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$5 USD / hour
Flag of CHILE
santiago, chile
$5 USD / hour
It's currently 3:27 AM here
Joined September 6, 2019
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Pablo V.

@pvela

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$5 USD / hour
Flag of CHILE
santiago, chile
$5 USD / hour
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Electronic Engineer

I'm an electronic engineer from Chile, my native language is Spanish. Currently I'm studying Chinese.

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Experience

R&D Engineer I

Synopsys
Mar 2018 - May 2019 (1 year, 2 months)
I worked as Product Validation Engineer responsible for validating the industry leading SOC implementation tool "Design Compiler" and others. Develop and execute test plans which validate the product requirements and identify potential problems.

Engineer

Universidad de Concepción, Chile
May 2017 - Oct 2017 (5 months, 1 day)
I designed and developed the hardware and software of a wireless ROVER.

Education

Electronic Engineer

Universidad de Concepción, Chile 2016 - 2017
(1 year)

Bachelor in engineering sciences

Universidad de Concepción, Chile 2010 - 2015
(5 years)

Publications

Using the DC-Link Capacitor as a Rotating Inertia in a Three Phase PV System.

XXIV International Conference on Electronics, Electrical Engineering and Computing.
This work provides the guidelines to calculate the size of the DC-link capacitor to contribute with additional energy - for a short period of time - than the photovoltaic panel can supply under normal operating conditions. First, a model of a three-phase electric generation system is used that combines photovoltaic panels and an inverter with an LCL filter at network side. In addition, a control algorithm capable of exchanging between two operating modes is implemented. Indeed, the first one is generated by

A Reactive Power Compensation Method for a Smart Grid Connected Inverter Using a Residential PV System.

The 4Annual Conference of the IEEE Industrial Electronics Society.
This work explores reactive power compensation on a small photovoltaic generation at residential installation to enhance reliability on a Smart Grid. In order to accomplish this goal, the modulator values of the inverter are determined to obtain the allowable range of reactive power compensation in a photovoltaic system connected to the grid trough out a single-phase voltage source inverter. Mathematical validation in addition to simulations and experimental results are included to validate the proposed app

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