Innovating Works
SPIRE-01-2014
SPIRE-01-2014: Integrated Process Control
Scope:Specific challenge:Process control of the industrial operations has a major role in assuring high quality standards and optimal operations in terms of resource use and economic viability. Technological progresses in this area that could allow measuring properties of process streams and final products, accurately and in real-time could represent a major step forward towards more reliable and sustainable industrial operations. These real time process data (e.g. chemical composition or biological contamination data) could allow the implementation of “near real time” closed-loop process control concepts making it possible to operate industrial processes at their optimum both economically and ecologically while ensuring high level of safety.. To obtain real time process data, the development of reliable fast inline measurements will be fundamental. These measurements can easily be integrated into closed loop process control concepts, thus delivering the highest value and near real time process control for industrial operations and decision-making support tools, facilitated, for instance, by integrated databases covering measurements and computational data. The development of these new “near real time” integrated process control methods is particularly important considering the recently introduced intensified or modularised production concepts, e.g. presenting smaller continuously operated pieces of equipment or integration of process steps that pose new challenges for process analytics in terms of size and speed of analysis.
Sólo fondo perdido 0 €
Europeo
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Scope:Specific challenge:Process control of the industrial operations has a major role in assuring high quality standards and optimal operations in terms of resource use and economic viability. Technological progresses in this area that could allow measuring properties of process streams and final products, accurately and in real-time could represent a major step forward towards more reliable and sustainable industrial operations. These real time process data (e.g. chemical composition or biological contamination data) could allow the implementation of “near real time” closed-loop process control concepts making it possible to operate industrial processes at their optimum both economically and ecologically while ensuring high level of safety.. To obtain real time process data, the development of reliable fast inline measurements will be fundamental. These measurements can easily be integrated into closed loop process control concepts, thus delivering the highest value and near real time process control for industrial operations and decision-making support tools, facilitated, for instance, by integrated databases covering measurements and computational data. The development of these... ver más

Scope:Specific challenge:Process control of the industrial operations has a major role in assuring high quality standards and optimal operations in terms of resource use and economic viability. Technological progresses in this area that could allow measuring properties of process streams and final products, accurately and in real-time could represent a major step forward towards more reliable and sustainable industrial operations. These real time process data (e.g. chemical composition or biological contamination data) could allow the implementation of “near real time” closed-loop process control concepts making it possible to operate industrial processes at their optimum both economically and ecologically while ensuring high level of safety.. To obtain real time process data, the development of reliable fast inline measurements will be fundamental. These measurements can easily be integrated into closed loop process control concepts, thus delivering the highest value and near real time process control for industrial operations and decision-making support tools, facilitated, for instance, by integrated databases covering measurements and computational data. The development of these new “near real time” integrated process control methods is particularly important considering the recently introduced intensified or modularised production concepts, e.g. presenting smaller continuously operated pieces of equipment or integration of process steps that pose new challenges for process analytics in terms of size and speed of analysis.

Scope:

New technologies suitable for “near real time” integrated process control are expected to introduce significant novelties with respect to sensor technologies, data treatment and data mining, in particular:

-          Provision of dynamic information about product properties, stream characteristics and process conditions.

-          Provision of spatially resolved process data.

-          Data management for processes optimisation.

-          Sensors for intensified process technology.

-          Fast inline measurements (instead of extractive ones).

-          Robustness and reliability insuring minimum operation and maintenance costs.

Proposals submitted under this topic should address several aspects which are considered of major importance in this area; such as:

-          Cross-sectorial application of process analyser technology (PAT) and product measurement techniques (PPMT) in closed-loop process control capable of inline measurements.

-          Integration methodologies within a large number of production conditions.

-          Swarm sensors.

-          Development of new soft-sensors and sensing concepts and models for improved process control using PAT data for the measurement of properties and quality of process streams and final products.

-          Miniaturised PAT- and PPMT-based advanced control for intensified processes.

-          Disposable sensors in batch and in continuous processes.

-          Control strategies for flexible processes or disposable sensors using integrated and validated PAT data.

-          Process and Product life cycle management.

Proposals submitted under this topic are expected to demonstrate the proposed technologies and control systems in relevant industrial environments, to prove their technical feasibility and economic viability.

For this topic, proposals should include an outline of the initial exploitation and business plans, which will be developed further in the proposal project.

Activities expected to focus on Technology Readiness Levels 3-5. A significant participation of SMEs with R&D capacities is encouraged.

The Commission considers that proposals requesting a contribution from the EU between EUR 3 and 6 million would allow this specific challenge to be addressed appropriately. Nonetheless, this does not preclude submission and selection of proposals requesting other amounts.

Expected impact:

                     Improved capabilities for valid, reliable and real-time measurement of the properties and quality of process streams and final products for existing and for more flexible process operation concepts.

                     More sustainable plant operations due to the extensive usage of all information available from validated PAT and PPMT measurements for model based control.

                     Improved monitoring and control of continuous plants.

                     Improved support of the operators leading to safer, more reliable and sustainable process operation improving process efficiency.

                     Better process operations with respect to resource and energy efficiency.

                     Significant decrease in greenhouse gas emissions.

                     Strengthening of the competiveness of the European industry both in the domain of PAT technologies and control solutions and with respect to economically sustainable industrial processes.

                     Retention and creation of jobs for the European measurement and automation and process industries.

Type of action: Research & Innovation Actions


Cross-cutting Priorities:Contractual Public-Private Partnerships (cPPPs)SPIRE


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Temáticas Obligatorias del proyecto: Temática principal:

Características del consorcio

Ámbito Europeo : La ayuda es de ámbito europeo, puede aplicar a esta linea cualquier empresa que forme parte de la Comunidad Europea.
Tipo y tamaño de organizaciones: El diseño de consorcio necesario para la tramitación de esta ayuda necesita de:

Características del Proyecto

Requisitos de diseño: Duración:
Requisitos técnicos: Scope:Specific challenge:Process control of the industrial operations has a major role in assuring high quality standards and optimal operations in terms of resource use and economic viability. Technological progresses in this area that could allow measuring properties of process streams and final products, accurately and in real-time could represent a major step forward towards more reliable and sustainable industrial operations. These real time process data (e.g. chemical composition or biological contamination data) could allow the implementation of “near real time” closed-loop process control concepts making it possible to operate industrial processes at their optimum both economically and ecologically while ensuring high level of safety.. To obtain real time process data, the development of reliable fast inline measurements will be fundamental. These measurements can easily be integrated into closed loop process control concepts, thus delivering the highest value and near real time process control for industrial operations and decision-making support tools, facilitated, for instance, by integrated databases covering measurements and computational data. The development of these new “near real time” integrated process control methods is particularly important considering the recently introduced intensified or modularised production concepts, e.g. presenting smaller continuously operated pieces of equipment or integration of process steps that pose new challenges for proces... Scope:Specific challenge:Process control of the industrial operations has a major role in assuring high quality standards and optimal operations in terms of resource use and economic viability. Technological progresses in this area that could allow measuring properties of process streams and final products, accurately and in real-time could represent a major step forward towards more reliable and sustainable industrial operations. These real time process data (e.g. chemical composition or biological contamination data) could allow the implementation of “near real time” closed-loop process control concepts making it possible to operate industrial processes at their optimum both economically and ecologically while ensuring high level of safety.. To obtain real time process data, the development of reliable fast inline measurements will be fundamental. These measurements can easily be integrated into closed loop process control concepts, thus delivering the highest value and near real time process control for industrial operations and decision-making support tools, facilitated, for instance, by integrated databases covering measurements and computational data. The development of these new “near real time” integrated process control methods is particularly important considering the recently introduced intensified or modularised production concepts, e.g. presenting smaller continuously operated pieces of equipment or integration of process steps that pose new challenges for process analytics in terms of size and speed of analysis.
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Please read carefully all provisions below before the preparation of your application.
1. List of countries and applicable rules for funding: described in part A of the General Annexes of the General Work Programme.
2. Eligibility and admissibility conditions: described in part B and C of the General Annexes of the General Work Programme.
 
3. EVALUATION
3.1 Evaluation criteria and procedure, scoring and threshold: described in part H of the General Annexes of the General Work Programme, with the following exceptions: The threshold for the criteria Excellence and Impact will be 4. The overall threshold, applying to the sum of the three individual scores, will be 12.
In case of equal overall scores in the ranked list, the priority order of proposals will be established in accordance with part H of the General Annexes, except that proposals will be ranked on the basis of individual scores for the Impact criterion before the Excellence criterion.
3.2 Guide to the submission and evaluation process
 
4. Proposal page limits and layout: Please refer to Part B of the standard proposal template.
 
5. Indicative timetable for evaluation and grant agreement:
Information on the outcome of one-stage evaluation: maximum 5 months from the final date for submission.
Signature of grant agreements: maximum 3 months from the date of informing successful applicants.
 
6. Provisions, pr...
Please read carefully all provisions below before the preparation of your application.
1. List of countries and applicable rules for funding: described in part A of the General Annexes of the General Work Programme.
2. Eligibility and admissibility conditions: described in part B and C of the General Annexes of the General Work Programme.
 
3. EVALUATION
3.1 Evaluation criteria and procedure, scoring and threshold: described in part H of the General Annexes of the General Work Programme, with the following exceptions: The threshold for the criteria Excellence and Impact will be 4. The overall threshold, applying to the sum of the three individual scores, will be 12.
In case of equal overall scores in the ranked list, the priority order of proposals will be established in accordance with part H of the General Annexes, except that proposals will be ranked on the basis of individual scores for the Impact criterion before the Excellence criterion.
3.2 Guide to the submission and evaluation process
 
4. Proposal page limits and layout: Please refer to Part B of the standard proposal template.
 
5. Indicative timetable for evaluation and grant agreement:
Information on the outcome of one-stage evaluation: maximum 5 months from the final date for submission.
Signature of grant agreements: maximum 3 months from the date of informing successful applicants.
 
6. Provisions, proposal templates and evaluation forms for the type(s) of action(s) under this topic:
Research and Innovation Action:
Specific provisions and funding rates
Standard proposal template (administrative forms and structure of technical annex)
Standard evaluation form
Annotated Model Grant Agreement
 
7. Additional provisions:
Horizon 2020 budget flexibility
Classified information
Technology readiness levels (TRL) – where a topic description refers to TRL, these definitions apply.
Financial support to Third Parties – where a topic description foresees financial support to Third Parties, these provisions apply.
 
8. Open access must be granted to all scientific publications resulting from Horizon 2020 actions, and proposals must refer to measures envisaged. Where relevant, proposals should also provide information on how the participants will manage the research data generated and/or collected during the project, such as details on what types of data the project will generate, whether and how this data will be exploited or made accessible for verification and re-use, and how it will be curated and preserved.
 
Garantías:
No exige Garantías
No existen condiciones financieras para el beneficiario.

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