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Watch → understand → predict → warn → recover
Dynamic model of the biosphere, connecting observation, scientific models, AI, GIS, aerospace data and scenario prediction.
Россия_Мастер_Стихий_БИОТРОН_ЭКВИЛИБРИУМ.pptx
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Not to subordinate nature, but to understand its rhythms, to prevent destructive manifestations and to direct the natural force to creation.
Strategic document • Version 1.0
22 August 2026
Summary
Element management in the EQUILIBRIUM system is an interdisciplinary model for managing natural risks, resource flows, and ecosystem restoration. It combines environmental monitoring, digital twin territories, forecasting, early warning, resource mobilization and cooperative execution.
The document describes the target concept. Specific technologies of active influence on natural processes are allowed only after scientific, environmental, legal and ethical expertise. Monitoring, prevention, adaptation and recovery are always a priority.
Purpose of the system
Ensure the stability of the territory and human security through the synchronization of five contours: Earth, Water, Air, Fire and Ether - information and coordination environment linking data, decisions and actions.
Expected effect
- reduction of damage from natural and man-made emergencies;
- early detection of degradation of biocenoses and sources of impact;
- restoration of water, soil, atmospheric and energy balance;
- Increasing the transparency of decisions and the evidence of the environmental result;
- creation of a single mechanism for cooperation between the state, science, business and society.
Final formula
STYHIA → OBSERVATION → UNDERSTANDING → FORECAST → HARMONIZED ACTION → MEASUREMENT → RECONSTRUCTION OF EQUALITY
1. Grounds and principles
The element is understood simultaneously as the natural environment, the flow of matter or energy, a source of risk and a resource of creation. Control does not mean absolute control: the system works with probabilities, limits of intervention and feedbacks.
| Principle | Contents |
|---|---|
| Integrity | Consider the atmosphere, water, soil, living organisms, human and infrastructure as a connected system. |
| Prevention | Transfer the center of gravity from elimination of consequences to early detection and warning. |
| Scientific evidence | Separate observed facts, model predictions and hypotheses; provide independent verification. |
| Caution | Do not apply effects with irreversible consequences in case of insufficient data. |
| Subsidiarity | Make a decision at the closest competent level to the territory. |
| Open liability | Identify the owner of the decision, grounds, resources, outcome, and consequences. |
| Regenerative | Seek not only to compensate for the damage, but also to restore the natural ability to self-regulation. |
2. The Five Elements
| Elemental | Management objects | Main result |
|---|---|---|
| Land | Soils, subsoil, relief, landscapes, agrosystems, development | Fertility, geological and spatial stability |
| Water | Rivers, lakes, seas, groundwater, precipitation, water supply | Clean water, water balance, drought and flood resistance |
| Air | Atmosphere, aerosols, wind, air quality, microclimate | Clean atmosphere, climate adaptation, safe use of wind |
| Fire | Heat, combustion, energy, fires, industrial processes | Safe energy, fire prevention, resource efficiency |
| Ether | Data, communication, models, knowledge, rules, collective coordination | Single situational picture and synchronization of actions |
2.1 Land
The Earth’s contour combines monitoring of soil and subsoil conditions, assessment of erosion, landslides, subsidence, pollution, land degradation and the impact of construction. Creative mode - regenerative agriculture, reclamation, restoration of forests and landscapes, safe territorial planning.
2.2 Water
The contour of the Water forms the basin picture: quantity, quality, seasonality, sources of pollution, condition of coasts and aquatic biocenoses. It supports flood and drought forecasting, reservoir management, treatment, reuse, and ecological restoration of water systems.
2.3 Air
The air circuit links ground stations, remote sensing, weather models, and emissions inventory. It is designed for early detection of hazardous concentrations, dust and smoke plumes, thermal islands and adverse weather conditions.
2.4 Fire
The outline of Fire covers natural fires, industrial heat, and energy flows. Its mission is to prevent fires, secure local energy supply, increase efficiency and use heat without destroying ecosystems.
2.5 Ether
Ether is not a physical element in the scientific classification, but a management metaphor for the information field. It is a layer of data, communications, digital twins, standards, decision registries and public participation mechanisms.
3. Functional architecture
EQUILIBRIUM is the mind of the system. Collects data, forms a digital twin of the territory, calculates scenarios, identifies relationships and supports decision-making.
Biocenous points are the senses. Continuously observe the atmosphere, water, soil, plants, animals, microorganisms and man-made load.
ECO-PPA is a mobilization mechanism. It links a proven environmental impact to programs, resources, responsibility and long-term financing.
SFERA — space of initiatives. Conducts proposals of citizens, scientists, enterprises and municipalities through expertise, cooperation, pilot and scaling.
SPECZASHCHITA - contour of execution. It forms project consortia, production cooperation, logistics, installation, operation and restoration work.
Authorities and services - the contour of authority. Provide a legal regime, interdepartmental coordination, emergency response and control of socially significant results.
Control cycle
- Surveillance is the continuous collection of data and field evidence.
- Diagnosis is the separation of natural variability from dangerous deviation.
- Forecasting is the calculation of scenarios, probabilities, and event horizons.
- The solution is to choose an acceptable action, taking into account risks and alternatives.
- Mobilization is the assignment of owners, resources, timelines, and communication channels.
- Execution is a local action, response, or recovery.
- Verification is the measurement of outcome, side effects and residual risk.
4. Management levels and readiness regimes
| Level | Scale | Model solutions |
|---|---|---|
| Local | Object, quarter, biocenous point | Signal, inspection, localization, prevention |
| Municipal | City or area | Coordination of services, work plan, public awareness |
| Regional | Subject or pool | Redeployment of resources, inter-municipal regime |
| Interregional | Swimming pool, natural area, macroregion | Joint scenarios, force reserve |
| National | Russian Federation | Strategic norms, a unified picture of risks, mobilization |
| International | Transboundary ecosystems | Data exchange, joint warning, coordinated programmes |
| Mode | Condition | Action |
|---|---|---|
| Green | Indicators in the allowable range | Surveillance and prevention |
| Yellow | Sustained adverse deviation | Enhanced monitoring and readiness |
| Orange | High probability of a dangerous event | Preventive deployment of resources |
| Red | Event occurs or is inevitable | Response, protection of people, localization |
| Blue | Acute phase completed | Restoring and Controlling the New Balance |
5. Practical programs
| Programme | Purpose | First products |
|---|---|---|
| Living water | Restoration of water systems | Water passport of the territory; flood forecast; recovery plan |
| Fertile land | Soil and landscape regeneration | Degradation map; reclamation program; fertility control |
| Clear Sky | Atmospheric monitoring | Air quality map; sources of emissions; warning |
| The Creative Fire | Energy and fire safety | Fire risk map; early detection; safe microgeneration |
| Unified Field | Information coordination | Digital twin; risk passport; decision log |
| The Climate Shield | Adaptation to extreme events | Scenarios of heat, drought, rain and storms |
| Biocenosis | Restoration of ecosystems | Biocenosis health index; plan of nature-like measures |
| Harmonious territory | Integrated management | Unified Development and Environmental Sustainability Program |
6. Data, digital twin and evidence
The digital twin of the territory should not represent a beautiful visualization, but a verifiable model of interconnections. Each indicator receives a source, periodicity, accuracy, owner, allowable range and escalation rule.
Minimum data classes
- Hydrometeorological and climatic observations;
- data on water, soils, atmosphere and biodiversity;
- remote sensing of the Earth, unmanned and field surveys;
- infrastructure, population, critical facilities and evacuation routes;
- production emissions, discharges, waste and resource flows;
- history of decisions, activities, costs and confirmed results.
Rule of Evidence
The fact, forecast and management recommendation should be displayed separately. The system must show the uncertainty of the model, the quality of the source data and alternative scenarios. Automated analysis supports the solution, but does not substitute for a legally responsible entity.
7. Performance indicators
| Group | Examples KPI |
|---|---|
| Warning | Proportion of risks identified before acute phase; average time from signal to verification |
| Response | Time of mobilization; area or number of objects protected by preventive measures |
| Ecology | Water and air quality; soil fertility; habitat connectivity; reclaimed area |
| Economy | Prevented damage; cost of result; share of reused resources |
| Social impact | Coverage by alert; trust in data; citizen participation; reducing health threats |
| Management | Completeness of data; compliance with regulations; proportion of decisions with independent verification |
KPI should not encourage concealment of events or the formal achievement of indicators. The baseline, calculation methodology and independent verification are approved before the program starts.
8. Governance, roles and responsibilities
| Participant | Responsibility |
|---|---|
| Strategic Council | Priorities, limits of intervention, interagency solutions |
| Scientific and Technical Council | Methods, models, acceptability of technologies, expert disagreements |
| The Situation Centre | A round-the-clock picture, forecasting, escalation and coordination |
| Regional operator | System deployment, data quality, readiness of performers |
| Project Consortium | Specific result, timing, budget, performance safety |
| Independent Verifier | Confirmation of the baseline, result and absence of significant harm |
| Community domain | Observations, feedback, control of information availability |
Ethical and legal restrictions
- Prohibition of hidden large-scale impact on natural processes;
- mandatory assessment of environmental and transboundary impacts;
- The principle of "do no significant harm" and the possibility of stopping the pilot;
- protection of personal data and critical infrastructure;
- public disclosure of the grounds of decisions within the security requirements;
- human control over critical automated recommendations.
9. Road map of implementation
| Stage | Timeframe | Key result |
|---|---|---|
| 0. Design | 0–3 months | Territory passport, threat register, data architecture, consortium composition |
| 1. Base Line | 3–6 months | Inventory, location of points, methods and reference values KPI |
| 2. Pilot | 6–12 months | Digital twin, regulations, training scenarios, first recovery measures |
| 3. Verification | 12–15 months | Independent assessment of the accuracy of forecasts, results and side effects |
| 4. Scaling | 15–36 months | Circulation by basins, municipalities and natural areas |
| 5. Constant cycle | from 36 months | Model update, prevention, training, sustainability audit |
First pilot: selection criteria
- a pronounced but managed set of natural and man-made risks;
- the existence of the municipality or region concerned;
- availability of historical data and basic surveillance infrastructure;
- the ability to obtain a measurable result within 12 months;
- representativeness for subsequent scaling;
- availability of a scientific partner and independent verification.
10. Passport of the pilot project
| Field | Contents |
|---|---|
| Territory | Pilot boundaries, population, key biocenoses and infrastructure |
| Issue addressed | Confirmed threats, causes, seasonality and historical damage |
| Base Line | Indicator baselines and data quality |
| Target result | Measurable change, duration and allowable residual risk |
| Decision | Equipment, digital components, nature-like and organizational measures |
| Responsible | Owner of the result, operator, supervisor, verifier |
| Resources | Budget, sources of funding, staff, material reserves |
| Security | Restrictions, stop scenario, protection of people and data |
| Verification | Measurement method, period of control, open reporting |
11. Decisions requiring approval
- Determine the pilot area and the owner of the result.
- Adopt a list of priority risks and baselines.
- Form a scientific and technical council and rules of independent verification.
- Assign a data operator and set access modes.
- Approve the limits of the permissible impact and the procedure for stopping the pilot.
- Forming a project consortium EQUILIBRIUM — SFERA — ECO-PPA — SPECZASHCHITA.
- Prepare a budget, a calendar plan and an agreement on the distribution of responsibility.
Conclusion
Elemental management is the transition from a fragmented response to a holistic culture of foresight and recovery. The system makes the natural dynamics visible, the solutions reasonable, the resources consistent, and the result measurable.
Its highest task is not to create the illusion of power over nature, but to restore to man the ability to live within the limits of natural balance, to protect life in a timely manner and to direct knowledge and technology to the revival of territory.
Annex. Short Glossary
| Term | Definition |
|---|---|
| Biocenous point | Autonomous natural and technical complex for monitoring the local ecosystem. |
| Digital twin of the territory | An updated computational model of the state, connections and scenarios of the territory. |
| Passport of risk | A structured description of the threat, probability, consequences, indicators and measures. |
| Nature-like measure | Exposure that utilizes or restores natural self-regulation mechanisms. |
| Verification | Independent confirmation of the correctness of the data, methodology and the result achieved. |
| Residual risk | Risks that persist after the implementation of prevention and protection measures. |
Source materials
Originals and versions of the document
- Управление_стихиями_ЭКВИЛИБРИУМ.docxDOCX · main document
- Россия_Мастер_Стихий_БИОТРОН_ЭКВИЛИБРИУМ.docxDOCX · related version
- Россия_Мастер_Стихий_БИОТРОН_ЭКВИЛИБРИУМ.pptxPPTX · related version
Other editions in web format
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RUSSIA MASTER OF SCIENCESRussia_Master_Poem_BIOTRON_EQUILIBRIUM.docx · web text+
BIOTRON
Dynamic Model of the Biosphere
Fire • Water • Air • Earth • Ether
Strategic Concept • 2026
1. Russia — Master of the Elements
The doctrine of “Russia — Master of Elements” considers five elements as five systemic functions of the country’s development. Fire - impulse and action; Water - life and recovery; Air - knowledge and communication; Land - matter, labor and infrastructure; Ether - meaning, cycles and synchronization. Their connection forms a controlled architecture capable of seeing territory as a living system.
Five Elements as Five State Outlines
| Elemental | Function | National outline | Result |
|---|---|---|---|
| Fire | Action | mobilization, initiative, energy of transformation | speed of transition from decision to result |
| Water | Life | water systems, restoration, ecosystem health | Sustainability of Life Cycles |
| Air | Knowledge | science, communication, data, education, alert | quality of solutions |
| Land | Form | territory, production, infrastructure, soil | material result |
| Ether | Connectivity | cycles, hypergraph, scenarios, coordination | integrity of the system |
2. BIOTHRON — dynamic model of the biosphere
BIOTRON is a digital dynamic model of the biosphere that combines observation, scientific models, artificial intelligence, geoinformation data, aerospace monitoring and scenario forecasting. Its subject is not a single object and not a single sensor, but the state of the interconnected system "atmosphere - water - soil - biota - man - technosphere".
Main objectives
- creation of a single picture of the current state of the biosphere of the territory;
- Identification of deviations before the transition to the crisis phase;
- search for sources and chains of causal influence;
- forecasting of natural and technogenic scenarios;
- Evaluate the impact of decisions on multiple environments simultaneously;
- selection of recovery measures with maximum cumulative effect;
- formation of digital memory of the territory and the history of its changes.
Biotron is not
- one centralized database of all data;
- replacement of specialists, scientific expertise and responsible bodies;
- automatic system of forced management of people;
- "black box" AI without explanatory sources and models.
3. Model object: living territory contour
The atmosphere is temperature, humidity, pressure, wind, aerosols, pollutants, precipitation.
Water - rivers, lakes, groundwater, humidity, quality, water balance, floods and drought.
Soil - moisture, fertility, pollution, erosion, permafrost, geochemistry and soil stability.
Plants - productivity, state of forests, crops, phenology, stress and fires.
Animals - habitats, migrations, numbers, biodiversity, indicator species.
Microorganisms are microbiological processes, decomposition, sanitary and environmental markers.
Human - resettlement, resource consumption, quality of the environment, infrastructure dependencies.
Technosphere - enterprises, transport, energy, waste, emissions, discharges and emergency risks.
4. BIOTRONA Architecture
Architecture is built on seven interrelated levels.
1. Touch layer - ground sensors, laboratories, hydro stations, weather stations, production control systems.
2. Aerospace layer - satellites, UAVs, radar and optical observations.
3. Register layer - state, scientific, municipal, corporate and open data.
4. The layer of the digital twin is the GIS, the digital model of the territory, the communication of objects and time series.
5. Model-analytical layer - physical, biological, economic and statistical models.
6. AI- layer - search for anomalies, comparison of causes, forecast, prioritization of scenarios.
7. The contour of the solution is warning, action scenarios, performance monitoring and feedback.
5. Five elements inside the Biotron
| Elemental | What Biotron is Watching | What forecasts | What response forms |
|---|---|---|---|
| Fire | energy, fires, thermal anomalies, emergency processes | Dissemination and consequences | prevention, localization, recovery |
| Water | runoff, quality, scarcity, floods, pollution | Water balance and risks | Source Management and Recovery |
| Air | meteorological processes, pollution, aerosols, information signals | transport and dynamics | notification and change of action |
| Land | soil, permafrost, vegetation, infrastructure | degradation and sustainability | reclamation, protection, repair |
| Ether | relations, cycles and complex index of state | Systemic scenarios | synchronization of solutions between contours |
Dynamic equilibrium index
For management, BIOTRON forms not one “magic” score, but a set of transparent indices: the state of the environment, the rate of change, sustainability, the risk of crossing the threshold, recovery potential and trust in data. The resulting panel shows not only the level of risk, but also its origin and range of uncertainty.
6. BIOTRONA operating modes
Normal mode
observation, digital double update, background forecast.
Attention Mode
An anomaly above the background oscillations; enhanced observation and verification.
Warning Mode
A credible scenario of potentially dangerous development is being formed.
Crisis regime
rapid interagency response and scenario management.
Recovery Mode
control of regeneration of the territory and prevention of repeated damage.
Five Questions about Biotron
- What's going on now?
- Why is this happening?
- What will happen if the trend continues?
- What actions are available and what are their side effects?
- How to check if the state has returned to a stable trajectory?
7. Digital double of the biosphere of Russia
The national digital twin is built federally: local and industry models retain their own responsibility and data quality, but use compatible standards, ontologies and interfaces. This allows you to see the picture of the country without having to physically collect everything in one system.
Levels
- observation point / object;
- ecosystem / catchment / municipal contour;
- region;
- natural and climatic zone;
- Federal level;
- cross-border and international boundaries.
Key maps
- water and water balance map;
- map of the atmosphere and pollution transfer;
- soil map, degradation and permafrost;
- Map of forests, fires and biodiversity;
- map of technogenic load;
- Map of vulnerability of the population and infrastructure;
- Map of recovery potential;
- A map of systemic risks and cascade effects.
8. BIOTRON and GASMP "EQUILIBRIUM"
BIOTRON becomes the terrestrial biosphere core of the global aerospace monitoring and forecasting system EQUILIBRIUM. GASMP provides wide surveillance and early signals; BIOTRON links them to the state of specific ecosystems and models the consequences.
| Contour | Function | Contact |
|---|---|---|
| GASMP | Global Aerospace Surveillance | gives a wide signal and macrodynamics |
| BIOTRON | Dynamic Model of Biosphere | Explains the local and systemic implications |
| EQUILIBRIUM | Supersystem coordination | Connects prediction with solutions and recovery |
9. BIOTRONA National Programmes
BIOTRON.VODA — water balance, quality, basin management and restoration.
BIOTRON.LES - forest health, fires, carbon and water cycle, biodiversity.
BIOTRON.POSHUA - fertility, erosion, pollution, permafrost and recovery.
BIOTHRON.AIR - air quality, pollution transfer and meteorics.
BIOTRON.GOROD - ecology of agglomerations, heat, water, transport and infrastructure risks.
BIOTRON.ARCTICS — permafrost, ice processes, infrastructure and climate dynamics.
BIOTRON.AGRO - moisture, yield, soil, biodiversity and sustainable agriculture.
BIOTRON.PROM — technogenic load, industrial risks and recovery measures.
BIOTHRON.BIORISN - habitats, migrations, indicator species and ecosystem sustainability.
BIOTHRON. HEALTH ENVIRONMENT - an integral assessment of the quality of the environment without profiling citizens.
10. BIOTHRON and 365 events
365 events of the five elements become the public-scientific interface of BIOTRONA. Civil surveillance can complement a professional system only after quality labeling and verification.
- days of observation of water and small rivers;
- phenological observations and the state of plants;
- environmental routes and photo recording of changes;
- public actions of recovery;
- school and university research projects;
- transfer of environmental management practices;
- Annual Biosphere Day: a general comparison of results.
11. Management and scientific verification
BIOTRON should be built as a scientific and managerial infrastructure with a division of roles. The decision-making body should not single-handedly determine the quality of the data; the model should be verifiable, the version should be fixed, and the critical conclusions should undergo specialized examination.
Roles
- scientific council - methods and models;
- data operator - standards, quality, origin and access;
- Situation Centre - Monitoring and Scenarios
- relevant departments - decisions within the scope of powers;
- regions and municipalities - local implementation;
- business - data and reduction of impact;
- society and education - observation, participation and control of open results.
Principles
- Evidence and origin of data;
- explainability of models and range of uncertainty;
- separation of recommendations AI and legally significant decisions;
- protection of personal and sensitive data;
- open aggregates where it is safe;
- Independent verification of key environmental findings.
12. KPI BIOTRONA
| Indicator | What is measured |
|---|---|
| Coverage | The proportion of priority territories with a digital dynamic model. |
| Speed | time from the appearance of the anomaly to its detection. |
| Accuracy | The number of warnings confirmed by subsequent observations. |
| Causality | the proportion of incidents with an established chain of sources of exposure. |
| Prevention | Assesses the number of preventable crises and the number of preventable damages. |
| Recovery | The system returns to a stable trajectory. |
| Data quality | percentage of data with proven proven provenance and validated methodology. |
| Integration | number of compatible departmental and scientific contours. |
| Openness | share of safe aggregates available to society. |
| Training | reducing the repeatability of typical errors after the introduction of feedback. |
13. BIOTRONA road map
| Stage | Horizon | Scale | Result |
|---|---|---|---|
| 1. Methodology | 0–6 months | 3–5 model territories | ontology, indicators, data quality protocols |
| 2. Pilot | 6–18 months | 1 Region + Several ecosystems | Digital twins and predictive scenarios |
| 3. Interregional network | 18–36 months | 5–10 regions | Unified interfaces and situational analytics |
| 4. National outline | 3–5 years | Priority Territories of Russia | Federative Digital Biosphere Double |
| 5. International cooperation | 4–7 years | transboundary basins and ecosystems | Comparable models and early warning |
14. Russia as a Master of Nature
In finite architecture, the Master Element does not mean domination over nature, but a high culture of complexity management. Fire gives you the will to act. Water saves lives. The air makes knowledge accessible and reliable. The earth is holding the result. Ether synchronizes cycles and connects solutions. BIOTRON makes this architecture observable, predictive, and learning.
RUSSIA — MASTER OF SCIENCES
Biotron is the digital sense of the living planet.
RUSSIARussia_Master_Poem_BIOTRON_EQUILIBRIUM.pptx · web text+
THE MASTER OF TYMES
BIOTRON
Dynamic Model of the Biosphere
Fire • Water • Air • Earth • Ether
Watch → understand → predict → warn → recover
Russia — Master of the Elements
Five functions of one national system
FIRE
action
EFIR
WATER
Synchronization
Life
RUSSIA
LAND
AIR
Form
Knowledge
BIOTRON
Digital sense of living territory
What is it?
What is changing
Dynamic model of the biosphere, connecting observation, scientific models, AI, GIS, aerospace data and scenario prediction.
We move from static report to dynamic: state → change rate → threshold → scenario → action → recovery.
BIOTRON sees not an object, but a system of "nature - man - technosphere".
What Biotron Models
Living territory contour
Atmosphere
Water
Soil
Plants
temperature, wind, aerosols
stock, quality, balance
moisture, fertility, pollution
condition, stress, fires
Animals
Microorganisms
Person
Technosphere
areas, migrations, numbers
Biological processes and markers
Quality of environment and dependencies
enterprises, transport, networks, risks
BIOTRONA Architecture
Seven levels from sensor to solution
sensors, laboratories, hydro stations, weather stations
Sensory layer
satellites, UAVs, optics, radar
Aerospace layer
government, scientific and corporate data
Register layer
GIS, time series, digital territory model
Digital twin
physical, biological, statistical models
Model-analytical layer
anomalies, causality, prognosis, priorities
AI-layer
warning, script, execution, feedback
Solution Outline
Five elements inside the Biotron
Each element is a separate type of observation and response
FIRE
energy, fires, thermal anomalies
Localization and Recovery
WATER
runoff, shortages, pollution, floods
Source and Basin Management
AIR
weather processes, pollution, transport
notification and change of action
LAND
soil, permafrost, infrastructure
reclamation, protection, repair
EFIR
cycles, links, system indexes
synchronization of solutions
Working modes
From Background Monitoring to Recovery
Norma
Warning
Warning
Crisis
Recovery
background and update model
Anomaly above natural fluctuations
A sustainable dangerous scenario
rapid inter-agency response
Controlling return to a sustainable trajectory
The goal is to see earlier, to understand more accurately and to act until irreversible damage.
Digital double of the biosphere of Russia
Federal model instead of one giant base
Point of observation
Ecosystem / catchment
Municipality
Region
Natural and climatic zone
Federal level
Local models retain responsibility, but use compatible standards, ontology and API.
map of water and water balance
map of atmosphere and pollution transport
map of soils, permafrost and degradation
Map of forests, fires and biodiversity
technogenic load map
Map of recovery capacity
BIOTHRON + GASMP + EQUILIBRIUM
Three levels of one early warning system
GASMP
BIOTRON
EQUILIBRIUM
Global aerospace surveillance.
Gives a wide signal and macrodynamics.
Explains the local and systemic implications for the biosphere.
Link the forecast to the solution, execution, and recovery.
See before → understand deeper → act targeted → recover faster
BIOTRONA National Programmes
From water and forest to the Arctic and industry
BIOTRON.WATER
BIOTRON.LES
BIOTRON.SHOW
BIOTHRON.AIR
BIOTRON.GOROD
the Targeted Monitoring and Recovery Module
the Targeted Monitoring and Recovery Module
the Targeted Monitoring and Recovery Module
the Targeted Monitoring and Recovery Module
the Targeted Monitoring and Recovery Module
BIOTRON.ARCTICS
BIOTRON.AGRO
BIOTRON.PROM
BIOTHRON.BIORISING
BIOTHRON. HEALTH ENVIRONMENT
the Targeted Monitoring and Recovery Module
the Targeted Monitoring and Recovery Module
the Targeted Monitoring and Recovery Module
the Targeted Monitoring and Recovery Module
the Targeted Monitoring and Recovery Module
Science, management, responsibility
Biotron should not be a black box.
Scientific Council
Data Operator
The Situation Centre
Methods and models
quality and origin
monitoring and scenarios
Offices
Regions
Society and education
Decisions within the authority
Local implementation
Participation and Open Results
AI recommends and explains. A legally significant decision is made by the responsible body.
KPI BIOTRONA
The main thing is to prevent damage and restore stability
KPI 1
KPI 2
Coverage of priority areas
Time of anomaly detection
KPI 3
KPI 4
Accuracy of warnings
Proportion of cases with established causation
KPI 5
KPI 6
Prevented damage
Recovery Time
KPI 7
KPI 8
quality and origin of data
Number of compatible circuits
Road map
From methodology to national digital twin
0–6 months
6–18 months
18–36 months
3–5 years
4–7 years
Methodology
Pilot of the region
Interregional network
National outline
International cooperation
Each stage - with data validation, independent examination and measurement of the real effect.
RUSSIA — MASTER OF SCIENCES
The Five Elements + BIOTRON + EQUILIBRIUM
Early warning, early warning,
Creation and Recovery
Biotron is the digital sense of the living planet.
EQUILIBRIUM • 2026

