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Library/S#FA - Fraudulent access points

Design Requirement

S#FA - Fraudulent access points

A Wi-Fi sharing network must account for the risks imposed by fraudulent access points emulating a fake Service Set Identifier (SSID), which can be used to intercept connections between users and access points.

OverviewLinked conceptsRelationshipsGraphRaw metadata

01

Overview

Producer metadata and the represented concept document.

Concept identity

design-knowledge/wifi-sharing-payment-channels-dr-s-fa
Open concept record
Producer label
S#FA
Source paper
An Architecture Using Payment Channel Networks for Blockchain-based Wi-Fi Sharing
Timestamp
2026-08-05T00:00:00+00:00
Bundle path
design-knowledge/wifi-sharing-payment-channels-dr-s-fa.md
architecturedesign-requirementpayment-channelssharing-economytelecommunicationswifi-sharing-payment-channels

Design requirement S#FA: Fraudulent access points

A Wi-Fi sharing network must account for the risks imposed by fraudulent access points emulating a fake Service Set Identifier (SSID), which can be used to intercept connections between users and access points.

Source paper

This design requirement is proposed by An Architecture Using Payment Channel Networks for Blockchain-based Wi-Fi Sharing (Christian Janiesch, Marcus Fischer, Florian Imgrund, Adrian Hofmann, Axel Winkelmann, 2023).

02

Linked concepts

Concepts connected by incoming or outgoing native Markdown links.

3 Design Principles

design-knowledge/wifi-sharing-payment-channels-dp5

DP5 - Clear access-point identification

Provide the system with a module to identify access points clearly in order to prevent security-related threats such as eavesdropping or DNS-server phishing.

architecturedesign-principlepayment-channelssharing-economy+2
design-knowledge/wifi-sharing-payment-channels-dp6

DP6 - Tamper-proof transaction history via trusted intermediary

Provide the system with a mutually trusted intermediary requiring a transaction history that records a user's data traffic, resource consumption and incurred costs, in order to ensure that connection data cannot be manipulated or corrupted.

architecturedesign-principlepayment-channelssharing-economy+2
design-knowledge/wifi-sharing-payment-channels-dp11

DP11 - Dynamic trust-score accounting

Provide the system with accounting mechanisms using a dynamic trust-score in order to facilitate cooperative host behavior and ensure high service levels by rewarding hosts for cooperation or high availability.

architecturedesign-principlepayment-channelssharing-economy+2

1 Paper

papers/wifi-sharing-payment-channels

An Architecture Using Payment Channel Networks for Blockchain-based Wi-Fi Sharing

The authors derive a comprehensive collection of 14 design principles for workable Wi-Fi sharing networks and propose a reference architecture combining a blockchain (for trust and immutable records) with payment channel networks (for fast, cheap micro-payments), augmenting current approaches with adequate accounting mechanisms.

architectureblockchaindesign-science-researchpayment-channels+3

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Outgoing links

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  • →

    An Architecture Using Payment Channel Networks for Blockchain-based Wi-Fi Sharing

    Paper
    Source
    S#FA - Fraudulent access points
    Target
    An Architecture Using Payment Channel Networks for Blockchain-based Wi-Fi Sharing
    Link label
    An Architecture Using Payment Channel Networks for Blockchain-based Wi-Fi Sharing
    Status
    Resolved

    Derived heading context: Source paper

Incoming backlinks

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  • ←

    An Architecture Using Payment Channel Networks for Blockchain-based Wi-Fi Sharing

    Paper
    Source
    An Architecture Using Payment Channel Networks for Blockchain-based Wi-Fi Sharing
    Target
    S#FA - Fraudulent access points
    Link label
    Design requirement S#FA: Fraudulent access points
    Status
    Resolved

    Derived heading context: Design knowledge

  • ←

    DP11 - Dynamic trust-score accounting

    Design Principle
    Source
    DP11 - Dynamic trust-score accounting
    Target
    S#FA - Fraudulent access points
    Link label
    Design requirement S#FA: Fraudulent access points
    Status
    Resolved

    Derived heading context: Addresses

  • ←

    DP5 - Clear access-point identification

    Design Principle
    Source
    DP5 - Clear access-point identification
    Target
    S#FA - Fraudulent access points
    Link label
    Design requirement S#FA: Fraudulent access points
    Status
    Resolved

    Derived heading context: Addresses

  • ←

    DP6 - Tamper-proof transaction history via trusted intermediary

    Design Principle
    Source
    DP6 - Tamper-proof transaction history via trusted intermediary
    Target
    S#FA - Fraudulent access points
    Link label
    Design requirement S#FA: Fraudulent access points
    Status
    Resolved

    Derived heading context: Addresses

04

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5 of 5 concepts · 11 directed relationships

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Design RequirementSeed

Fraudulent access points

Concept identity

Concept ID
design-knowledge/wifi-sharing-payment-channels-dr-s-fa
Producer label
S#FA
Native type
design-requirement

Description

A Wi-Fi sharing network must account for the risks imposed by fraudulent access points emulating a fake Service Set Identifier (SSID), which can be used to intercept connections between users and access points.

DOI

https://doi.org/10.1145/3529097

Tags

  • architecture
  • design-requirement
  • payment-channels
  • sharing-economy
  • telecommunications
  • wifi-sharing-payment-channels
Description and publication link from the library record.

05

Raw metadata

The complete producer frontmatter, serialized without server paths or runtime data.

Show producer frontmatter+
{
  "type": "design-requirement",
  "title": "S#FA - Fraudulent access points",
  "description": "A Wi-Fi sharing network must account for the risks imposed by fraudulent access points emulating a fake Service Set Identifier (SSID), which can be used to intercept connections between users and access points.",
  "resource": "https://doi.org/10.1145/3529097",
  "source_paper": "An Architecture Using Payment Channel Networks for Blockchain-based Wi-Fi Sharing",
  "label": "S#FA",
  "tags": [
    "wifi-sharing-payment-channels",
    "design-requirement",
    "sharing-economy",
    "telecommunications",
    "payment-channels",
    "architecture"
  ]
}