Showing posts with label Smart. Show all posts
Showing posts with label Smart. Show all posts

Wednesday, February 17, 2021

Smart Grids & Testing languages

 

Smart Grids & Testing languages

Smart Grids

INTRODUCTION

A Smart Grid is a strong community that may fee correctly combine the behaviour and moves of all users related to it – generators, purchasers and people that do each – in an effort to make sure economically green, sustainable electricity device with low losses and high tiers of excellent and protection of delivering and protection.   howtoincreasedomainauthority

informationntechnology

Standardization request M/490 on Smart Grids

The CEN-CENELEC-ETSI Smart Energy Grid Coordination Group (CG-SEG) is the point of interest and maintain to cooperate with EC (DG ENERGY) Smart Grids Task Force (EC SGTF) that include Experts Groups:

Expert Group 1 – Smart grid standards

Expert Group 2 – Regulatory recommendations for privateness, information safety and cyber-protection in the clever grid environment

Expert Group three – Regulatory tips for smart grid deployment

Expert Group 4 – Smart grid infrastructure deployment

Expert Group five – Implementation of clever grid commercial policy

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OUR ROLE & ACTIVITIES

Our Smart Machine-to-Machine communications Technical Committee (TC SmartM2M) actively supports the oneM2M global initiative, specifically with regards to European Commission (EC) driven sports, bridging the EC’s wishes in the M2M/IoT place and the technical work in oneM2M and different ETSI sports.

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TC SmartM2M attention is on a utility-impartial ‘horizontal’ service platform with architecture capable of helping a totally wide variety of services which includes Smart Metering, Smart Grids, eHealth, Smart Cities, client programs, automobile automation, Smart Applications (SAREF).

Initially, Smart Appliances have been specific on request of EC DG Connect. The Smart Appliances specs were based on the oneM2M communication framework (TS 103 267) complemented with Smart Appliance REFerence (this is now Smart Applications REFerence, SAREF v3 TS 103 264) ontology. SAREF work has contributed to the principles of the base ontology of oneM2M Release 2.

TC SmartM2M advanced "SAREF ontology and oneM2M Mapping requirements" and Smart Appliance testing requirements. For SAREF extension research in the power area (TS 103 410-1), direct inputs from EEBus and Energy@home were protected in TC SmartM2M trends wherein Energy, Environment and Building sectors were part of the first SAREF normative paintings. Then more SAREF extensions were developed for Smart City, Industry and Manufacturing, Smart Agri-Food, Automotive, eHealth and Ageing-Well Wearables and Smart Water. SAREF for Smart Lift is under creation.

SAREF is diagnosed as the key enabler of IoT Semantic Interoperability with a growing set of enabling posted requirements (find standards in seek ETSI standards with the keyword SAREF).

CG-SEG lead and different ETSI Groups worried in Smart Grids

In the start, ETSI Smart Machine-to-Machine communications Technical Committee (TC SmartM2M) has been the lead ETSI Technical Body/TB for the coordination of ETSI's responses to the EC standardization request on Smart Grids (M/490). This lead role has been passed over to Technical Committee for Access, Terminals, Transmission and Multiplexing (ATTM) this is now the principle ETSI access point of ETSI participation in CEN/CENELEC/ETSI Smart Energy Grid Coordination Group (CG-SEG) with different ETSI TBs that indicated their hobby to participate in CG-SEG (TC ATTM, TC SmartM2M, ISG OEU, TC EE, TC CYBER).

Testing languages

INTRODUCTION

ETSI take a look at specifications are as a rule developed consistent with the properly-tested method described in ISO/IEC 9646. The method recommends that the test specifications encompass Test Purposes, Test Descriptions and Test Cases.

Test Purposes (TP) provide a smooth-to-examine self-contained description of each take a look at, concentrating on what's to be tested in place of how the actual take a look at may be completed. They are derived from the relevant base requirements and are developed, drastically mentioned and accredited in a standardization group.

Test Descriptions (TD) offer an in-depth specification of the manner they take a look at want to be finished. They are developed by means of checking out specialists and authorised in a standardization group.

Test Cases are written in a programing language that is devoted to testing. Test cases are evolved via testing experts, confirmed to work nicely and then formally approved through a standardization institution.

OUR ROLE & ACTIVITIES

The take a look at specs are written the usage of the languages which are standardized by ETSI TC MTS for that purpose.

Test Description Language (TDL)

TDL can be used both to specify the Test functions and Test Descriptions. For all information on TDL, please study a dedicated internet website online tdl.Etsi.Org/. On the website, you may find a TDL webinar, the TDL tutorials and will find out the TDL Open Source undertaking (TOP).

Testing and Test Control Notation Version three (TTCN-three)

TTCN-3 is used to put in writing Test Cases that form ETSI Test Suites. For all statistics on TTCN-3, please examine www.Ttcn-3.Org. The devoted ttcn-3 web site will provide you with updated facts on the language itself in addition to how and in which it's far being used.

Smart Metering

Smart Metering

INTRODUCTION

A clever meter is an electronic device that information consumption of power, gasoline or water and communicates that records for tracking and billing. Smart meters ship meter readings to the software employer robotically. They also include in-home presentations, which give users actual-time comments on their power or water usage besides what it is estimated.

The EU Directives about common rules for the internal marketplace for strength and gas and the EU Directive on electricity performance require the Member States to make certain the implementation of 'shrewd metering structures' that shall assist the lively participation of clients within the electricity marketplace. The European Command and EFTA mandated CEN, CENELEC and ETSI (Mandate M/441) in 2009 to expand an open structure for utility meters involving conversation protocols enabling interoperability (smart metering).

Privacy and Security approach – an element I

The report describes an approach to define privateness and protection requirements for Smart Metering and the reputation of labour done by way of CEN, CENELEC and ETSI on the incorporation of protection mechanisms to the requirements

Privacy and Security method – part II

The document describes a repository of necessities applicable in special Member States and compares tactics on security certification schemes for Smart Metering.

Privacy and Security approach – part III

The 1/3 file accommodates a description of a repository of security threats, pointers regarding security certification and a replace of the repute of labour achieved by CEN, CENELEC and ETSI.

Privacy and Security technique – component IV

CG-SM advanced a Smart Meter Protection Shape. This Protection Profile resolve is transferred to CEN/CLC JTC thirteen with the settlement that, if an upgrade is achieved, then CEN/CLC JTC thirteen will cooperate with TC CYBER, the usage of the mode four cooperation procedure, to problematic such update.

The institution (now referred to as the CEN/CENELEC/ETSI CG on Smart Meters (CG-SM)) maintains to give entry to the development and protection of latest and present standards for strengthening metering infrastructures in the guide of the European roll-out of clever meters.

OUR ROLE & ACTIVITIES

CG-SM lead and other ETSI Groups worried in Keen Metering

In the beginning, (TC SmartM2M) ETSI Smart Machine-to-Machine communications Technical Committee has been the lead (TB) Technical Body for the coordination of ETSI's responses to the EC standardization request on Smart Metering (M/441). This lead position has been exceeded over to Technical Committee for Access, Terminals, Transmission and Multiplexing (ATTM) this is now the principle ETSI access point of ETSI participation in CEN/CENELEC/ETSI Smart Metering Coordination Group (CG-SM) with different ETSI TBs that indicated their hobby to participate in

The Co-ordination Collection on Keen Meters (CG-SM) works carefully with Smart Energy Grids Coordination Group - CG-SEG.

Smart Metering and SAREF

Our Smart Machine-to-Machine infrastructures Technical Committee (TC SmartM2M) actively helps the oneM2M international initiative, mainly with regards to European Commission (EC) pushed sports, bridging the EC’s desires inside the M2M/IoT area and the technical paintings in oneM2M and different ETSI activities.

TC SmartM2M attention is on a utility-unbiased ‘horizontal’ service platform with a structure able to assist a very wide range of offerings along with Smart Metering, Smart Grids, eHealth, Smart Cities, patron packages, vehicle automation and Smart Applications (SAREF).

Initially, Smart Appliances had been special on request of EC DG Connect. The Smart Appliances specs have been based totally at the oneM2M communication framework (TS 103 267) complemented with Smart Appliance REFerence (this is now Smart Applications REFerence, SAREF V3 TS 103 264) ontology. SAREF work has donated to the foundations of the bottom ontology of oneM2M Release 2.

TC SmartM2M advanced "SAREF ontology and oneM2M Mapping standards" and Smart Appliance testing standards. For SAREF extension investigation in the energy area (TS 103 410-1), direct inputs from EEBus and Energy@home had been blanketed in TC SmartM2M tendencies wherein Energy, Environment and Building sectors had been a part of the primary SAREF normative work. Then more SAREF extensions have been developed for Smart City, Industry and Manufacturing, Smart Agri-Food, Automotive, eHealth and Ageing-Well Wearables and Smart Water. SAREF for Smart Lift is under creation.

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Smart cities

 

Smart cities

INTRODUCTION

Today more than half of the arena’s population lives in urban regions, and this discern is anticipated to rise much in the coming years.

This places new demands on key metropolis services and infrastructures such as transport, electricity, health care, water and waste management.

Information and Communications Technologies (ICT) play a   fashionbeautypalace  critical function in connecting those assets, securely coping with the large amounts of facts generated, and providing the relevant services which might be required.

A ‘clever city’ uses digital technology to:

·        interact more efficaciously and actively  techgeeksblogger  with its residents

·        enhance the town performance and the wellness of the citizens

·        reduce operational prices and the metropolis aid consumption

·        generate new enterprise possibilities and boom the elegance of the city

·        and much greater ...

The introduction of smart towns will only be   triotechdigital   carried out with a holistic approach, supported by means of globally perfect standards that enable absolutely interoperable solutions that may be deployed and replicated at scale.

CEN-CENELEC-ETSI Sector Opportunity on Smart and Sustainable Cities and Communities

The duties of the organization consist of:

·        Liaise with applicable worldwide initiatives   computertechreviews  (i.E. ISO, IEC and ITU) and prepare an overview on appropriate standards already publicly to be had at countrywide, European and international level

·        Analyse and recommend requirements for improvement,   gethealthandbeauty   implementation, variation, or revision by way of CEN, CENELEC and ETSI

·        Organize events on standardization sports for smart and sustainable cities open to relevant stakeholders in order to collect needs and excellent percentage exercise

·        Liaise and coordinate with relevant European projects (together with as an example the European Innovation Partnership (EIP) on Smart Cities)

·        Identify and give due attention to European innovation/research tasks which might have an impact

·        Advise stakeholders on any strategic issues and trends regarding standardization on SSCC

·        Inform on modern-day legislative traits happening at the EC stage (if any) and on the reputation of standardization work undertaken by way of relevant European Technical Bodies

·        Propose moves to raise the attention of the ESOs at the importance of standards as a key detail for smart and sustainable development of towns and groups across Europe

OUR ROLE & ACTIVITIES

We are running on several factors of smart towns:

Machine-to-Machine (M2M) communications

M2M communications will form the muse layer for our destiny world of clever gadgets, smart appliances (clever applications/SAREF), the smart domestic and clever towns. Among other matters, in 2015, our Smart M2M committee (TC SmartM2M) has analyzed the impact of clever cities on the Internet of Things in an ETSI Technical Report (TR 103 290). Nowadays, Smart Cities has ended up the maximum crucial interoperability Use Case for the Internet of Things since it's miles by means of default requiring cross-area interworking. SmartM2M offers (with oneM2M that collaborates with 3GGP) a complete standardization-based answer such as, among different, IoT Semantic Interoperability (SAREF).

Much of the effort relating to M2M in ETSI takes vicinity in our global requirements initiative oneM2M that is growing technical specifications for a common M2M Service Layer that can be effortlessly embedded inside various hardware and software and relied upon to attach the myriad of gadgets in the field with M2M utility servers global.

The oneM2M requirements cover necessities, structure, utility programming interface (API) specifications, security answers and mapping to common industry protocols together with CoAP, MQTT and HTTP. By constructing upon well-tested protocols that allow programs across enterprise segments to speak with each different, oneM2Mallows provider vendors to combine exclusive IoT gadgets, technology and applications, a critical characteristic of their efforts to offer services across a number of industries. OneM2M has already been used in service issuer deployments in South Korea, Asia and Europe for clever metropolis and transport device deployments.

Green keen cities

Our Access, Stations, Transmission and Multiplexing committee (TC ATTM) and mainly the running institution ATTM SDMC (Sustainable Digital Multiservice Communities) is operating toward the advent, development and upkeep of requirements relating to the relationship among deployment of ICT structures and implementation of services inside cities and groups. This committee is employed in an efficient ICT waste organization in sustainable communities.

Our Industry Plan Group on Operational electricity Efficiency for Users (ISG OEU) is helping the development of standards for efficient, sustainable groups, e.G. Green engineering and worldwide Key Performance Indicators for inexperienced smart towns, covering both residential and office environments.

Context Information Management

Our Industry Specification Group on pass-region Context Information Management (ISG CIM) develops technical specifications and reviews to permit more than one organizations to expand interoperable software implementations of a cross-cutting Context Information Management (CIM) layer, for smart cities programs and beyond.

Standardization to satisfy citizen and customer necessities

Standards are difficult for cities within the first location, and the wishes of the citizen consisting of:

·        usability

·        accessibility, or

·        facts security

are not often taken under consideration.

ETSI’s Human Factors Technical Committee has unconfined a Technical Report giving a top-level view of standardization referring to the needs of the population of (or traffic to) clever cities and groups. The Report explores how links among local communities and standardization may be stepped forward and make suitable recommendations to standards bodies, cities and coverage-makers.

Smart Body Area Networks & Smart Cards

 

Smart Body Area Networks & Smart Cards

INTRODUCTION

Body Area Network (BAN) era is the use of small, low strength wireless gadgets that can be carried or embedded inside or on the frame. Applications encompass:

·        fitness and wellbeing tracking

·        sports activities education (e.G. To degree performance)

·        personalized medicinal drug (e.G. Coronary heart video display units)

·        private protection (e.G. Fall detection)

A range of wireless BAN communication technologies was implemented, primarily based on existing radio technologies. However, if the BAN era is to obtain its complete potential, there may be a want for an extra unique and dedicated era optimized for BAN. For example, answers for monitoring human beings during workouts one or two hours a day, a few days a week, may not be suitable for twenty-four/7 monitoring as part of the Internet of Things (IoT).

Such a devoted BAN generation would want features such as:

·        ultra-low-power radio, with a lower complexity Medium Access Control (MAC) protocol for extended autonomy

·        better robustness in the presence of interference

·        interoperability while communicating over heterogeneous networks inside the destiny IoT

OUR ROLE & ACTIVITIES

Smart Body Area Network (BAN) generation makes use of small, low strength devices to help various scientific, fitness improvement, non-public protection, and health, recreation, and leisure applications. However, numerous challenges were identified which hinder the improvement of BAN communications. For example, solutions that may be suitable for tracking humans in the course of exercise one or hours a day, some days per week, fall quick of what is wanted for twenty-four/7 tracking inside the Internet of Things (IoT). A number of wi-fi BAN conversation technology were implemented, primarily based on existing radio technologies. However, there may be a need for an extra specific and devoted technology, optimized for BAN. This would require the inclusion of features along with ultra-low energy radio, with a decreased complexity Medium Access Control (MAC) protocol for prolonged autonomy, improved robustness inside the presence of interference, and interoperability whilst speaking over heterogeneous networks in the IoT. Other key problems to be addressed consist of Quality of Service and protection.

ETSI TC SmartBAN has primary the obligation to expand and to preserve ETSI Standards, Specifications, Reports, Guides, and other deliverables to guide the improvement and implementation of all Smart Body Area Network technology (Wireless BAN, Personal BAN, Personal Networks, and so forth.) in the software areas: fitness, well-being, entertainment, sport, and different applicable domain names

Its scope includes communique media, and associated bodily layer, network layer, protection, QoS and lawful intercept, and also provision of conventional applications and services (e.G. Net) for standardisation in place of Body Network Area technologies.

Future SmartBANs will exist inside an IoT surroundings. Noting this coexistence, ETSI TC SmartBAN prolonged its paintings thru contributions to numerous our bodies each within ETSI (such as SmartM2M and ERM TG 30), in addition to external our bodies together with AIOTI (Alliance for the Internet of Things Innovation), IEC SyC AAL (Active Assisted Living), Bluetooth Special Interest Group (BT SIG), H2020 ACTIVATE (Active & Healthy Ageing IoT based answers and services totally) and the ITEA’s CareWare assignment.

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Smart Cards

INTRODUCTION

Smart Cards are microprocessor-equipped tokens, able to process and keep a numerous range of packages and facts. They are used as credit playing cards, banking cards are preferred, ID playing cards, and mainly as SIMs in cell telecommunications. Several billion SIMs have long gone into the marketplace each yr now for quite a number of years. While the early Subscriber Identity Modules, as SIMs are truly known as, were advanced by using an ETSI committee being a predecessor of TC SCP, these days’ SIMs include the underlying clever card platform, referred to as the UICC, advanced through TC SCP and, on top of this platform, the application developed through 3GPP.

Not all SIMs going into the market nowadays have the shape of a “card.” The length of the first actual SIMs has contracted and gotten smaller over time. Some SIMs in recent times come within the shape of Surface Mounted Devices (SMDs) or maybe simply chips (being embedded into a watch); security and functionality are the vital elements. So TC SCP is now considering Secure Elements, of which clever cards are only a unique case. Secure Elements can, as an instance, also be integrated into a System on Chip (SoC) solution because the present-day paintings of TC SCP indicate.

OUR ROLE & ACTIVITIES

The ETSI Smart Card Platform (UICC)

TC SCP changed into set up in April 2000 to create a crucial awareness factor for the standardization of a not unusual IC card platform for cellular telecommunication structures, permitting participation from companies not necessarily worried about GSM & 3GPPTM standards.

The essential subject matter in the early days of TC SCP turned into hence to separate the underlying security platform, what has become called the UICC, from the software itself, e.G., the SIM. The aim turned into to create a sequence of specifications for a Smart Card Platform on which different enterprise sectors can base their device-particular applications to gain compatibility between all applications resident at the Smart Card. The almost 50 specs we evolved to attain this reason are usual and application-agnostic. As such, they may be used for any application designed to live on the UICC. They have hence discovered their manner into different programs such as ID control, and the contactless interface distinctive by means of TC SCP is utilized in economic services. For example, our core platform specification defining the interface between a UICC and a terminal (TS 102 221) is likewise one of the mandated specifications for the smart meter paintings item of EC and EFTA (M/441). As one of the only a few standardizations, our bodies, ETSI TC SCP, also developed check specs for its middle files to help to attain developing interoperable implementations.

TC SCP continues retaining and upgrading the UICC specifications for the Smart Card Platform. The latest work on this ongoing method is the usage of the contactless interface of the UICC for programs making use of the UWB (Ultra-Wide Band) era.

The ETSI Smart Secure Platform (SSP)

Clearly, the starting place of the UICC dates back a few many techqueer years, and generation is changing all the time. Though the UICC nonetheless satisfies the (security) necessities of nowadays’s global, TC SCP began a couple of years ago to think about a brand new security platform, the next technology Smart Secure Platform or, for the brief, SSP. Everything changed into to be re-considered, from architecture and form thing to move protocol and report device, by no means forgetting the general overall performance and the atmosphere it operates in.

TC SCP has published so far four specifications for the SSP. They cover digitalknowledgetoday the requirements, the general technical characteristics, the mixing of the Secure Element right into a System on Chip (SoC) answer and, as the first protocol between the Smart Secure Platform and the out of doors international, the Serial Peripheral Interface (SPI). Further specifications together with the embedded and the removable Smart Secure Platform as well as the I2C interface will comply within due course. As for the UICC, TC SCP is growing check specifications for all of these.

Trust and privateness in IoT are crucial marketplace drivers for IoT  healthnutritionhints  and applications counting on the ones. As such, our new-generation Smart Secure Platform will make contributions appreciably to attaining these desires.

3GPP work on SIM card and USIM evolution

The 3GPP Core Network and Terminals specialists in Working smartdiethealth Group CT6 - is responsible for paintings at the SIM (utilized by 2G), the USIM (Universal SIM) for 3GPP systems (3G, 4G(LTE), 5G), and the ISIM healthfitnesschampion (IM Services Identity Module) for the IMS area and the HPSIM (Hosting Party Subscription Identity Module) for H(e)NB.

Short Range Devices & Smart appliances and SAREF

 

Short Range Devices & Smart appliances and SAREF

Short Range Devices

INTRODUCTION

Short Range Devices (SRD) are radio gadgets that provide a low threat of interference with different radio offerings, typically because of their transmitted energy, and for this reason, their range is low. The definition 'Short Range Device' may be applied to many exceptional kinds of wi-fi system, together with various types of:

·        Access manipulate (along with door and gate openers)

·        Alarms and movement detectors

·        Closed-circuit tv (CCTV)

·        Cordless audio gadgets, including wireless microphones

·        Industrial manipulate

·        Local Area Networks

·        Medical implants

·        Metering gadgets

·        Remote manipulate

·        Radiofrequency identification (RFID)

·        Road Transport Telematics

·        Telemetry.

Short variety gadgets often benefit  computersmarketing from a cozy regulatory regime in comparison with different radio communications gadgets.  As a popular principle, a person is license-free to operate such equipment; a few particular cases may additionally require a man or woman license.

However, like all radio systems, quick-variety gadgets must meet hollyhealthfitness the Radio Equipment Directive (RED) to be located in the marketplace within the European Community. The operation of the device is difficult to the frequency control policies of the applicable member state.

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OUR ROLE & ACTIVITIES

ETSI technical committee ERM prepares and  webtechgalaxy keeps Harmonised Standards for:

·        SRD running inside the frequency variety 25 MHz to at least one 000 MHz (EN 300 220 series, EN 303 406, 303 204), such as SRD in records networks (EN 303 659) and Wideband statistics transmission SRD (EN 304 220)

·        SRD working inside the frequency range 1 GHz to forty GHz (EN 300 440 series)

·        SRD for railways (EN302 608 and EN 302 609)

·        avalanche beacon (EN 300 718-1)

·        RFID (EN 302 208)

·        SRD cover spectrum underneath 9 kHz like Robotic Mowers (EN303 447), Metal sensors (EN 303 454), Nuclear Magnetic Resonance (NMR) technology  healthbeautystudio (EN 303 658), and Inductive gluing structures (EN 303 734)

If new frequency bands are allotted to SRD, then ETSI TC ERM will maximum possibly work on corresponding Harmonised Standards.

Regulations on short-range devices

The European countrywide Administrations, who are members of the European Conference of Postal and Telecommunications Administrations (CEPT), collaborate with the CEPT Electronic Communications Committee (ECC) to harmonize their country-wide policies. The ECC Short Range Devices Maintenance Group continues Recommendation 70-03, which CEPT Administrations are endorsed to put into effect with the intention to maximize freedom of movement for radiocommunications system.

ETSI has a Memorandum of Understanding with ECC, wherein the two corporations work together to encourage the most freedom of movement for devices meeting essential technical requirements laid down in Harmonised Standards. ETSI is also a lively observer in the Radio Spectrum Committee of the European Commission, which is developing a Commission Decision to offer felony actuality to frequency allocations for short-range gadgets in the EU Member States (see our Radio page additionally).

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Smart appliances and SAREF

INTRODUCTION

Smart Appliances

Currently, household appliances are liable for approximately thirds of the strength ate up by way of homes. Industrial home equipment also is the foremost strength of customers.

In the destiny, home and commercial appliances will be sensible, clever networked devices, forming entire electricity eating, producing, and coping with structures, based on the combination of products from extraordinary providers and vertical commercial sectors. The need for this kind of connected home equipment a good way to communicate among themselves and with the service structures desires to be addressed. This requires open interfaces. Interoperability is accordingly a key issue in growing IoT surroundings, and the supply of a standardized answer, in conjunction with associated test suites, maybe the vital enabler of the Internet of Things (IoT).

Smart appliances include white items, heating, airflow, and air-con systems, and garage systems.

To ensure such structures are technically and commercially a hit – and broadly followed – it ought to be viable to mix home equipment from specific vendors. These systems can even need to be able to communicate with carrier platforms from one-of-a-kind energy service companies with the intention to manipulate and control electricity use.

The EC, as a first step, diagnosed a direct need of the modern-day marketplace to lessen the energy usage by way of managing and controlling Smart Appliances (as an instance, in a house or a workplace constructing) on a machining degree. In precise, the Industry and the EC raised the want for a not unusual structure with standardized interfaces and a common information model to guarantee interoperability. Without those two additives, the modern-day market would stay fragmented and powerless. Therefore, the development of a reference ontology became centered as the main interoperability enabler for appliances applicable for strength performance.

From Smart Appliances to Smart Applications

Smart Appliances REFerence ontology (SAREF V1) turned into common to a few domain names (Energy, Environment, and Buildings), the first middle of SAREF (mapped into three packages’ domains) has been stepped forward (SAREF V2, then V3) to allow mapping of SAREF with more Smart Applications domains (Smart City, Smart Industry and Manufacturing, Smart Agri-Food, Automotive, eHealth and Ageing-Well, Wearables, Smart Water, Smart Lift…). Like this, SAREF has become Smart Applications REFerence ontology (core SAREF) with its area mapping extensions.

OUR ROLE & ACTIVITIES

ETSI Smart Machine-to-Machine communications Technical Committee (TC SmartM2M) actively helps the oneM2M global initiative, especially on the subject of European Commission (EC) pushed activities, bridging the EC’s needs in the M2M/IoT location and the technical paintings in oneM2M and other ETSI activities.

Our TC SmartM2M consciousness is on an application-independent ‘horizontal’ provider platform with a structure able to assist a very extensive range of services such as smart metering, smart grids, eHealth, smart towns, customer packages, car automation, smart appliances, and Smart Applications (SAREF).

Initially, Smart Appliances were distinctive on request of EC DG Connect. The Smart Appliances specifications had been primarily based on the oneM2M communique framework (TS 103 267) complemented with Smart Appliance REFerence (this is now Smart Applications REFerence, SAREF V3 TS 103 264) ontology. SAREF paintings have contributed to the principles of the bottom ontology of oneM2M Release 2.

TC SmartM2M advanced “SAREF ontology and oneM2M Mapping requirements” and Smart Appliance checking out standards. For SAREF extension research within the energy area (TS 103 410-1), direct input from EEBus and Energy@domestic has been covered in TC SmartM2M tendencies where Energy, Environment, and Building sectors had been a part of normative paintings. Then extra SAREF extensions had been developed for Smart City, Industry and Manufacturing, Smart Agri-Food, Automotive, eHealth and Ageing-Well Wearables and Smart Water. SAREF for Smart Lift is under construction.

From Smart Meters, Smart Appliances, Smart Energy Grids to Smart Applications, SAREF is identified as a key enabler of IoT Semantic Interoperability with a developing set of allowing published standards (search ETSI requirements with the key-word SAREF).

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