The charts functionality allows: • Graphical comparison of deduced soil model with field measurements, for model acceptance • Color-coding of the surface potential gradients based on user-defined thresholds for touch or surface potentials. Any area of the grid can be selected with the mouse for detailed calculations and danger point evaluation • Equipotential contours for surface potentials in either 2-D or 3-D plots, with facilities to examine the graphs from any desired viewing angle • Graphics of touch and step voltage variation along any straight line, with comparison to the safe values computed by the safety assessment module • Graphic indications on the 2-D grid layout of the area being analyzed for touch and step voltages, for easy identification of hazardous locations.
The CYMDIST software performs several types of analysis on balanced or unbalanced three-phase, two-phase and single-phase systems that are operated in radial, looped or meshed configurations. The software includes a full, as well as: • Unbalanced load flow • Comprehensive fault analysis • Load balancing • Load allocation/estimation • Optimal capacitor placement The CYMDIST Distribution Analysis software is a suite of applications composed of a network editor, analysis modules and user-customizable model libraries from which you can choose to get the most powerful solution. The program is designed for planning studies and simulating the behavior of electrical distribution networks under different operating conditions and scenarios. It includes several built-in functions that are required for distribution network planning, operation and analysis. The software workspace is fully customizable. The graphical representation of network components, results and reports can be built and modified to supply the level of detail needed. Innovative engineering technologies, industry practices and standards are at the core of the CYMDIST algorithms, flexible user interface and extensive libraries.
The analysis functions such as load flow, short-circuit, and network optimizations are performed on balanced or unbalanced distribution network that are built with any combination of phases and configurations. Furthermore, the allows the environment of your choice to communicate with the CYMDIST software to access different pre-defined functions and calculations; and through, you can extend the functionalities of the CYME software. The CYMDIST software offers a wide variety of graphical reports and color-coding of the one-line diagram for over/under voltage conditions, overloaded equipment, isolated sections, fault levels, voltage levels, etc. The reporting facilities of the CYMDIST software allow to fully defining the analyses results into web reports.
The software includes a variety of report templates for all types of analyses. You can combine any reports, and create new ones, utilize any of the CYMDIST software variable and create your own mathematical expressions using any of those variables, which further extends the reporting possible. In addition, the software generates graphs of the phase voltage, fault current, reactive power and apparent power profiles from the substation to the selected section.
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•: to create, view and modify time-dependent projects (using the CYME Advanced Project Manager) consisting in modifications to the network such as the addition of any load at a given date, change/replacement of power transformers within a substation, a rephasing/reconductoring project, network switching or reconfiguration, etc. •: extensive tool that supports the collaborative and detailed preparation of a project that consists in modifications to the network with related simulations. •: to perform time range analysis based on a combination of historical consumption patterns and real-time monitoring. •: To analyze the unbalanced power flow and the voltages at every level of a distribution power system. •:provides a framework within which predictive and historical reliability assessment scenarios are run and the impacts of the related investment such as DA (Distribution Automation) can be evaluated and understood. •:facilitates the evaluation of the feasibility and the profitability of a project based on the factual system model. •: to simulate the dynamic behavior of distribution systems with distributed generation under various transient events (fault application/clearing, large motor starting, disconnection of co-generation units, islanding, etc.) •: to perform harmonic penetration analysis in electric power systems.
It features single phase and full three-phase modeling capabilities and includes a large library of pre-defined models for network equipment and harmonic current sources. The Frequency scan capability included in this module is also available as an independent module. This analysis provides full impedance scan results and allows the user to see problematic areas even before installing harmonic devices.
•: to analyze and promote the electrical safety for employees working on or near electrical equipment. It computes the necessary parameters required to assess the risk level and adopt the adequate safety procedures. •: to simulate the effects of induction and synchronous motor starting in three-phase electric power systems. •: to assist in power flow related static contingency analysis. To create contingency events and single- or multiple-outage scenarios and compare to a base case. •: time-series simulation to study the impact of insolation variations, wind fluctuations and load variations on network controls. •: addresses DER and load interconnection issues by determining the maximum allowable capacity that can be added at any point of the network without violating a set of constraints.
Allows to quickly assess the hosting capacity of the network and filter out interconnection requests that are non-compliant. •: the calculation method provides aggregate and granular hosting capacity results for each distribution feeder and considers numerous circuit-specific attributes. •: assists engineers in their generation interconnection system impact studies. Power Iso Download Torrent there. The analysis automates a series of time-consuming, repetitive and error-prone verifications and returns insightful results that clearly identify violations. •: to determine the acceptability of a new load or generator interconnection by evaluating its impact on a series of power quality criteria. •: assists in finding optimal settings for Volt/VAR control devices to optimize distribution networks. •: provides engineers with a wide range of tools to efficiently and accurately design and validate the coordination scheme of their power system.
•: to place regulators at locations to improve the network conditions based on selected objectives. •: to place reclosers at locations to improve the network conditions based on selected objectives.
•: assists in determining the optimal feeder configuration that will minimize losses, improve the voltage profile and balance the load between feeders. •: to study the impact of single forced or planned outages on the electrical distribution system and find the optimal switching plan to restore electrical power to priority customers and to recover the maximum possible load in the affected areas. •: to model all the major components of the distribution substation and any sub-network such as the detailed modeling of an industrial facility. •: allows the power flow and short circuit analyses of heavily meshed secondary network distribution systems for any voltage level. •: to model in detail low-voltage distribution systems within a one-line diagram. •: to display raster or vector map images (geographical land-base such as DWG, DXF, SHP, etc) as layers directly underneath the electrical model. •: complements the CYME Geographic Overlay module and provides the capability to display Google™ maps and MapQuest™ Open maps as layers underneath the geographical view of your electrical network model.
Complementary Modules. •: as a programming language-independent process, the CYME COM module allows the environment of your choice to communicate with the CYMDIST software to access different pre-defined functions and calculations. •: CYME Gateway is the CYME solution for the creation and maintenance of the network data model. The connectivity network extracted from the GIS is accurate, electrically complete, with actual loads and switch status; and this network model can be updated easily. •: this solution is an out-of-the-box toolbar that seamlessly integrates into the ArcGIS Desktop™ framework to embed power systems analytics into your GIS environment.
Along with the CYME Server solution, it offers powerful analytical ability, meeting the need for answers in a prompt manner. •: brings the CYME network model and analysis engines into your IT environment to facilitate the widespread and efficient use of this powerful engineering analysis tool. These advanced applications allow system operators to respond quickly and decisively to changing network conditions and threats while driving significant improvements in network efficiency and reliability. •: addresses Time Over-Current protection for Industrial, Commercial and Distribution Power systems. Features a direct interface to CYMDIST to verify the coordination of protective devices, the maximum permitted operating time («Reach») and the maximum permitted continuous load current.
How To Downgrade Graphics Drivers Amd on this page. The Arc Flash Hazards analysis module can be added to CYMTCC.