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Transforming Industries: Key IT Standards for Waste, Power, Agriculture, and Weather Systems


Digital transformation is rapidly reshaping how industries manage processes, ensure safety, and achieve operational efficiency. In today’s competitive environment, the adoption of well-established international standards is not just recommended—it is essential for driving productivity, enhancing security, and enabling scalable business models. This article explores four pivotal standards in the Information Technology domain that are transforming waste management, wireless power, agricultural safety, and road weather information systems.

By implementing and maintaining compliance with these IT standards, organizations benefit from seamless integration, secure operations, regulatory alignment, and future-ready scalability. Whether it’s optimizing complex waste collection networks, ensuring safe machine operation, or delivering reliable wireless power, these frameworks offer concrete advantages for modern enterprises.


Overview

Modern industries are increasingly reliant on Information Technology to bridge the gap between the physical and digital worlds. As diverse fields—ranging from agriculture to municipal services to infrastructure management—digitize their operations, the demand for robust, interoperable, and secure IT standards has soared.

International standards:

  • Provide a common language and framework for system design,

  • Ensure compatibility between diverse technologies,

  • Enable safer and more efficient operations,

  • Drive innovation and competitive edge.


In this guide, we’ll demystify four key IT-related standards relevant for professionals, businesses, and government agencies:

  1. Waste management data exchange (SIST EN 18158:2026)

  2. Wireless power interoperability (SIST EN IEC 63563-10:2026)

  3. Agricultural and forestry control system safety (SIST EN ISO 25119-2:2023)

  4. Road weather information system test methods (SIST-TS CEN/TS 15518-4:2024)

Each section explains what the standard covers, who should care, and the real-world benefits of compliance and implementation. Our goal is to make this essential information easily digestible for a broad audience so that every organization can appreciate the productivity, security, and scaling advantages these standards unlock.


Detailed Standards Coverage

SIST EN 18158:2026 – Connecting Waste Management with Mobile IT

Waste management – Mobile IT systems – Requirements for the XML interface Office-Mobile

SIST EN 18158:2026 establishes a standardized approach for digital data exchange between a waste management company’s central office and its mobile collection units (such as refuse trucks and recycling vehicles). By defining the XML interface, the standard ensures smooth, automated two-way communication regarding job assignments, job status, and collection metrics.


Scope and Key Requirements:

  • Specifies data structures for order plans, master data, job reports, and status reports.

  • Ensures that mobile technology (onboard computers or handheld devices) and office-based job processing systems can seamlessly share information.

  • Applies to all waste collection vehicles and systems operating on the EN 840 and EN 13071 (container systems), and EN 1501 (refuse vehicles) series.

  • Focuses exclusively on the interface definition—data transmission technique itself is out of scope.

Practical Implementation:

  • Promotes efficiency by automating assignment and tracking of collection jobs.

  • Enables real-time status updates, eliminating manual paperwork.

  • Facilitates accurate billing (usage-based invoicing) and compliance with digital documentation requirements.


Who Should Comply:

  • Waste management companies deploying mobile IT systems.

  • OEMs of waste collection vehicles and IT solutions providers for municipal services.

Notable Features:

  • Object-based XML structure for robust, flexible data exchange.

  • Includes support for planned and unplanned jobs, status tracking, event logging, and compatibility with RFID elements.

  • Supports master data synchronization (personnel lists, unloading points, transponder lists, etc.).

Key highlights:

  • Streamlines waste collection processes with digital workflows

  • Improves transparency, traceability, and operational control

  • Supports integration with future smart waste management solutions

SIST EN IEC 63563-10:2026 – Ensuring Interoperable Wireless Power

Qi specification version 2.0 – Part 10: MPP system specification (IEC 63563-10:2025)

Wireless power is powering the next generation of devices, from smartphones to medical equipment. SIST EN IEC 63563-10:2026 outlines the Magnetic Power Profile (MPP)—an extension of the globally recognized Qi wireless charging standard. It ensures that all manufacturers’ products, whether they are transmitters (PTx) or receivers (PRx), can work together seamlessly and securely.


Scope and Key Requirements:

  • Establishes detailed system architecture and functional requirements for MPP systems in Qi 2.0.

  • Covers authentication, coil designs, power delivery, foreign object detection, and communications protocols (physical layer).

  • Improves power transfer efficiency and interoperability between Qi-certified devices.

Practical Implementation:

  • Ensures consumer safety with secure authentication protocols and foreign object detection.

  • Enables manufacturers to bring more powerful wireless charging solutions to market, with backward compatibility.


Who Should Comply:

  • Product designers and manufacturers of wireless power transmitters/receivers.

  • Organizations developing or integrating wireless charging solutions in consumer, medical, or industrial products.

Notable Features:

  • Specification for precise coil and power control, ensuring efficient and reliable energy transfer.

  • Comprehensive compliance and testing framework for interoperability.

  • Backward compatible with Qi BPP (Baseline Power Profile), supporting legacy devices.

Key highlights:

  • Guarantees interoperability across Qi-certified products

  • Enhances wireless charging performance and safety

  • Supports innovation in mobile, automotive, health tech, and IoT applications

SIST EN ISO 25119-2:2023 – Functional Safety for Agricultural and Forestry Control Systems

Tractors and machinery for agriculture and forestry – Safety-related parts of control systems – Part 2: Concept phase (ISO 25119-2:2019)

With agriculture and forestry sectors incorporating advanced control systems, safety is paramount. SIST EN ISO 25119-2:2023 provides a detailed methodology for establishing functional safety right from the concept phase for electronic/electrical/programmable electronic (E/E/PES) control systems in machinery. This ensures that safety risks due to system malfunctions are effectively identified and mitigated.


Scope and Key Requirements:

  • Specifies end-to-end processes for risk assessment, hazard analysis, and safety goal definition in control system design.

  • Defines methodologies for Hazard Analysis and Risk Assessment (HARA), and sets requirements for achieving safety-related functions.

  • Applies to all tractors and self-propelled/ride-on machinery, including mobile municipal equipment (e.g. street sweepers), but not to lawn and garden tools or non-electronic safety systems.

  • Ensures compliance with EU Machinery Directive 2006/42/EC on safety.

Practical Implementation:

  • Facilitates systematic evaluation of potential risks and operational failure modes.

  • Supports design teams in specifying the required performance level (AgPL) for safety functions.

  • Enhances safety documentation and traceability.


Who Should Comply:

  • Manufacturers of agricultural and forestry machinery with electronic control systems.

  • Safety engineers, risk managers, and OEMs integrating E/E/PES systems.

Notable Features:

  • Integrates with ISO 12100 for general machinery safety design.

  • Comprehensive process for safety goal setting, functional safety requirements, and allocation to system architectures.

  • Includes methods for estimation of diagnostic coverage, hardware reliability, and common-cause failure.

Key highlights:

  • Ensures systematic risk assessment from concept phase

  • Provides structured path to regulatory compliance and machine safety

  • Boosts credibility and global market access for agricultural equipment manufacturers

SIST-TS CEN/TS 15518-4:2024 – Laboratory Qualification for Road Weather Information Systems

Winter maintenance equipment – Road weather information systems – Part 4: Test methods for stationary equipment

Effective road weather information systems (RWIS) are critical for transportation safety, especially during winter maintenance. SIST-TS CEN/TS 15518-4:2024 delivers the standardized laboratory test procedures necessary to ensure the accuracy, reliability, and reproducibility of stationary RWIS equipment (sensors, data loggers, etc.).


Scope and Key Requirements:

  • Covers comprehensive methodologies for testing embedded, remote, and atmospheric sensors used in RWIS.

  • Outlines step-by-step setup, test execution, and analysis requirements for system and single sensor qualification.

  • Includes standardized tests for temperature, humidity, road surface condition, precipitation, wind, and visibility.

Practical Implementation:

  • Ensures that only accurately calibrated and tested RWIS equipment is deployed for critical road safety operations.

  • Enables objective product comparison and enhances public safety through reliable weather prediction data.


Who Should Comply:

  • Manufacturers and laboratories producing stationary road weather sensors and systems.

  • Road maintenance agencies and governments responsible for winter safety.

Notable Features:

  • Extensive test suite for both embedded and remote sensors.

  • Guidance on result analysis and uncertainty estimation for objective evaluation.

  • Harmonized methods for compliance across Europe and beyond.

Key highlights:

  • Objective, reproducible laboratory testing for road weather hardware

  • Enables authorities to make evidence-based maintenance and safety decisions

  • Improves resilience of critical infrastructure under adverse weather conditions

Industry Impact & Compliance

Why These Standards Matter

Across industries, these IT-enabling standards are foundational for:

  • Interoperability: Facilitating seamless communication between diverse hardware, software, and process chains.

  • Regulatory Compliance: Aligning operations with both local and international laws, such as the EU Machinery Directive or environmental reporting obligations.

  • Efficiency and Productivity: Automating manual workflows, reducing errors, and accelerating time to market.

  • Risk Mitigation: Ensuring robust safety, security, and quality management at every phase of product and process development.

  • Future-Proof Scaling: Enabling integration with future smart technologies, supporting business growth without costly rework or vendor lock-in.


Compliance Considerations

  • Mandatory for Market Access: Often, standards like SIST EN ISO 25119-2:2023 and SIST EN IEC 63563-10:2026 are required by regulators or large buyers as a condition of supply.

  • Certification and Auditing: Organizations need to demonstrate process and product compliance through audits, testing, and certification (especially in safety-critical sectors).

  • Continuous Updating: Standards evolve; staying up-to-date is vital to maintain compliance and leverage new features or security enhancements.


Benefits of Implementation

  • Lower operational risks and improved safety records.

  • Access to new business opportunities and public contracts.

  • Enhanced reputation through certification.

  • Readiness for international expansion—standards open global markets.

  • Greater adaptability for new digital, AI, and IoT-driven services.


Risks of Non-Compliance

  • Operational disruptions or costly recalls.

  • Legal penalties, lost contracts, or denial of market entry.

  • Increased vulnerability to cyber threats, safety incidents, and performance failures.


Implementation Guidance

How to Get Started with IT Standards Adoption

  1. Assess Applicability: Identify which international standards apply to your products, services, and processes.

  2. Gap Analysis: Compare current practices with standard requirements—your areas for improvement.

  3. Develop an Implementation Plan: Assign roles, set milestones, and allocate resources for compliance (e.g., documentation, technical changes, staff training).

  4. Engage with Certification Bodies: For standards requiring certification, coordinate early with accredited testing labs or auditors.

  5. Implement and Document: Update systems, deploy new processes, and keep meticulous records for traceability.

  6. Monitor and Review: Continuously monitor compliance, train staff, and stay informed about standard revisions.


Best Practices

  • Build Internal Awareness: Educate teams on both the business and technical benefits of standards.

  • Leverage Technology Partners: Work with suppliers and vendors who are already compliant or experienced with the relevant standards.

  • Invest in Training and Upgrading: Ensure that both personnel and IT infrastructure are equipped to meet new requirements.

  • Utilize External Resources: Explore guidance documents, case studies, and training offered by standards bodies. Leverage iTeh Standards platform for the latest editions and expert insights.

  • Pilot Before Wide Rollout: Start with pilot implementations for high-impact areas, learning before expanding to the full organization.


Conclusion & Next Steps

Embracing well-established IT standards is no longer optional for businesses aiming to excel in modern waste management, wireless power, agriculture, or infrastructure. Standards like SIST EN 18158:2026, SIST EN IEC 63563-10:2026, SIST EN ISO 25119-2:2023, and SIST-TS CEN/TS 15518-4:2024 offer a critical bridge to enhanced productivity, security, automation, and scalability.

Organizations that proactively adopt these standards will experience:

  • Improved operational control and business agility

  • Safer, higher-quality products and services

  • Simplified compliance with regulations and easier market expansion

Next Steps:

  • Review the full texts of the standards relevant to your field using the links provided above via iTeh Standards.

  • Begin your compliance journey—consult with industry experts and technology partners, and invest in staff training.

  • Stay updated with standard revisions to maintain your organization’s competitive edge.

Transform your industry’s future with international IT standards—unlock new levels of efficiency, security, and innovation.

1 Comment


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