Showing posts with label Islands of Light. Show all posts
Showing posts with label Islands of Light. Show all posts

Friday, 15 November 2019

UNTITLED



ISLANDS and AREAS of LIGHT Infrastructure Development

Electricity – 'HFAC'  Papers



The HFAC network based on a sinusoidal 60V, 128kHz supply, a second better option for our first Islands of Light. 

In fact, the proposal refers to a next and better stage of power distribution, related to the 48V DC proposed as the first nowadays option. 

 
https://core.ac.uk/download/pdf/141094.pdf

"Claimed benefits include low losses on the distribution path, even heat distribution throughout the cards shelf and good voltage regulation on the load side."

"In the case of HFAC power distribution, by contrast with the DC networks, the entire output portion of the power converter which includes rectifiers, post regulators and filters is distributed to the point of use."

"When a load short-circuit occurs and the primary and secondary windings of the transformer are coupled, the current drawn is low and limited by Ls and the saturation action of the transformer. This is an effective fuseless protection for the circuit."




Related posts: https://lightcommunitylighting.blogspot.com/2019/07/untitled_18.html





Thursday, 3 October 2019

ELVDC Standard 'IS 16711 / 2017'


ISLANDS and AREAS of LIGHT – Infrastructure Development

Subject: Electricity – Off-grid ELVDC 48V power distribution




The Indian Standard  'IS 16711 / 2017' – a valuable paper to be followed 
for the firsts Islands of Light (probable even in the early 'post Event era'), we are entitled to consider as an (already in place) standard  of
48 V ELVDC Distribution System

- Guidelines



The same may proper apply for any off-grid community...









Standard: Title IS 16711 / 2017 - "IS 16711 / 2017"

48 V ELVDC Distribution System - Guidelines


https://www.services.bis.gov.in:8071/php/BIS/bisconnect/pow/is_details?IDS=MjI3MTI%3D



[Images are posted for educational purpose only]




Friday, 5 July 2019

Untitled


ISLANDS and AREAS of LIGHT Infrastructure Development


Electricity – UHFAC Microgrid Papers - an Incunabulum of a real high frequency AC power distribution


UHFAC Microgrids:


https://repository.lib.ncsu.edu/bitstream/handle/1840.16/9877/etd.pdf?sequence=1
Summary of the Work:
"This dissertation presents a framework for the proposed novel Ultra-High-Frequency-AC (UHFAC) Microgrids.
The bus frequency and the power transmission frequency of the UHFAC Microgrids is pushed to 54 kHz. 

The bus voltage waveform is quasi-square (trapezoidal) and the peak value is 400 V. 
Compared to traditional Low-Frequency-AC (LFAC) Microgrids, the size and weight of the transformer and passive component in UHFAC Microgrids are significantly smaller; the distributed source interface and load interface converters are greatly simplified; the acoustic noise is eliminated; and wireless connection of power electronics interfaces is enabled.
Compare to traditional DC Microgrids, huge DC capacitors are eliminated since there is no DC bus to stabilize. 
In addition, the proposed UHFAC Microgrids get rid of DC-arcing flash since the bus has current zero crossing points.
The circuit breaker therefore is much easier to develop than those in DC Microgrids.
Furthermore, short-circuit protection is possible to respond as fast as 9.26 µs,
which is the time interval between two nearest zero-crossing point.
Chapter 1 gives a review on the traditional LFAC Microgrids and DC Microgrids.
Existing 500 Hz HFAC Microgrids is also included for comparison.
Chapter 2 presents an in-depth analysis on the advantages of the proposed UHFAC Microgrids." 





A novel distributed PV system with ultra-high-frequncy-AC bus for residential applications https://ieeexplore.ieee.org/document/6953714
"In this paper, three existing distributed PV system configurations are reviewed and compared in depth. A novel ultra-high-frequency-AC (UHFAC) PV system for residential application is proposed. Compared with traditional DC parallel PV systems, this new approach eliminates the high voltage DC bus by replacing it with UHFAC bus, which avoids the DC arcing fault and enables ultra-fast short circuit protection as well. Resonance is utilized in this system to help UHFAC power transfer and realize soft-switching. Cable modeling is conducted to extract AC parameters, which helps validate the UHFAC power transmission (i.e., 100 kHz) in 30 to 40-feet-distance. Cable parameters also participate in the resonant intervals which demonstrates full utilization of system components. Simulation and experimental results are provided to verify the proposed approach."
"Renewable energy resources, especially solar power, has drawn tremendous interest in recent decades. Distributed and centralized PV systems are two main architectures, while distributed system is favorable for both industry and academic research. Because of radiation mismatch, centralized PV system can expect a power loss of about 30% for lacking of individual MPPT [1]. Power electronic technologies for conditioning PV panel power fall into two big categories: panel series solution and panel parallel solution."



[posted for educational purpose only]





Thursday, 4 July 2019

Untitled Post


AREAS and ISLANDS of LIGHT – Infrastructure Development – Electricity


Outdoor Radial Waves Open Lighting Units


Outdoor Radial Waves Open Lighting Units - Large Size - 14.1"/14.3"/369 - 396/417 - 432/454
http://lightcommunitylighting.blogspot.com/p/blog-page_4.html

Outdoor Radial Waves Open Lighting Units - Medium Size - 7.83" - 256 - 285
https://lightcommunitylighting.blogspot.com/p/blog-page_25.html

ELVDC - Outdoor Radial Waves Open Lighting Units – 136.1 - 174 
https://lightcommunitylighting.blogspot.com/p/outdoor-radial-waves-open-lighting.html

Electric Lighting Construction Sets - Miniature Outdoor Pendant/Bracket-Arm Radial Waves Lighting Units
http://lightcommunitylighting.blogspot.com/p/blog-page_31.html

















Outdoor Post-top Lighting Units

Outdoor Post-top Lighting Unit - Extended Large Size - 20.3"
https://lightcommunitylighting.blogspot.com/p/outdoor-post-top-lighting-unit-extended.html

Outdoor Post-top Lighting Unit – Large Size – 18"
https://lightcommunitylighting.blogspot.com/p/outdoor-post-top-lighting-unit-large.html

Outdoor Post-top Lighting Unit – Extended Large Size – E16"
https://lightcommunitylighting.blogspot.com/p/post-top-outdoor-lighting-fixture.html

Outdoor Post-top Lighting Unit – Inter Size – 369
https://lightcommunitylighting.blogspot.com/p/post-top-369-lighting-unit.html

Outdoor Post-top Lighting Unit - Medium Size - 14.1/14.3"
https://lightcommunitylighting.blogspot.com/p/post-top-outdoor-post-top-lighting-unit.html

Outdoor Post-top Lighting Units - Small Sizes – 10"-11"-12"
https://lightcommunitylighting.blogspot.com/p/outdoor-post-top-lighting-unit-small.html

Electric Lighting Construction Sets - Miniature Outdoor Post-top Lighting Units
https://lightcommunitylighting.blogspot.com/p/blog-page.html

Saturday, 22 June 2019

UNTITLED


ISLANDS and AREAS of LIGHT Infrastructure Development


Electricity HFAC Microgrid Papers - an Incunabulum for 'Alternative Power' Off-grid Communities







The hybrid DC/HFAC microgrid – a 2nd option for our Areas of Light


Subject under development...




https://ntrs.nasa.gov/archive/nasa/casi.ntrs.nasa.gov/19860018650.pdf


https://ntrs.nasa.gov/archive/nasa/casi.ntrs.nasa.gov/19860015276.pdf


Novel Ultra-High-Frequency AC Link Based Distributed Energy Systems and Microgrids
https://repository.lib.ncsu.edu/bitstream/handle/1840.16/9877/etd.pdf?sequence=1

A novel distributed PV system with ultra-high-frequncy-AC bus for residential applications 
https://ieeexplore.ieee.org/document/6953714


A Review of Power Electronics Based Microgrids 
https://vbn.aau.dk/ws/files/170816843/JPE_11076_1.pdf