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Parameter Interactions

How REVA Parameters Influence One Another


Overview

Each parameter within REVA affects a specific aspect of waveform generation.

Understanding these relationships helps predict how waveform geometry changes when adjustments are made.


Parameter Hierarchy

Carrier Frequency
        ↓
Pulse Duration

Packet Category
        ↓
Available Families

Packet Family
        ↓
Packet Geometry

Pulse Scale
        ↓
Segment Length

Gap Scale
        ↓
Packet Duration

Each parameter influences a different layer of the waveform.


Carrier Frequency

Carrier frequency determines:

  • pulse repetition rate,
  • carrier period,
  • pulse density.

Carrier frequency does not determine:

  • packet geometry,
  • family structure,
  • category selection.

Carrier Frequency Effect

Increasing carrier frequency:

Higher Frequency
        ↓
Shorter Carrier Period
        ↓
More Pulses Per Unit Time

Decreasing carrier frequency:

Lower Frequency
        ↓
Longer Carrier Period
        ↓
Fewer Pulses Per Unit Time

Packet Category

The packet category determines which families are available.

Example:

Golden Ratio Category
        ↓
Family 1
Family 2
Family 3

Changing category changes the mathematical framework used by the packet engine.


Packet Family

The family defines waveform geometry.

Example:

12
24
48
24
12

or

5
8
13
21
34

Changing family changes the overall packet shape.


Pulse Scale

Pulse Scale modifies pulse counts within every segment.

Example:

Original:

10
20
40

Scale ×2:

20
40
80

The geometry remains unchanged.

Only the size increases.


Gap Scale

Gap Scale modifies spacing between segments.

Example:

Original:

100
200
300

Scale ×2:

200
400
600

The packet becomes longer while preserving structure.


Pulse Scale vs Gap Scale

Pulse Scale affects:

Active Time

Gap Scale affects:

Inactive Time

Together they determine packet density.


Packet Density

Packet density describes how much of the packet contains active carrier.

More Pulse Scale
        ↓
Higher Density
More Gap Scale
        ↓
Lower Density

Interaction Example

Initial configuration:

Carrier = 90 kHz
Family = Fibonacci
Pulse Scale = 1
Gap Scale = 1

Result:

Base Geometry

Increase Pulse Scale:

Pulse Scale = 2

Result:

Longer Active Segments
Higher Density

Increase Gap Scale:

Gap Scale = 2

Result:

Longer Packet
Lower Density

Geometry Preservation

One of the core principles of REVA is geometry preservation.

Scaling operations modify size while preserving mathematical relationships.

Original Family
        ↓
Scaling
        ↓
Larger Family

The underlying structure remains unchanged.


Practical Workflow

A typical workflow is:

Select Carrier Frequency
        ↓
Select Category
        ↓
Select Family
        ↓
Adjust Pulse Scale
        ↓
Adjust Gap Scale

This allows waveform geometry to be explored without changing the underlying mathematical relationship.


Engineering Perspective

REVA parameters operate at different architectural layers.

Carrier Frequency
        ↓
Carrier Engine

Packet Family
        ↓
Packet Executor

Pulse Scale
Gap Scale
        ↓
Geometry Modification

Understanding this separation makes waveform behavior easier to predict.


See Also