Integrated complex of means and systems of physical protection Indigirka.

integrirovannii kompleks sredstv i sistem fizicheskoi zas

Integrated complex of means and systems of physical protection Indigirka.

Integrated complex of means and systems of physical protection Indigirka

Integrated complex of means and systems of physical protection «Indigirka» Integrated complex of means and systems of physical protection «INDIGIRKA» is designed to create (manufacture and design) complex (integrated) security systems (physical protection systems — PPhZ) for critically important, potentially dangerous, industrial facilities, technological structures with harsh climatic and operational conditions.

PPhZ INDIGIRKA is an innovative solution «SIGMA-IS» for government and corporate customers.

The complex is based on the company's many years of experience in implementing integrated security systems for important government facilities (IGF) based on serially produced products of its own production and their support at all stages of creation and operation.

The INDIGIRKA SFZ IC includes all levels and systems required to ensure the security of objects of the highest and first categories of importance:
— the upper control level (monitoring center), implemented on the basis of its own integration software platform;
— information collection and processing system;
— a full set of object systems with the possibility of their autonomous operation;
— simple and flexible scaling of the complex using system expansion kits.

Advantages of choosing solutions based on the INDIGIRKA SFZ IC:
— turnkey delivery of the complex: equipment, installation materials, software, spare parts;
— prompt adaptation of serially produced elements of the complex in full compliance with customer requirements;
— support at all stages: assistance in developing technical specifications, design, delivery, installation, commissioning, training, service and routine maintenance.

Features

The IK SFZ «INDIGIRKA» is an open integrated software and hardware platform that allows for the creation of complex integrated security systems (SFZ) on a single basis.

The hardware base consists of devices from the ISB «Rubezh» kit in an extended configuration, special design and climatic performance, if necessary with customer acceptance.

The software base is the RM-3 software, a distributed integration software environment designed to build a single top level of various technological systems (fire, security, life support, «intelligent buildings», etc.).

The main feature is that with the help of the INDIGIRKA SFZ IC, it is possible to optimally integrate hardware and software of different types and different manufacturers into a single system.

The INDIGIRKA Scientific and Technical Plant has implemented a new principle of constructing a software platform and hardware base, combining flexibility and openness for integration with external systems (equipment of various types and different manufacturers) with high reliability and security in the software part — the software core of the system (program code), in the hardware base — with wide versatility of the basic set of modules and the possibility of their prompt revision (development of new ones) for specific customer tasks.

This is the next step in the promising direction of development of the principle of integration of security systems (and automated control systems — ACS in general) — the combination and development of the principles of «vertical» and «horizontal» integration.

«Vertical» integration is the unification of various types of subsystems (security alarm, fire alarm, access control, video surveillance, etc.) on a software and hardware platform.

«Horizontal» integration is the unification of equipment from different manufacturers within a single subsystem on a software platform.

This approach allows creating basic typical (and subsequently standard) solutions to problems of ensuring the safety of a wide range of objects (including critical, potentially dangerous, industrial objects, technological structures with severe climatic and operational conditions) based on customer requirements. This allows a new approach to the process of designing safety systems for objects.

The availability of basic standard solutions at the level of ready-made sets of products, structurally and electrically combined into complete technological racks, cabinets, etc. (functional modules — FM, control and management cabinets — SHKU, extension kits — KN, etc.) allows them to be used at the stage of project development as ready-made components of the upper level of systems, without the need to go into the details of the design of each module. This allows you to speed up and simplify the design process based on the final requirements of the customer. This also generally increases the reliability and quality of the system, since the FM is a finished product of serial production that has passed all tests and settings at the manufacturer.

Thus, the Scientific and Technical Plant «INDIGIRKA» offers a new method for solving design problems — based on the principles of serial industrial production, which ensures quality, reliability, deadlines and economic indicators inherent in serial production of products.

Scientific, technical, technological basis:

Using the latest technologies for creating software products, which allowed us to take out of the static part of the software system not only support for connected equipment, but also the entire user interface. This makes it possible, based on the built software model of the system, to connect any equipment from any manufacturer, as well as implement any type of user interfaces and applied automated workplaces. And also directly for consumers themselves to form the rules of the business logic of the system due to the mechanism of built-in scripts and dynamic construction of flowchart algorithms of work.

The same approach is used for hardware solutions as for the software part. The customer is offered not a fixed set of components, but a solution based on well-developed serially produced products, which ensures high quality at a low cost, but allows taking into account all customer requirements, using a modular approach to building the hardware part of the system.

Implementation principles:

1. Minimization of time costs and design resources.

The project is created by an expert (group) at the level of «security processes» — interaction of functional modules of the system — FM.

2. Application of ready-made (standard) design solutions.

Design documentation for FM is provided by the manufacturer in accordance with the general logic of the functioning of the PPS.

3. Comprehensive verification of design solutions.

Carried out at the manufacturer's enterprise on the VGO safety simulation stand.

4. Delivery of fully finished Functional Modules (FM).

FMs are structurally implemented in the form of control and monitoring cabinets — SHKU, in full compliance with customer requirements

5. Preliminary check of SHKU operability:

input — for each structural element;

output — functioning in various operating modes.

6. Delivery of a turnkey kit:

SHKU (including software); design documentation; a set of installation parts, materials and spare parts.

7. Minimization of installation work for SHKU installation.

The control units have different design options — indoors and outdoors (IP65).

8. Simplicity and convenience of control unit installation.

To integrate any functional module (control unit) into the FP system, it is sufficient to connect external devices (sensors, UI) and communication lines with the upper level to it.

9. Optimization of the process of complex commissioning of the SFZ IC.

Individual commissioning of each control unit is performed at the manufacturer's test bench.

10. Comprehensive testing of functionality.

The system as a whole and each FM and control unit are subject to a complete test in the mode of simulating abnormal and emergency situations. The imitation process is provided by special upper-level software — ID-RM3.

11. Remote change of the operating logic of each control panel

Can be carried out directly from the upper-level automated workplace of the SFZ IC.

12. Prompt modernization of any element of the system and expansion of the functional capabilities of the SFZ IC.

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