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      <dc:title>Power Quality</dc:title>
      <dc:creator>Eberhard, Andreas</dc:creator>
      <dc:subject>Energía eléctrica - Calidad</dc:subject>
      <dc:description>Electrical power is becoming one of the most dominant factors in our society. Power&#xd;
generation, transmission, distribution and usage are undergoing signifi cant changes&#xd;
that will aff ect the electrical quality and performance needs of our 21st century industry.&#xd;
One major aspect of electrical power is its quality and stability – or so called Power&#xd;
Quality.&#xd;
The view on Power Quality did change over the past few years. It seems that Power&#xd;
Quality is becoming a more important term in the academic world dealing with electrical&#xd;
power, and it is becoming more visible in all areas of commerce and industry, because&#xd;
of the ever increasing industry automation using sensitive electrical equipment&#xd;
on one hand and due to the dramatic change of our global electrical infrastructure on&#xd;
the other.&#xd;
For the past century, grid stability was maintained with a limited amount of major&#xd;
generators that have a large amount of rotational inertia. And the rate of change of&#xd;
phase angle is slow. Unfortunately, this does not work anymore with renewable energy&#xd;
sources adding their share to the grid like wind turbines or PV modules. Although the&#xd;
basic idea to use renewable energies is great and will be our path into the next century,&#xd;
it comes with a curse for the power grid as power fl ow stability will suff er.&#xd;
It is not only the source side that is about to change. We have also seen signifi cant&#xd;
changes on the load side as well. Industry is using machines and electrical products&#xd;
such as AC drives or PLCs that are sensitive to the slightest change of power quality,&#xd;
and we at home use more and more electrical products with switching power supplies&#xd;
or starting to plug in our electric cars to charge batt eries. In addition, many of us&#xd;
have begun installing our own distributed generation systems on our rooft ops using&#xd;
the latest solar panels. So we did look for a way to address this severe impact on our&#xd;
distribution network. To match supply and demand, we are about to create a new, intelligent&#xd;
and self-healing electric power infrastructure. The Smart Grid. The basic idea&#xd;
is to maintain the necessary balance between generators and loads on a grid. In other&#xd;
words, to make sure we have a good grid balance at all times. But the key question that&#xd;
you should ask yourself is: Does it also improve Power Quality? Probably not!&#xd;
Further on, the way how Power Quality is measured is going to be changed. Traditionally,&#xd;
each country had its own Power Quality standards and defi ned its own power&#xd;
quality instrument requirements. But more and more international harmonization efforts&#xd;
can be seen. Such as IEC 61000-4-30, which is an excellent standard that ensures&#xd;
that all compliant power quality instruments, regardless of manufacturer, will produce of measurement instruments so that they can also be used in volume applications and&#xd;
even directly embedded into sensitive loads. But work still has to be done. We still use&#xd;
Power Quality standards that have been writt en decades ago and don’t match today’s&#xd;
technology any more, such as fl icker standards that use parameters that have been defi&#xd;
ned by the behavior of 60-watt incandescent light bulbs, which are becoming extinct.&#xd;
Almost all experts are in agreement - although we will see an improvement in metering&#xd;
and control of the power fl ow, Power Quality will suff er. This book will give an&#xd;
overview of how power quality might impact our lives today and tomorrow, introduce&#xd;
new ways to monitor power quality and inform us about interesting possibilities to&#xd;
mitigate power quality problems.&#xd;
Regardless of any enhancements of the power grid, “Power Quality is just compatibility”&#xd;
like my good old friend and teacher Alex McEachern used to say.&#xd;
Power Quality will always remain an economic compromise between supply and load.&#xd;
The power available on the grid must be suffi ciently clean for the loads to operate correctly,&#xd;
and the loads must be suffi ciently strong to tolerate normal disturbances on the&#xd;
grid.</dc:description>
      <dc:date>2011-07-06T09:48:55Z</dc:date>
      <dc:date>2011-07-06T09:48:55Z</dc:date>
      <dc:date>2011</dc:date>
      <dc:type>book</dc:type>
      <dc:identifier>978-953-307-180-0</dc:identifier>
      <dc:identifier>http://hdl.handle.net/10630/4677</dc:identifier>
      <dc:language>eng</dc:language>
      <dc:rights>open access</dc:rights>
      <dc:publisher>Intech</dc:publisher>
   </ow:Publication>
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