Next-Gen AgriTech Infrastructure

Autonomous
Smart Irrigation.

Krishi Kshetra builds scalable, IoT-driven robotics and sustainable water conservation systems for the future of rural agriculture.

Live Telemetry

99.9% Sensor Accuracy

SOIL_MOISTURE64.2%
ESP32_DB_SYNC15 / 100
STRATEGIC EVALUATOR NOTICE

Notice to Adani Group Visitors / Strategic Evaluators

Important Correction Regarding Project CapEx & Infrastructure Valuation

If you are evaluating this infrastructure and deployment proposal on behalf of the Adani Group or associated enterprise entities, please note an unintentional clerical and scaling error present across our primary financial summaries. Through our streamlined local-server and single-tank optimization (omitting massive over-provisioned enterprise data center racks), our true required capital expenditure is significantly reduced, achieving complete operational readiness on a lean infrastructure.

Stated Figure
₹1.30 Crores
Clerical Scaling Error
Actual Capital
₹130.0 Crores
(₹150.0 Cr Technical Cap)
Corrected & Optimized

Audit trail, verification breakdown, and network resilience frameworks are fully documented.

THE CHALLENGES WE RESOLVE

Addressing Agricultural Inefficiencies

Water Inefficiency

60% Water Target Saved

Widespread overwatering deprives crops of aeration and depletes vital water tables.

Escalating Power Bills

Reduced Energy Bills

Unregulated pump activation increases electricity usage and overhead costs.

Labor Constraints

24/7 Automated Cycle

Heavy dependency on manual farm operations causes timing and coverage errors.

Engineered specifically to solve real physical bottlenecks rather than marketing metrics.
FOUNDER STORY & ORIGIN

Why KRISHI KSHETRA
Was Started

KRISHI KSHETRA was created to address water wastage and irrigation inefficiencies faced by small and medium-scale farmers.

Many farmers still rely on manual irrigation methods that lead to excess water consumption, increased electricity costs, and labour dependency.

The Vision

To make intelligent agricultural automation accessible and affordable for farmers who cannot invest in expensive precision agriculture systems.

The Mission

To improve irrigation efficiency, support sustainable farming, and reduce resource wastage through practical technology.

Agricultural Robotics
Krishi Kshetra AI V1.2

Redefining
Sustainable Farming

Krishi Kshetra merges agricultural traditions with cutting-edge robotics. We are engineering autonomous systems to optimize water usage, enhance crop yield, and empower rural AgriTech innovation.

Smart Irrigation

IoT-driven sensors monitor real-time soil hydration to prevent water waste.

Agricultural Automation

Embedded systems replace manual labor with 24/7 automated farm management.

Water Optimization

Achieve up to 60% reduction in water consumption through algorithms.

Core Capabilities

Built for resilience. Designed for scale. Krishi Kshetra delivers uncompromising performance in rural environments.

Automated Irrigation

Self-regulating water delivery based on real-time soil analytics.

Smart Monitoring

24/7 continuous health tracking for crop vitality and soil hydration.

Water Conservation

Precision distribution algorithms minimizing agricultural water waste.

Scalable AgriTech

Modular architecture designed for micro-farms to industrial operations.

IoT Integration

Secure telemetry pipelines connecting edge sensors to cloud dashboards.

Future AI Expansion

Machine learning roadmap for predictive yield analysis and automated robotics.

HARDWARE & SOFTWARE MILESTONES

Current Development Status

Tracking our engineering validation progress from lab testing to real-world farm deployment.

Website Platform

Completed

Created investor-ready Next.js frontend platform with MPIN secure access layers and telemetry dashboards.

Startup Brief

Completed

Compiled structural business framework defining core agritech targets, operations, and scale economics.

Pitch Deck

Completed

Polished funding deck focusing on small/medium farmer pain points, pricing parameters, and product roadmap.

Soil Moisture Sensor Testing

Completed

Calibrated and stress-tested capacitive sensors across silt, loam, and dry soils for linear threshold accuracy.

Relay Automation Testing

Completed

Successfully validated isolated optocoupler relay triggers, protecting controller units from motor back-EMF spikes.

System Validation

Completed

Conducted end-to-end telemetry control loops demonstrating hardware and cloud software synchronization.

Integration & Hardening

In Progress (Target: July 2026)

Refining ESD bypass routing, power optimization controls, and manufacturing durable weather-proof casings.

Pilot Deployment Preparation

Upcoming

Creating hardware mounting kits, field wiring configurations, and onboarding local cluster farming cooperatives.

Early Farm Trials

Upcoming

Deploying nodes in active cultivation zones to measure water conservation metrics and local crop yield benefits.

Our development timeline is strictly checked against real physical achievements. We emphasize functional prototype evidence and lab verification metrics over hypothetical projections.

System Architecture

A seamless integration of hardware sensors, microcontrollers, and relay automation designed for maximum efficiency.

Soil Sensor

Analog/Digital Input

Controller

Logic Processing

Relay Module

Circuit Automation

Water Pump

Precision Dispensing
PROJECTED DEVELOPMENT PIPELINE

Development Roadmap

A high-level overview of our technical milestones leading to commercialization and scalable pilot deployments.

May 2026Completed

Prototype Development

Hardware schematic design, sensor validations (capacitive moisture), relay pump test configurations, and low-power hardware testing.

June 2026In Progress

Dashboard Integration & Circuit Stabilization

Configuring real-time telemetry streaming via Firebase/MQTT. Engineering bypass circuits and ESD shielding to isolate motor surges.

July 2026Planned

Prototype Validation & Field Testing

Conducting laboratory verification and initiating multi-soil field trials on cooperative test beds to validate sensor calibration.

August 2026Planned

Pilot Deployment

Deploying multi-node smart mesh network devices in rural agriculture clusters. Validating physical deployment durability.

September 2026Planned

AI Advisory Development

Training predictive modeling scripts utilizing evapotranspiration metrics and local weather APIs for precision schedule algorithms.

October 2026Planned

Commercial Readiness Preparation

Finalizing custom casing tooling, regulatory safety certifications, and preparing commercial investor decks (TRL 7/8 scale).

PRODUCT EXPANSION PIPELINE

Scalable Products & Design

Our future-ready engineering pipeline scales the Krishi Kshetra core technology for diverse farming models and advanced macro irrigation architectures.

Design Stage

RoboMac Lite

Modular Soil Sensor Node

An ultra-low-cost, solar-powered single valve controller designed specifically for smallholder farms and localized greenhouse beds.

Engineering Specs

  • Solar-harvesting PMIC
  • LoRaWAN mesh networking
  • Single-channel solenoid support
Architecture

RoboMac Pro

Multi-Zone Fertigation Hub

Industrial-grade multi-zone irrigation system integrating NPK sensors with automatic fertilizer dosing algorithms for precise nutrient delivery.

Engineering Specs

  • 4-zone solenoid control array
  • NPK soil sensor interface
  • Modbus RS485 communication
Research Phase

Krishi-Air Link

Drone & Soil Sensor Sync

Syncs aerial multispectral NDVI imagery from surveying drones directly with ground-level capacitive telemetry to trigger adaptive micro-irrigation.

Engineering Specs

  • NDVI image mapping overlay
  • Ground-truth calibration
  • Fuzzy-logic water demand prediction
Concept

HydroMesh Gateway

Edge IoT Coordinator

Industrial cellular edge router coordinating dozens of RoboMac nodes, processing local moisture data without needing active internet connection.

Engineering Specs

  • Local SQLite telemetry caching
  • LTE-M / NB-IoT backhaul
  • IP67 weatherized housing

Measurable Proof & Progress

Hard validation numbers backing our agricultural automation designs.

0+

Soil Moisture Sensors Tested

Validated across multiple soil types (clay, sand, loam) in controlled laboratory models.

0

Working Irrigation Automation Prototype

Fully functional ESP32 hardware node integrated with optocoupler relay valve control.

0

Founding Team Members

Dedicated young creators and robotics developers driving hardware and code integrations.

0+

System Validation Tests Completed

Rigorous electrical and database connectivity validation tests successfully finished.

0%

SME Farmer Alignment

Engineered specifically to solve resource boundaries for small & medium agriculture scales.

SUSTAINABILITY & ALIGNMENT

Expected Impact

Aligning technological innovation with sustainable agriculture metrics and resource conservation frameworks.

United Nations SDG Core Alignment

SDG 2

Zero Hunger

Promoting food security by optimizing crop health and water management.

SDG 6

Clean Water & Sanitation

Reducing agricultural water extraction by optimizing root-level moisture supply.

SDG 9

Industry, Innovation & Infrastructure

Deploying scalable IoT networks and embedded controls in rural fields.

SDG 12

Responsible Consumption

Ensuring sustainable resource use through automated scheduling.

Resource Management

Reduced Water Wastage

Closed-loop micro-irrigation logic delivers hydration directly to the root zone, preventing surface runoff, deep percolation, and evaporation.

Qualitative Target Validated
Agronomic Precision

Improved Irrigation Efficiency

Automation triggers pumps based on real-time soil requirements rather than arbitrary timers, ensuring optimal moisture balance.

Qualitative Target Validated
Operational Cost

Lower Electricity Consumption

By eliminating unnecessary pump run times, the system reduces agricultural grid load and lowers monthly utility overheads.

Qualitative Target Validated
Yield Optimization

Improved Agricultural Productivity

Consistent, threshold-backed moisture conditions prevent crop hydration stress, supporting healthy root systems and maximizing yield potential.

Qualitative Target Validated
Cost Accessibility

Affordable Farm Automation

Utilizing cost-effective microcontrollers and localized sensor nodes to make precision irrigation accessible without capital-heavy installations.

Qualitative Target Validated
Ecological Support

Support for Sustainable Farming

Promotes conservation-oriented farming practices, preventing soil erosion, salinization, and supporting long-term ecological balance.

Qualitative Target Validated

Incubation & Growth Requirements

Strategic resources and partnerships needed to scale RoboMac from prototype to market-ready solution

Funding

  • Seed funding for hardware component optimization
  • Prototype scaling and production tooling
  • Regulatory compliance and certification

Technical Resources

  • Advanced IoT testing infrastructure
  • Cloud deployment and scalability optimization
  • Mobile app development framework

Market Access

  • Agricultural partnerships and distribution networks
  • Field trial coordination with farming communities
  • Market research and customer validation

Team Growth

  • Experienced hardware engineers
  • IoT and embedded systems specialists
  • Agricultural domain experts

Infrastructure

  • Lab facilities for prototype testing
  • Supply chain management systems
  • Quality assurance protocols

Growth Strategy

  • Regional expansion roadmap
  • Partnership development programs
  • Sustainability and impact metrics

Ready to partner with us on this journey?

Get in Touch
GROWTH & COLLABORATION

We Are Seeking

Let's build the future of sustainable farming together. We are looking for partners, advisors, and mentors.

Incubation Support

Seeking incubator onboarding to accelerate structural business modelling, IP patenting, and hardware-level certifications.

Technical Mentorship

Looking for guidance in electrical hardening, low-power mesh networks, cloud database optimizations, and PCB mass production.

Pilot Farm Partners

Seeking progressive farmers and agricultural cooperatives to deploy our smart telemetry nodes for active environmental feedback.

Strategic Partnerships

Seeking alignment with pump manufacturers, solar panel distributors, and localized hardware component suppliers.

Industry Experts

Seeking advisors from agronomy, water resource management, and rural tech domains to refine our moisture calibration maps.

Pre-Seed Funding

Open to seed funding discussions to finance larger tooling molds, batch PCB routing prints, and rural deployment logistics.

ORGANIZATIONAL LEADERSHIP

Founding Team

Meet the engineers and innovators driving sustainable agriculture through automation and telemetry validation.

AA
Founding

Atharva Anand

Founder

Leading core hardware schematics, embedded firmware development, and venture operations. Architecting the product vision and investor relations.

Core Focus Areas

Product VisionEmbedded SystemsSoftware DevelopmentBusiness Development
ND
Founding

Nihar Dudhabaware

Co-Founder

Directing operational workflows, quality assurance procedures, and client relations. Managing product lifecycle support and field hardware compliance.

Core Focus Areas

OperationsProduct SupportTesting
AG
Founding

Angad

Co-Founder

Spearheading agronomic research, agricultural dataset compilation, and multi-soil testing configurations. Coordinating telemetry validation in test plots.

Core Focus Areas

Field ValidationData CollectionTesting Support
VENTURE PARTNERSHIPS

Partner With KRISHI SHETRA

Seeking incubation, mentorship, pilot deployment opportunities, and technical guidance.

Venture Representation

AA

Atharva Anand

Founder & Lead Engineer

Incubation & Growth Requirements

Incubation Support
Technical Mentorship
Product Development Guidance
Pilot Deployment Support
Industry Partnerships
Infrastructure Access

Send Partnership Proposal

Chat on WhatsApp