DocumentCode :
2961179
Title :
High-efficiency on-line double-conversion UPS
Author :
Cammarota, Filippo ; Sinigallia, Stefano
Author_Institution :
RIELLO UPS-RPS S.p.A., Legnago
fYear :
2007
fDate :
Sept. 30 2007-Oct. 4 2007
Firstpage :
657
Lastpage :
662
Abstract :
Everyone today is aware of the need to conserve energy. It is one of most hotly debated topics, especially in the field of power protection. Here, there are several innovations that can provide a valuable contribution; in terms of higher operating efficiency and significant energy savings. One of the most important of these is the neutral point clamped inverter. This report compares the three-level, neutral point clamped (NPC) type inverter with the more traditional 2-level version. The objective of this comparison is to demonstrate (in cost and benefit terms) that whilst a UPS with an NPC type inverter has a higher initial purchase outlay (due to its greater complexity and component count), this can be quickly recovered as a result of the far higher energy savings typically achieved. The analysis starts by comparing the two different approaches, illustrating the advantages and disadvantages of one compared to the other, in terms of their technical features and performance. Next the inverter cost differences are quantified (in percentage terms) individually and as part of a complete UPS. This markup is expressed as a percentage of the selling price, based on the average market price of a 40 kVA model. The sizeable efficiency gap between the two different UPS types, (92% to 96.5% under nominal conditions), means that the lower running costs and power losses of an NPC inverter-based UPS typically results in a faster purchase capital recovery period.
Keywords :
energy conservation; invertors; uninterruptible power supplies; energy savings; high-efficiency online double-conversion UPS; neutral point clamped inverter; power protection; Batteries; Circuits; Costs; Filters; Inverters; Magnetic separation; Switches; Uninterruptible power systems; Virtual reality; Voltage;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Telecommunications Energy Conference, 2007. INTELEC 2007. 29th International
Conference_Location :
Rome
Print_ISBN :
978-1-4244-1627-1
Electronic_ISBN :
978-1-4244-1628-8
Type :
conf
DOI :
10.1109/INTLEC.2007.4448862
Filename :
4448862
Link To Document :
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