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[ONLINE COURSE] CALCULATION AND DESIGN OF PHOTOVOLTAIC SOLAR INSTALLATIONS FOR SELF-CONSUMPTION. NEW RD 244/2019

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Dates:

June 3 and 4 (Wednesday and Thursday)

Schedule:


From 3 pm to 7 pm.

Place: The course will be online, streamed with access to the virtual classroom, where you will connect with the teacher to follow the course.

Minimum / maximum attendees:

8/25
Duration:
8 hours
Targets:
On April 5, RD 244/2019 was approved which regulates the administrative, technical and economic conditions of self-consumption of electricity.

To train technicians to be able to properly design installations of solar foltovoltaic energy for self-consumption in all the modalities that the RD 900/2015 contemplates, use a program of calculation of energetic valorisation and definition of the profiles of consumption.

Photovoltaic self-consumption is a reality that will be increasingly implemented in Catalonia, within the strategic plan of the Energy Transition of Catalonia and the impetus led by the ICAEN.
Contents:

1. Regulatory framework and basic concepts

Legal framework for self-consumption. RDL 15/2018, RD 900/2015, RD 1699/2011 and RD 842/2002 (REBT).
Technical implications of RD Autoconsum:

- Types of facilities. Connection point request. Procedures with the distributor.
- Shared self-consumption. Options.
- Legalization and registration of facilities. Self-consumption administrative register. Company channel.
- Technical project and technical design report. Certificate of installation. Initial inspections.
- Zero injection. UNE 217001.
- Particular technical standards of distributors.

2. Technical fundamentals of design and operation

- Analysis of the consumption profile. Consumption monitoring. Constant or seasonal consumption profiles.
Different types of daily consumption profiles. Electricity tariffs and time discrimination. Rates 3.0.
Examples from customer invoices.
- Solar radiation. Hourly and monthly. Database. Calculation of solar production (different methods of
calculation, tools and resources). Availability of deck space. Far and near shadows. Calculation
of shadows. Shadow configuration solutions.
- Technical, design and operating characteristics of all the equipment that is part of one
solar installation (modules, inverters, electrical equipment, DC and AC protection panels, etc.).
Mounting and fixing systems. Maintenance and operation of the facilities. String configuration.
Design conditions.

3. Schematics of self-consumption photovoltaic installations

This block presents the basic configuration diagrams of all types of installations
self - consumption photovoltaics and the comparison with the other existing modalities (assisted, isolated and
interconnected).
Basic scheme of self-consumption photovoltaic installations (with and without surplus management).
Basic diagram of self-consumption photovoltaic installations with electrical accumulation. Batteries
Comparison with basic scheme of the autonomous photovoltaic installations with the different ones
types of batteries that currently exist.
Different ways of representing single-line and configuration schemes. Lay outs.

4. Calculation and design of self-consumption photovoltaic solar installations. Valuation
energy. Calculation software

Detailed sizing of a self-consumption installation
- Calculation of the optimal power according to invoices or consumption profiles (hours, monthly).
- Implementation of the modules on the roof.
- Inverters. Centralized or decentralized. String configuration.
- Solar coverage vs. self-consumption ratios.
- Valorisation of the energy generated.
- Electrical calculations. Protections. Wiring and voltage drops.

5. Resolution of exercises. Calculation examples

Solving calculation and design examples using different computer resources and tools, excel sheets and
configuration software (SUNNY DESIGN, Ampere energy, PIKO PLAN). Define consumption profiles a
from electrical bills or monitoring. Import actual hourly consumption. Implementation in plant of the
modules (lay out). Drawing of single-line diagrams. Electrical calculations. Technical and commercial reports and proposals.
Recipients:
The course is aimed at professionals who want to dedicate or deepen their energy advice, energy audits, etc. in the specialty of photovoltaic solar installations for self-consumption.
Documentation:
Follow-up documentation will be delivered digitally, which you will find in your private area 48-72 hours in advance of the course.

Instructions for bonuses:

1.Request the forms at CETIT to formacio@enginyerstarragona.cat

2. Provide all the information 10 calendar days before the start of the course.

3. Important note: the management of the bonuses is carried out by means of an external consultancy. Those who want to take advantage of the bonus for any training action, the price will be increased by 10-20% (which can also be discounted and recovered)

Bonuses:

We manage the procedures so that you can benefit from the corresponding training bonus.
Payment method:
We will charge through your account number, which you must provide at the time of registration.
Certification:



A certificate of accreditation and attendance at the end of the training will be issued. Those who apply for a subsidy for the course through the Tripartite Foundation for Employment Training will also have a certificate issued by the FTFE
Professional Accreditation

This training is competent to accredit your training to COGITI.
More information: http://www.acreditacioncogitidpc.es

Conditions:

Speakers

  1. JOAN RAMIREZ GUASCHConsultor energètic de l'empresa TESLING. Ex-professor associat del DEM de la URV i professor de màster de la UB. Professor de cursos de fotovoltaica i eficiència energètica a diferents col·legis d'enginyers de Catalunya