Software-defined farm networking platform for high-bandwidth on-farm data communication and processing

Technology
In development
University

A modular, software-defined farm networking research platform built on Microsoft FarmBeats IoT gateway technology. Enables collection, transmission, and processing of massive sensor datasets from agricultural environments to support data-driven farm management decisions across the food value chain.

Overview

The Software-Defined Farm (SDF) is a modular networking platform designed to support high-bandwidth on-farm data communication and processing. Built on Microsoft FarmBeats IoT gateway technology, the SDF enables farmers and agricultural stakeholders to collect massive amounts of sensor data, transmit it to the cloud or local servers, and process it for actionable agricultural decision-making. The platform is engineered to be adaptable to any farming environment through interchangeable software and hardware components, making it a flexible foundation for next-generation precision agriculture applications.

Technical specifications
  • IoT gateway integration: Built on Microsoft FarmBeats emerging IoT gateway device for collecting and transmitting farm data
  • Software abstraction layers: Custom-developed layers that support future agricultural applications and simplify integration of diverse sensor types
  • Modular architecture: Hardware and software components can be swapped or reconfigured to suit different farming environments and crop systems
  • Low-cost connectivity: Designed to operate with affordable connectivity solutions suitable for rural and on-farm deployment
  • Cloud and edge processing: Supports transmission of data to cloud servers or local processing infrastructure for flexible analytics workflows
  • Multi-disciplinary systems engineering approach: Integrates agriculture, economics, computer science, social science, and engineering disciplines from conceptualization through production and operation
  • Stakeholder-informed design: Development informed by analysis of food value chain players including suppliers, producers, distributors, policymakers, and insurers
Technology readiness level

The SDF has progressed beyond conceptual validation through three field deployments that have demonstrated the viability of low-cost connectivity systems for supporting optimal crop growth, including apple tree cultivation. These deployments have surfaced important design insights, including a notable disconnect between technology interfaces used on the farm versus those used in the laboratory, which is informing ongoing refinement. Future work will focus on developing a multi-objective decision support tool capable of handling deep uncertainty to help farmers profitably manage their operations while sustaining environmental quality. The platform is positioned for continued development through interdisciplinary collaboration and stakeholder engagement across the agricultural value chain.


About Cornell University

Cornell University is a comprehensive private, land-grant research university with campuses in Ithaca and New York City, combining significant scale with cross-disciplinary breadth. Industry connects through open-access user facilities and prototyping labs, pilot-scale testbeds, and a research and technology park that provide pathways from discovery to demonstration. A statewide extension network and integration with a major hospital system enable real-world deployment, while a graduate campus embedded in New York City’s tech corridor provides direct access to startups, venture investors, and corporate R&D teams. Research is supported by competitive federal funding from agencies such as the National Science Foundation, National Institutes of Health, the Department of Energy, and the U.S. Department of Agriculture. A dedicated technology transfer office streamlines IP management, licensing, startup formation, and corporate partnerships across campuses.

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