BS EN ISO 15118-5:2019
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Road vehicles. Vehicle to grid communication interface – Physical layer and data link layer conformance test
Published By | Publication Date | Number of Pages |
BSI | 2019 | 414 |
This document specifies conformance tests in the form of an Abstract Test Suite (ATS) for a System Under Test (SUT) implementing an Electric Vehicle or Supply Equipment Communication Controller (EVCC or SECC) with support for PLC-based High Level Communication (HLC) and Basic Signaling according to ISO 15118-3. These conformance tests specify the testing of capabilities and behaviors of an SUT, as well as checking what is observed against the conformance requirements specified in ISO 15118-3 and against what the implementer states the SUT implementation’s capabilities are.
The capability tests within the ATS check that the observable capabilities of the SUT are in accordance with the static conformance requirements defined in ISO 15118-3. The behavior tests of the ATS examine an implementation as thoroughly as is practical over the full range of dynamic conformance requirements defined in ISO 15118-3 and within the capabilities of the SUT (see NOTE 1).
A test architecture is described in correspondence to the ATS. The conformance test cases in this part of the standard are described leveraging this test architecture and are specified in TTCN-3 Core Language for the ISO/OSI Physical and Data Link Layers (Layers 1 and 2). The conformance test cases for the ISO/OSI Network Layer (Layer 3) and above are described in ISO 15118-4.
In terms of coverage, this document only covers normative sections and requirements in ISO 15118-3. This document can additionally include specific tests for requirements of referenced standards (e.g. IEEE, or industry consortia standards) as long as they are relevant in terms of conformance for implementations according to ISO 15118-3. However, it is explicitly not intended to widen the scope of this conformance specification to such external standards, if it is not technically necessary for the purpose of conformance testing for ISO 15118-3. Furthermore, the conformance tests specified in this document do not include the assessment of performance nor robustness or reliability of an implementation. They cannot provide judgments on the physical realization of abstract service primitives, how a system is implemented, how it provides any requested service, nor the environment of the protocol implementation. Furthermore, the test cases defined in this document only consider the communication protocol and the system’s behavior defined ISO 15118-3. Power flow between the EVSE and the EV is not considered.
NOTE 1 Practical limitations make it impossible to define an exhaustive test suite, and economic considerations can restrict testing even further. Hence, the purpose of this document is to increase the probability that different implementations are able to interwork. This is achieved by verifying them by means of a protocol test suite, thereby increasing the confidence that each implementation conforms to the protocol specification. However, the specified protocol test suite cannot guarantee conformance to the specification since it detects errors rather than their absence. Thus conformance to a test suite alone cannot guarantee interworking. What it does do is give confidence that an implementation has the required capabilities and that its behavior conforms consistently in representative instances of communication.
NOTE 2 This document has some interdependencies to the conformance tests defined in ISO 15118-4 which result from ISO/OSI cross layer dependencies in the underlying protocol specification (e.g. for sleep mode)
PDF Catalog
PDF Pages | PDF Title |
---|---|
2 | undefined |
4 | European foreword Endorsement notice |
11 | 1 Scope |
12 | 2 Normative references 3 Terms and definitions |
17 | 4 Symbols (and abbreviated terms) |
18 | 5 Conventions 5.1 Requirement structure 5.2 Test system description 6 Test architecture reference model 6.1 General information |
19 | 6.2 Platform adapter interface 6.3 SUT adapter interfaces |
20 | 6.4 Codecs 7 Test suite conventions 7.1 General information 7.2 Test suite structure (TSS) |
22 | 7.3 Test profiles 7.3.1 Test configurations |
23 | 7.3.2 Components and ports |
24 | 7.3.3 Protocol implementation conformance statement (PICS) definition |
25 | 7.3.4 Protocol implementation extra information for testing (PIXIT) definition |
27 | 7.3.5 Test control |
32 | 7.4 Test suite identifiers 7.4.1 Module identifiers 7.4.2 Test case identifiers |
34 | 7.4.3 Template identifiers |
35 | 7.4.4 Function identifiers |
36 | 7.4.5 Timer identifiers 7.4.6 PICS/PIXIT identifiers |
37 | 7.4.7 Verdict identifiers 7.5 Test suite coverage |
66 | 7.6 Test case description |
67 | 7.7 Test case specification 7.7.1 Data types 7.7.1.1 SLAC 7.7.2 Templates |
68 | 7.7.3 Timeouts and timers 7.7.4 Library functions 7.7.5 Test case modelling |
69 | 7.7.6 SLAC Message handling for different SUT types 7.7.7 IEC 618511 PWM event handling and control |
71 | 7.7.8 Data link status control functionality 7.7.9 EIM status control functionality 7.7.10 Transmission power limitation functionality 7.7.11 Attenuator injection functionality |
72 | 8 Test case descriptions for ISO 151183 HPGP PLC signal measurement 8.1 General information 8.2 Test case for PLC signal measurement for ISO 151183 8.3 SECC + PLC bridge test cases 8.3.1 SECC test cases for CmSlacParm 8.3.1.1 Common test cases |
77 | 8.3.1.2 AC specific test cases |
79 | 8.3.2 SECC test cases for AttenuationCharacterization |
89 | 8.3.3 SECC test cases for CmValidate |
96 | 8.3.4 SECC test cases for CmSlacMatch |
108 | 8.3.5 SECC test cases for PLCLinkStatus 8.3.5.1 Common test cases |
110 | 8.3.5.2 AC specific test cases |
117 | 8.3.5.3 DC specific test cases |
120 | 8.3.6 SECC test cases for CmAmpMap |
124 | 8.4 EVCC + PLC bridge test cases 8.4.1 EVCC test cases for CmSlacParm 8.4.1.1 Common test cases |
131 | 8.4.1.2 AC specific test cases |
132 | 8.4.2 EVCC test cases for AttenuationCharacterization 8.4.2.1 Common test cases |
139 | 8.4.2.2 AC specific test cases |
140 | 8.4.3 EVCC test cases for CmValidate |
152 | 8.4.4 EVCC test cases for CmValidateOrCmSlacMatch 8.4.5 EVCC test cases for CmSlacMatch |
158 | 8.4.6 EVCC test cases for PLCLinkStatus 8.4.6.1 Common test cases |
162 | 8.4.6.2 AC specific test cases |
167 | 8.4.6.3 DC specific test cases |
169 | 8.4.7 EVCC test cases for CmAmpMap |