Metrics for the digital financial system
1 - Enter three basic indices
(A) EBI — Energy Balance Index
Energy balance of the project: EBI = ΔE/E_in, Where:
ΔE = net increase in organized energy.
If EBI < 0 → project is automatically lost in the system.
If EBI ≥ 1 → sustainable. If EBI > 1 → Regenerative.
(B) SVI — Social Value Index
Social Surplus Value:SVI = (S/V) × Q, Where:
S - Surplus value
V. Reproduction of labour
Q - coefficient of social distribution (0–1)
If wealth concentrates → Q falls.
If the distribution stabilizes the system → Q grows.
(C) CSI — Complexity Stability Index
CSI = η × R / σ, Where:
η - energy efficiency
R is the rate of regeneration
σ - Entropy losses
This is a measure of systemic sustainability.
2 - Digital Economy Integral Index
DVI (Digital Value Index): DVI = EBI × SVI × CSI
If any of the three factors → 0 → system blocks emission.
This is the “money that thinks”.
3 - The principle of emission
A digital currency is created only if:
EBI ≥ 1
SVI ≥ 1
CSI ≥ 1
Otherwise emission is not possible.
PART III. Agent Model
Now for the simulation.
1 - Types of agents
Agent A - Manufacturer
Maximizes S
Minimizes costs
Agent B - Ecosystem
Responsible for R and σ
Agent C - Social Regulator
Controls Q
Agent D - Financial module
Allows or prohibits emission through DVI
2 - Cycle dynamics
Each period:
- The manufacturer creates the product
- Considered ΔE
- Updated R and σ
- Calculated SVI
- Financial agent calculates DVI
- If DVI < 1 → Capital is depreciated
3 - The Equation of Capital Evolution
K(t+1) = K(t) + α·DVI − β·σ, Where:
α — gain
β — degradation factor
If DVI sustainable >1 → The system is growing.
If <1 → Compression.
The main thing. We have made:
- Economics limited by physics
- Finances limited by regeneration
- Growth limited by sustainability
It is no longer an ideology.
This is the cybernetics of economics.
Then we build a full stack:
(1) Protocol → (2) Simulation → (3) State issue.
We work as systems engineers, not as theorists.
I. PROTOCOL OF ENERGY-SOCIAL CURRENCY
1 - Architecture in layers
Layer 1 - The Real World
Sensors of energy, resources, production
Environmental Metrics
Social statistics
Layer 2 — Verification. The Oracles check:
- ΔE
- R
- σ
- S
- Q
Layer 3 — Calculation DVI
DVI = EBI × SVI × CSI
If DVI ≥ 1 → smart contract allows release.
If DVI < 1 → release is blocked or the asset is burned.
2 - Token logic
Token = is not a right to speculate, but a right to share in a regenerative system. Your wallet balance is dynamic.
If a project begins to destroy the environment → its tokens lose weight.
It is a self-regulated currency.
II. SIMULATION MODEL
Now we build behavioral dynamics.
1 - Basic parameters
- N - number of producers
- E_base - natural energy
- K - Accumulated capital
- R - Regeneration
- σ - entropy
2 - Iteration cycle
For each step t: E_base(t+1) = E_base(t) + R − σ
S(t) depends on performance
ΔE(t) = f(Technology, Resources, Labor)
DVI(t) = EBI × SVI × CSI
K(t+1) = K(t) + α·DVI − β·σ
3 - Key effect
In a normal economy, you can grow by destroying the base. In this model: if E_base falls →EBI Falling →DVI Falling → The capital is automatically reduced.
The crisis is built in as a defense mechanism.
III. THE STATE MODEL OF EMISSION
1 - Two contours of money
Contour A - Secured Currency
It is bound to ΔE of the national territory.
Outline B - Social Dividend
Emission through SVI.
2 - Formula of annual emission
M_new = γ × ∑ΔE_on_territory × Q. Where:
γ — monetization factor
Q - social equity ratio
If a country destroys natural capital →
Emissions are automatically reduced.
3 - Sovereignty
Sovereignty = Ability to maintain: ∑ΔE ≥ 0
R ≥ σ. S is distributed stably
IV. Critical moment
Such a system:
- It kills speculative growth.
- Makes environmental destruction financially impossible
- Shifting the economy from consumption to strengthening
But. It requires:
- Transparent digital infrastructure
- the Independent Settlement Center
- Political Will
A. Municipal Pilot - "Living Territory"
Purpose: To prove that the model works in a real environment.
Where better to launch
- region with agriculture
- a city with a sustainable development program
- area with measured energy (solar/wind)
The Pilot Architecture
1 - We consider:
- energy balance of the territory (ΔE)
- Soil/forest regeneration (R)
- Social distribution (Q)
2 - Enter local index
DVI_region = EBI × SVI × CSI
3 - We issue a municipal token
Usage:
- taxes
- Utilities
- Local services
What it will give
- Linking economics to real biophysics
- Reducing capital outflows
- Increased Local Sustainability
B. Corporate Regenerative Currency
The municipal level is a laboratory. Business is an accelerator.
Logic
The company gets the right to issue the token only if: ΔE_company ≥ 0
ESG is not declarative, but measurable
Corporate formula Token_weight = DVI_company
If a company begins to destroy the environment, its tokens automatically depreciate.
Effect
- Investors are choosing sustainable companies
- Funding is moving away from parasitic models
- ESG becomes not a report, but a mathematics
C) supranational level
The most difficult level. Here you need to create:
International Settlement Center with index: G-DVI = ∑ DVI_country / N
The country receives a unit of account depending on:
- Real Energy Balance
- Regeneration
- Social Stability
This New model of international reserves.
Strategic consistency
1 - Municipal pilot - proof
2 - Corporate Market - Scaling
3 - National level - standardization
Risks
- Political Resistance
- Lobbying of raw materials structures
- Complexity of accurate measurements ΔE