Monday, August 27, 2018

Distinguishing Features of all modules of XGSlab Grounding Studies Software

Excellent product with user friendly interface has made analysis of grounding studies, EMFI analysis and Lightning protection very much understandable for engineers to work on.

With powerful capability & extremely powerful algorithm XGSlab is amongst the best software which takes care of all the study associated projects for grounding studies of substations, HV powerline, Renewable energy projects, Offshore wind farms, Solar plant projects, and all the aspects of electrical design engineering projects related to studies in grounding domain.

Equipped with EN, IEEE-80 and IEC standards, it has a worldwide acceptance by ABB, SIEMENS, GE, ALSTOM, famous universities as well as utilities across the globe.

IEC, EN and IEEE Standards 

  • Soil Resistivity Analyzer suitable for both Wenner and Schlumberger measures 
  • Uniform Soil Model 
  • Double Layer Soil Model  
  • Multilayer Soil Model with an arbitrary layers number (* ML and research version) 
  • Multizone Soil Model 
  • Up to 99 Distinct Electrodes
  • Layout Graphical Input from “dxf” and Export to “dxf” files 
  • Integrated drawing tool  
  • Automatic Nodes Recognition 
  • Automatic Span Division and Conditioning 
  • Resistive Coupling  
  • Capacitive Coupling  
  • Inductive Coupling 
  • Self Impedance  
  • Soil Parameters Frequency Dependance  
  • Conductors with Potentials, Currents and Leakage Currents known and independent 
  • Catenary and Bundle Conductors 
  • Propagation Effects 
  • Under ground Systems
  • Calculation of Potentials and Touch and Step Voltages on and below the Soil Surface 
  • Calculation of Magnetic Fields on and above the Soil Surface 
  • Calculation of Electric Fields on and above the Soil Surface 
  • Above Ground Systems    
  • Frequency Domain Calculation 
  • Time Domain Calculation 

  • POSSIBLE APPLICATIONS Grounding (equipotential systems) 
  • Grounding (non equipotential systems) 
  • Cathodic Protection Systems 
  • Magnetic Field 
  • Electric Field 
  • Electromagnetic Interferences 
  • Fault Current Distribution 
  • Lightning
Visit www.xgslab.com for detail information or post your queries.

Sunday, July 8, 2018

Representation of important results considering GSA_FD of XGSlab- Earthing design software

XGSlab is a very user friendly software which is an innovation in itself. With the best computation speed for results it's one of the best software in the market. 

XGSlab represents the state of art which extraordinarily makes analysis of your grounding grid easier, and comprehensive.
GSA_FD can import the grounding layout of any substation or an electrical plant in a "dxf" file format.

XGSlab requires the following set of input data:

-Reference Standard (IEEE, EN, IEC)
-Soil Data (soil model and parameters)
-Layout Data (Geometry, Topology and cross-sections)
-Electrical data (Injected currents & imposed EMF)      

Considering a Basic Grounding layout of a steel factory with reference to substation, steel  and entrance. 

Legend at the extreme right hand side represents the core values of voltages and certain analysis parameters. You can click anywhere on the grid and get data inputs at any particular point considering the reference points ie ( Substation, steel factory or entrance). 

Representation of few results can be viewed below. 

1. Leakage current distribution. 


2. Potential Distribution


3. Earth Surface Potential Distribution 


This result can also be represented in a 3D view for better understanding.


Study analysis of GPR is utmost important parameter for analysing grounding grids.

4. Step and Touch Voltages- 

XGSlab considers safety of human life and analyses touch and step voltages very precisely to avoid any future casualty and danger to human life. 

Touch Voltage distribution


Step Voltage distribution 


5. Safe areas considering all reference points. 

In any case it is advisable to:
- Take some measurements of touch voltages to confirm if they overcome the limits in the actual condition. It must be borne in mind that the design of the grid here carried out under pessimistic hypotheses (on current values and soil resistivity etc…) may not substitute the measurements of step and touch voltages that must be taken according to the standard when the plant will be built.

- If the problem is confirmed by measurements,it is suggested to cover the area with bitumen if the presence of people is to be foreseen on the critical points.

6. Magnetic Field Distribution 


Magnetic Field distribution 3D View


GSA_FD can also calculate magnetic fields due to grounding systems or cable, and electromagnetic interference (induced current and potential due to resistive, capacitive and inductive coupling) between grounding systems or cable and pipeline or buried electrodes in general.

7. Line Cut 

You can cut the grid in any way you want, one of the most sought feature which gives you exact values for step and touch voltages, potentials etc.


Result of line calculations.








Thursday, July 5, 2018

Grounding Studies analysis using GSA_FD- Premium module for underground conductor studies


GSA_FD is a module for earth grid calculation and design in the frequency domain, including soil resistivity analysis and represents the state of the art of grounding software. It is also useful for magnetic field and electromagnetic interference evaluation & adopts a rigorous approach to the study of very large grounding systems where experience shows that the horizontal variations of the soil resistivity makes inefficient sophisticated soil models (multilayer).

In these cases, an accurate electric model of the electrodes including self and mutual impedances is fundamental. These parameters can be known with greater certainty than the soil resistivity because in the frequency range we are interested in, these parameters depend weakly on the soil properties.

Moreover, taking into account self and mutual impedance effects, allows to overcome the equipotential condition of the electrodes on which standard GSA is based.
This allows the analysis of electrodes whose size are comparable with the wavelength as better specified in the following.

A few competitors take into account self impedance and a very few competitors consider the mutual impedance effects and this can lead to significant errors in calculations.
With the equipotential condition hypothesis, the maximum touch voltage is widely underestimated and this may result in grounding system oversizing with additional cost sink even 50%. Neglecting the mutual impedances can lead to errors over the 20% in calculations. GSA_FD can allow a significant cost saving in grounding system construction and materials.
GSA_FD can be used in the frequency domain range from DC to 10 MHz and then the calculation accuracy gradually decreases but results are often reliable over 10 MHz and positive tests have been made up to 50 MHz.

GSA_FD can also import earth grid data from “dxf” files delivering professional numerical and graphical output useful for investigation of GPR and potential, current, leakage current, earth potential, touch and step voltage distributions.

In DC conditions GSA_FD is a good tool for cathodic protection and anode bed analysis with impressed current systems.

GSA_FD can also calculate magnetic fields due to grounding systems or cable, and electromagnetic interference (induced current and potential due to resistive, capacitive and inductive coupling) between grounding systems or cable and pipeline or buried electrodes in general.

Thursday, June 28, 2018

Introduction to the most awaited module of XGSlab "NETS"





NETS is a very flexible tool to solve full meshed multi conductors networks and is based on the n-phases system representation.

This approach is general and overcome the classic method of symmetrical components and can be used to represents power systems as multiconductors networks enabling the consideration of asymmetrical systems also in presence of grounding circuits or circuits with a different phases number.

The network components (generators, lines, cables, transformers, loads ..) are represented with n-ports cells and the connection between cells is obtained by means of n-ports buses.

NETS can be used to solve networks in steady state or fault conditions and to calculate voltages and currents or short circuit currents (three phase, phase to phase, phase to phase to earth, single phase to earth) with or without fault impedances.
In particular, NETS can be used for the calculation of the fault current distribution.

NETS is then a very useful tools to calculate data input for others XGSLab modules (for instance the split factor or the current to earth) and represents the link between XGSLab and the commercial software for power systems analysis.


For more information: Visit www.xgslab.com


Monday, June 25, 2018

Introduction to XGSlab Grounding design software


ELECTROMAGNETIC SIMULATION FOR POWER, GROUNDING AND LIGHTNING PROTECTION SYSTEMS

XGSLab is one of the most powerful software of electromagnetic simulation for power, grounding and lightning protection systems and the only software on the market that takes into account IEC, EN and IEEE Standards in grounding system analysis.

XGSLab includes the modules:

GSA (GROUNDING SYSTEM ANALYSIS) for basic application with underground systems
GSA_FD (GROUNDING SYSTEM ANALYSIS in the FREQUENCY DOMAIN) for general applications with underground systems
XGSA_FD (OVER AND UNDERGROUND SYSTEM ANALYSIS in the FREQUENCY DOMAIN) for general applications with overhead and underground systems
XGSA_TD (OVER AND UNDERGROUND SYSTEM ANALYSIS in the TIME DOMAIN) for general applications with overhead and underground systems
The new module NETS (Network Solver) is in progress

XGSLab integrates the module SRA (SOIL RESISTIVITY ANALYSIS) and XGSA_TD integrates also the module FA (FOURIER ANALYSIS direct / inverse).
The XGSLab application field is so wide because the implemented model is for general use and solves the Maxwell equations in non stationary conditions taking into account the earth lack of homogeneity by the Green functions, the earth reaction by the Sommerfeld integrals and moving from the frequency to the time domain by means the Fourier transforms.

All modules are integrated in an “all in one” package and based on a hybrid calculation method (or “PEEC” method) which considers transmission line, circuit and electromagnetic theory combined into a single calculation model. Hybrid methods join the strong points of the other methods and are well suited for engineering purposes because they allow the analysis of complex scenarios including external parameters such as voltages, currents and impedances. For these reasons, XGSLab can be considered a real laboratory.

All algorithms implemented in XGSLab are highly efficient in terms of computation speed and has been validated and tested by many Customers in the world.
XGSLab is easy to use by engineers who need not to be necessarily experts in the specific field, and moreover accurate, stable and fast.

For more information visit: www.xgslab.com

FAULT CURRENT DISTRIBUTION IN A MESHED NETWORK USING NETS MODULE Introduction to NETS : NETS is a very flexible tool to solve full mesh...