UEERE0063Design off-grid photovoltaic/generating set systems

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What an assessment for UEERE0063 must cover

82 assessable components: 2 elements (10 performance criteria), 3 performance evidence and 69 knowledge evidence requirements. An audit-defensible tool maps every question and task back to these — that mapping is the coverage matrix Auditori generates alongside the assessment.

Elements & performance criteria

1 Prepare to design off-grid PV/genset system

  • 1.1Work health and safety (WHS)/occupational health and safety (OHS) processes and workplace procedures for a given work area are identified, obtained and applied
  • 1.2Scope of the off-grid PV/genset system and electrical installation is determined from site survey report and design brief
  • 1.3Safety and regulatory requirements to which the electrical installation must comply are identified, obtained and applied
  • 1.4Design development work is planned to meet scheduled timelines in consultation with other person/s involved in the off-grid system installation or associated work

2 Develop off-grid PV/genset system design

  • 2.1Off-grid PV/genset system performance standards and compliance methods are applied to the design
  • 2.2Safety, functionality and budgetary considerations are incorporated in the off-grid PV/genset system design
  • 2.3Power and energy management requirements are incorporated in design
  • 2.4Design aspects are verified by qualified person/s
  • 2.5Off-grid PV/genset system design is drafted and checked for compliance with the design brief and regulatory requirements
  • 2.6Off-grid PV/genset system design is documented and submitted in line with industry standards and regulations, job requirements and workplace procedures

Performance evidence

  • applying relevant workplace procedures and practices, work health and safety (WHS)/occupational health and safety (OHS) requirements, including using risk control measures
  • developing off-grid PV/genset systems design based on site survey data and within safety and functional requirements and budget limitations and meet design brief
  • documenting and presenting final design

Knowledge evidence

  • off-grid PV/genset system design, including:
  • power and energy usage analysis and projected use including maximum demand and surge demand
  • determining the available solar resource
  • incorporating fuel generating plant
  • selecting off grid PV system configuration
  • determining the system operation
  • component selection including:
  • selected system configuration and operation requirements
  • matching component rating to required and projected power/energy usage
  • matching power, voltage and current of the individual system components
  • intended installation environment
  • maintenance and serviceability requirements
  • selecting cabling, circuit protection and switching requirements in accordance to relevant Australian standard
  • off grid PV system installation requirement in accordance with relevant Australian standards and manufacturers requirements
  • schematic and wiring diagrams for the off grid PV/genset system showing the general circuit layout and protection between the various system components
  • installed capital and life cycle costs of selected system configuration
  • energy storage design
  • system control requirements and configuration
  • fuel storage requirements
  • autonomy factors
  • solar resource including:
  • peak sun hours, irradiance, irradiation, latitude, azimuth and altitude angles, tilt angle
  • interpretation of solar irradiation data
  • how irradiation varies throughout the year on the surface of a fixed collector
  • effect on solar resource of tracking
  • PV modules, including:
  • cell, module, array
  • types, efficiencies and their typical applications
  • mechanical and electrical features necessary for the long life of a PV module
  • module characteristics including:
  • I-V curve, operating point, maximum power point (MPP), power and voltage temperature co-efficient, Standard Test Conditions (STC), nominal operating cell temperature (NOCT)
  • major ratings of a PV module from manufacturer’s information or nameplate data
  • configuration of a typical PV array
  • the effect of partial shading of a PV module or array
  • effect of temperature on module power output
  • function of blocking and bypass diodes
  • factors affecting the optimal tilt and orientation of PV arrays
  • power conversion equipment (PCE) including:
  • types of PCEs used in renewable energy systems
  • the basic function of a PCE
  • PCE operation
  • PCE characteristics
  • generating sets including:
  • types of generating sets
  • the basic function of a generating set
  • generating set operation
  • generating set characteristics
  • batteries including:
  • meaning of the terms that define aspects of batteries including:
  • cell
  • battery
  • nominal voltage
  • amp hour capacity
  • watt hour capacity
  • charge and discharge rate
  • fault/short-circuit current
  • useable capacity
  • depth of discharge (DOD)
  • state of charge (SOC)
  • cycle life
  • hazards associated with batteries and risk control measures
  • major features of batteries suitable for off-grid systems
  • factors affecting the life of batteries
  • common reasons for failure of batteries
  • charging regimes suitable for batteries
  • procedures for safe disposal and recycling of batteries
  • environmental considerations and required approvals
  • relevant WHS/OHS requirements, job safety assessments or risk mitigation processes
  • relevant manufacturer specifications.

Unit content sourced from training.gov.au — © Commonwealth of Australia, licensed under CC BY 4.0. Auditori is not affiliated with the Department of Employment and Workplace Relations.

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Questions about assessing UEERE0063

What does an assessment tool for UEERE0063 need to cover?

To satisfy the Principles of Assessment and Rules of Evidence, an assessment for UEERE0063 needs to address all 82 unit components: 2 elements with 10 performance criteria, 3 performance evidence requirements, 69 knowledge evidence requirements, and the foundation skills. A coverage matrix mapping each question and task to these components is what an auditor looks for.

How does Auditori generate an assessment tool for UEERE0063?

Auditori pulls the current release of UEERE0063 from training.gov.au and generates a complete package: candidate assessment, assessor guide with model answers and observation criteria, and a coverage matrix mapping every component. A suitably qualified person then reviews and approves the draft in a built-in workflow — consistent with ASQA's guidance on AI use in VET — before export as branded PDF and editable Word.

Is the first assessment tool really free?

Yes. Every new account includes one free credit — enough to generate the complete assessment tool for UEERE0063 — with no card and no subscription required. After that it's pay-as-you-go per unit.

Can I check my existing UEERE0063 assessment instead of generating a new one?

Yes — upload your existing assessment or learner guide and Auditori maps it against every element, performance criterion, PE and KE of UEERE0063, showing exactly what's covered and what's missing. Mapping costs a quarter of a credit.

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