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BS EN ISO 14906:2023

$215.11

Electronic fee collection. Application interface definition for dedicated short-range communication

Published By Publication Date Number of Pages
BSI 2023 132
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This document specifies the application interface in the context of electronic fee collection (EFC) systems using dedicated short-range communication (DSRC). The EFC application interface is the EFC application process interface to the DSRC application layer, as can be seen in Figure 1. This document comprises specifications of: ā€”     EFC attributes (i.e. EFC application information) that can also be used for other applications and/or interfaces; ā€”    the addressing procedures of EFC attributes and (hardware) components (e.g. integrated circuit(s) card); ā€”    EFC application functions, i.e. further qualification of actions by definitions of the concerned services, assignment of associated ActionType values, and content and meaning of action parameters; ā€”    the EFC transaction model, which defines the common elements and steps of any EFC transaction; ā€”    the behaviour of the interface so as to ensure interoperability on an EFC-DSRC application interface level. This is an interface standard, adhering to the open systems interconnection (OSI) philosophy (see ISO/IEC 7498-1), and it is as such not primarily concerned with the implementation choices to be realized at either side of the interface. This document provides security-specific functionality as place holders (data and functions) to enable the implementation of secure EFC transactions. Yet the specification of the security policy (including specific security algorithms and key management) remains at the discretion and under the control of the EFC operator, and hence is outside the scope of this document.

PDF Catalog

PDF Pages PDF Title
2 undefined
4 European foreword
Endorsement notice
7 Foreword
8 Introduction
11 1 Scope
12 2 Normative references
3 Terms and definitions
14 4 Abbreviated terms
16 5 EFC application interface architecture
5.1 Relation to the DSRC communication architecture
18 5.2 Usage of DSRC application layer by the EFC application interface
5.3 Addressing of EFC attributes
5.3.1 Basic mechanism
19 5.3.2 Role of the Element Identifier (EID)
5.3.3 Multiple instances of Attributes
20 5.4 Addressing of components
21 6 EFC transaction model
6.1 General
6.2 Initialisation phase
6.2.1 Overview
22 6.2.2 EFC application-specific contents of the BST
23 6.2.3 EFC application-specific contents of the VST
24 6.3 Transaction phase
25 7 EFC functions
7.1 Overview and general concepts
7.1.1 EFC functions and service primitives
26 7.1.2 Overview of EFC functions
27 7.1.3 Handling of multiple instances
29 7.1.4 Security
32 7.2 EFC functions
7.2.1 General
7.2.2 GET_STAMPED
33 7.2.3 SET_STAMPED
34 7.2.4 GET_SECURE
35 7.2.5 SET_SECURE
7.2.6 GET_INSTANCE
36 7.2.7 SET_INSTANCE
37 7.2.8 GET_NONCE
38 7.2.9 SET_NONCE
7.2.10 TRANSFER_CHANNEL
39 7.2.11 COPY
40 7.2.12 SET_MMI
7.2.13 SUBTRACT
41 7.2.14 ADD
42 7.2.15 DEBIT
43 7.2.16 CREDIT
44 7.2.17 ECHO
8 EFC Attributes
8.1 General
46 8.2 Data group contract
49 8.3 Data group receipt
55 8.4 Data group vehicle
60 8.5 Data group equipment
62 8.6 Data group driver
64 8.7 Data group payment
66 Annex A (normative) EFC data type specifications
67 Annex B (informative) CARDME transaction
99 Annex C (informative) Examples of EFC transaction types
111 Annex D (informative) Mapping table from LatinAlphabetNo2, LatinCyrillicAlphabet, LatinGreekAlphabet and LatinAlphabetNo10 to LatinAlphabetNo1
112 Annex E (informative) Mapping table between EFC Vehicledata attribute and European registration certificate
115 Annex F (normative) Security calculations for DES
121 Annex G (informative) Security computation examples for DES
124 Annex H (normative) Security calculations for AES
129 Annex I (informative) Security computation examples for AES
131 Bibliography
BS EN ISO 14906:2023
$215.11