: Attempt decoding and compare with expected satellite passes
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Long-Distance VHF Challenge
Maximize VHF range using minimal power and optimized antennas. -
Full Satellite Telemetry Analysis
Track multiple satellites, decode telemetry, and analyze orbital behavior. -
RF Noise Mapping
Conduct a large-scale survey of RF noise sources and classify them. -
Custom Digital Mode Development
Implement a microcontroller-based digital transmission system, measure reliability and reach. -
Oscillator Lab (Applied)
Compare multiple oscillators for stability, frequency drift, and phase characteristics in RF context.