Women-led DeepTech Startup · Karnataka

BMK DeepTech Shakti

Computationally identifying and enabling unrealized economic value within an area.

COMPUTATIONAL AREA-ECONOMIC-VALUE ENABLEMENT SYSTEM

A DeepTech initiative in Socio-Economic Systems Engineering, combining computational modelling, simulation, decision-support technologies and computational value estimation to evaluate pathways for enabling unrealized socio-economic value.

TechnologyTRL 6 — System/subsystem prototype demonstration in a relevant environment
EntityRegistered Partnership
LocationDakshina Kannada, Karnataka, India
Registration11 June 2026
01 · The Invention

What is BMK building?

BMK is developing a Computational Area-Economic-Value Enablement System intended to move beyond simply observing economic activity toward computationally identifying, estimating and evaluating unrealized economic value within geographic areas.

The central BMK proposition

Economic activity exists across Assembly Constituencies, Parliamentary Constituencies, Districts, States and Countries. BMK is developing computational methods intended to identify unrealized socio-economic value and evaluate alternative pathways that may enable that value.

02 · The Problem

What problem is BMK solving?

The unrealized economic value of an entire area is not systematically identified, evaluated and enabled to increase area GDP and reduce economic-value disparities.

PROBLEM 01

Uneven economic value

GDP is unevenly distributed within and among areas, while every area has economic value that remains unrealized.

PROBLEM 02

Limited systemic identification

Conventional startup models primarily capture value within their own stakeholder networks rather than systematically identifying the unrealized economic value of the entire area.

PROBLEM 03

Growth and allocation challenge

The right combination and sequence of public and private investment and interventions to enable identified unrealized value are not yet available through a single computational system.

03 · The Approach

From observed activity to economic-value enablement

BMK's proposed approach connects area-level economic information, computational value estimation, scenario modelling and intervention evaluation.

Area→Economic Activity→Unrealized Value→Computational Evaluation→Intervention Pathways→Enablement→Economic Value
04 · Computational Architecture

Three core computational engines

The system is being developed around three computational engines that collectively form BMK's Computational Decision Infrastructure.

VBE

Virtual Budget Engine

Models alternative resource-allocation scenarios and computational budget structures across multiple geographic levels.

BRV

Budget Reallocation Value Engine

Estimates the socio-economic value that may be created through alternative resource-allocation strategies under varying assumptions and constraints.

EEV

Economic Expansion Value Engine

Models participation-dependent pathways for long-term economic expansion and estimates unrealized economic potential using probabilistic computational methods.

SYSTEM

Computational Decision Infrastructure

The three engines are intended to operate as an integrated computational foundation for modelling, simulation and decision-support across geographic levels.

05 · Two Forms of Innovation

Product innovation + GTM innovation

FIRST INNOVATION

Product Innovation

The COMPUTATIONAL AREA-ECONOMIC-VALUE ENABLEMENT SYSTEM is the computational product BMK is developing to identify, estimate and evaluate unrealized economic value and pathways to enable it.

SECOND INNOVATION

GTM Innovation

A complex invention serving complex areas also requires a way to understand the customer and take the product into those areas. BMK therefore treats its go-to-market architecture as a second innovation.

06 · Technology & Readiness

Where is BMK today?

BMK is currently at Technology Readiness Level 6 — System/subsystem prototype demonstration in a relevant environment. The Computational Area-Economic-Value Enablement System is being developed as an integrated computational system, with VBE, BRV and EEV serving as supporting computational engines.

Built / under development

Core computational frameworks, estimation methodologies, prototype software modules and supporting infrastructure.

Current validation

Integrated system/prototype demonstration in a relevant environment, including the computational and decision-support functions of the system.

Next stage

Operational pilot deployment in an actual area, progressing the system toward Technology Readiness Level 7.

Technology stack

Applied Computational Systems Engineering · Economic Modelling · Probabilistic Modelling · Simulation Technologies · Decision-Support Systems · Computational Value Estimation · Artificial Intelligence (AI) · Geographic Systems Modelling · Data Analytics · PHP · MySQL · Modular Software Architecture

07 · Business Model

Who can BMK serve?

BMK's potential market includes every area containing people, businesses and economic activity—from a local area to an entire country.

B2G

Government relationships for area-level economic analysis, modelling and decision support.

B2B

Business relationships requiring economic-value estimation, modelling or strategic decision support.

B2C

Potential individual-facing applications derived from BMK's computational capabilities.

B2A

Business-to-Area: a BMK customer relationship focused directly on an economic area.

B2ED

Electoral-district implementation of B2A, including Parliamentary and Assembly Constituency contexts.

Revenue model

Platform subscriptions, enterprise licensing, value-estimation studies, simulation services and strategic advisory engagements.

Commercial pathway

Pilot to platform: convert initial deployments into recurring multi-year institutional contracts. The commercial logic is Build → Validate → Deploy → Sell → Scale.

08 · Explore BMK

Public demonstration systems

These public systems provide examples of concepts and prototype software currently under development.

BMK Main Platform

BMK's main public platform and software environment.

Open BMK Main Platform →

BMK-PHOSITA

Structured innovation, novelty and prior-art exploration framework.

View Demonstration →

START-ADE

Administrative Decision Enablement demonstration environment.

View Demonstration →

Country-Level Demonstration

Country-level computational demonstration environment.

Country Demonstration →

State-Level Demonstration

State-level computational demonstration environment.

State Demonstration →

Parliamentary Constituency Demonstration

Parliamentary Constituency-level demonstration.

PC Demonstration →

Assembly Constituency Demonstration

Assembly Constituency-level demonstration.

AC Demonstration →
09 · Current Development

What is being built now?

Prototype development

Prototype development focuses on validating the computational frameworks described in the ELEVATE 2026 proposal while building supporting software infrastructure for future pilots.

Supporting infrastructure

Current engineering work includes modular components supporting transaction management, explainable capital management, valuation, resource-allocation workflows, deployment tracking, operational accounting, notification management and audit logging.

10 · Roadmap

From TRL 6 to TRL 7 through operational pilot deployment

  1. Demonstrate the Computational Area-Economic-Value Enablement System as an integrated system in a relevant environment.
  2. Demonstrate computational identification, estimation, evaluation and enablement functions using relevant area-level economic data and conditions.
  3. Validate the integrated system workflow, including the supporting computational engines and decision-support infrastructure.
  4. Deploy the system in a selected pilot area and commence operation in the actual operational environment.
  5. Use evidence from successful operational pilot deployment to progress from TRL 6 to TRL 7.
11 · Team & Academic Guidance

Built around the invention

BMK combines founder capability with a defined plan to add specialist and academic capability as the system progresses from prototype demonstration toward operational deployment.

Academic and Specialist Reference

BMK's development is informed by academic disciplines relevant to computational systems engineering, economic modelling, decision science, management and socio-economic development.

Relevant Academic Expertise

Prof. Rudrapatna K. Shyamasundar
Indian Institute of Technology Bombay

Prof. Ankur A. Kulkarni
Indian Institute of Technology Bombay

Prof. Surya Prakash Singh
Indian Institute of Technology Delhi

Prof. Rajalaxmi Kamath
Indian Institute of Management Bangalore

Prof. Gopal Naik
Indian Institute of Management Bangalore

12 · Vision

Computational infrastructure for better economic decisions

Governments and institutions routinely allocate resources across infrastructure, public services, welfare programmes and economic development initiatives.

BMK seeks to extend traditional budgeting and reporting systems by developing computational methods capable of estimating unrealized socio-economic value and evaluating alternative resource-allocation outcomes before implementation.

The long-term objective is to establish a Computational Decision Infrastructure that assists governments, institutions, businesses and communities in making better evidence-based resource-allocation decisions through computational modelling, simulation and decision-support technologies.

13 · Company

BMK DeepTech Shakti

Entity NameBMK DeepTech Shakti
Entity TypePartnership Firm
Registration Date11 June 2026
DistrictDakshina Kannada
StateKarnataka
CountryIndia
Managing PartnerMurali Krishna Brahmandam
SectorSocio-Economic Systems Engineering
Technology Readiness LevelTRL 6 — System/subsystem prototype demonstration in a relevant environment
Startup StagePrototype — Model (Early Functional Version)
Program AppliedELEVATE 2026 — Shakti Track (Women-Led Startup)
Websitehttps://bmk.org.in/bmk-deeptech-shakti/
BMK DeepTech Shakti

Explore the computational pathway.

Discover the public demonstrations, understand the three computational engines and follow BMK's development from experimental proof of concept toward institutional validation.