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Agriculture can both produce and consume energy.

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DeReticular’s RIOS Campus 15 Network: The Sovereign Connectivity Layer

November 1, 2025 by Michael Noel

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DeReticular’s RIOS Campus 15 Network: The Sovereign Connectivity Layer

DeReticular’s Rural Infrastructure Operating System (RIOS) is built on a foundation of resilience, and its communications backbone is the Trifi Wireless RIOS Campus 15 network package. This product is a comprehensive, pre-integrated hardware solution designed to establish a sovereign, self-healing public access network over a 15-mile diameter area. It is engineered to function as the exclusive Public Access Network Layer for a RIOS deployment, providing always-on connectivity, independent of the Core Compute Cluster.

Product title: Trifi Wireless RIOS Campus 15

Brand: DeReticular

Product details:

a High-quality image:
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specfications
The RIOS Campus 15 network is a next-generation connectivity platform designed to eliminate the single point of failure inherent in traditional network infrastructure. It provides a secure and highly resilient connection for residents, visitors, and critical municipal services like police, fire, and healthcare telemetry. The system’s key feature is its intelligent multi-carrier redundancy, which combines a primary satellite backhaul with a cellular failover system, managed by an enterprise-grade SD-WAN appliance to guarantee uptime.
[1]
a comprehensive list of components of the RIOS 15 network
The hardware Bill of Materials (BOM) for the RIOS Campus 15 network package includes the following components:
[1]

  • Trifi Far X Routers: 125 Units. These serve as the primary public Wi-Fi access points and self-healing mesh nodes. Each router contains an embedded vSIM for cellular failover.
  • Starlink Business Kits: 3 Units. These provide the primary, high-speed, low-earth orbit (LEO) satellite backhaul for the entire network.
  • Enterprise SD-WAN Appliance: 2 Units. This is the intelligent core of the network, managing connectivity and providing seamless load-balancing and failover between the Starlink and cellular backhauls.
  • PtMP Wireless Backhaul Transceivers: 50 Units (forming 25 pairs). These create a high-speed, flexible wireless backbone between access points, minimizing the need for physical trenching.
  • Industrial-Grade UPS: 30 Units. These provide power resilience to critical network nodes, ensuring the system stays online during power outages.
  • Outdoor Weatherproof Enclosures: 150 Units. NEMA-rated enclosures to protect routers, transceivers, and power supplies from the elements.

where it is best deployed
This network solution is specifically designed for environments where traditional connectivity is unreliable, unavailable, or monopolistic. It is ideal for:

  • Rural Municipalities: To provide robust, community-owned internet access.
  • Post-Conflict Zones: To rapidly establish a decentralized and resilient communications grid that is not vulnerable to single points of failure.
  • Developing Nations: To build modern digital infrastructure without relying on traditional, single-carrier models.

what kind of performance metricts should you expect
The primary performance metric is resilience and uptime. The network is designed to be “always-on” through its layered approach:

  • Multi-Carrier vSIM Redundancy: If the primary Starlink backhaul fails, the Trifi Far X Routers automatically switch to the strongest available national cellular carrier.
    [1]* Self-Healing Mesh: The network can automatically reroute traffic around damaged or offline nodes to maintain connectivity.
    [1]* High-Performance Access: Each Far X Router provides full 2.4GHz & 5GHz Wi-Fi coverage and can support up to 32 concurrent device connections.
    [1]
    what the cost is
    The estimated retail price for the RIOS Campus 15 physical hardware package is $149,000 USD. This price explicitly excludes labor, software, and the other RIOS components like the Revofi (compute) and NeoMesh (sensor) networks.
    [1]
    what the big benifit if ownership is
    The main benefit is network sovereignty. By owning this infrastructure, a community is free from dependence on a single internet service provider. It guarantees a secure, continuous connection for critical services and public access, ensuring that communication lines remain open even if one part of the system fails. This control is fundamental to building a resilient and autonomous community.

the brands differential advantage
DeReticular’s advantage lies in its holistic, integrated system design. This is not merely a box of components; it is a pre-configured, plug-and-play communications layer engineered to be the resilient backbone of the entire RIOS ecosystem. The seamless integration of satellite, cellular, and mesh technologies, all managed by a central SD-WAN, provides a level of resilience that is unmatched by traditional, single-source network providers.

Sourceshelp

  1. Internal Report: Trifi Wireless RIOS Campus Product Definition – DeReticular

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Agriculturally Produced Energy

Benefits of Agriculturally Produced Energy:

Reduced Land Use Competition: Agrivoltaics can help balance the need for food production and renewable energy generation by utilizing the same land area for both purposes

Agriculture can both produce and consume energy. It produces energy through biomass conversion (e.g., biofuels) and through the generation of electricity using solar panels (agrivoltaics) and wind turbines. Simultaneously, agriculture relies on energy for various processes like powering machinery, irrigation, and producing fertilizers.

 

Reduced Reliance on Fossil Fuels: Diversifying energy sources on farms helps reduce dependence on fossil fuels, which are a major source of greenhouse gas emissions.

Lower Energy Costs: Renewable energy technologies can significantly lower energy costs for farmers, making their operations more sustainable.

Diversified Income: Agrivoltaics and other energy production methods can create new income streams for farmers, improving their financial resilience.

Environmental Benefits: Renewable energy production can reduce air and water pollution associated with fossil fuels and promote sustainable land management.

 

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