Vai al contenuto principale
80,000+
venues running Purple
15-25
devices per household
£15-30
BTR rent premium per unit / month
99.9%
uptime SLA

TL;DR / Key Takeaways

  • Multi-tenant WiFi is a distinct category from guest WiFi. One network serves many households with each resident in their own private "WiFi bubble" - devices recognise each other, but other residents are invisible.
  • The enabling technology is iPSK (Identity Pre-Shared Key), called PPSK by Aruba and Personal Private Network by Cisco Meraki. Each resident has a unique WiFi key tied to their tenancy.
  • Sectors served: Build to Rent (BTR), purpose-built student accommodation, social housing, coworking. Same technology, different operational and commercial model per sector.
  • Hardware-agnostic software overlay. Runs on the Cisco, Aruba, Ruckus, Mist, UniFi, Cambium, Extreme, or Fortinet access points you already own. Per-unit pricing, no bundled broadband contract.

Multi-tenant WiFi is what happens when one network serves hundreds of separate households. Each resident gets their own private WiFi experience, with their devices recognising each other and isolated from every other resident in the building.

No password sheets at check-in. No “Chromecast won’t connect” support tickets. No shared password rotations every time someone moves out.

This guide covers what multi-tenant WiFi is, how it works (the technical answer is iPSK, and we’ll explain it properly), how it differs by sector, the operational and commercial case for treating WiFi as a managed amenity, and how to deploy it on the access points you already own.

What is multi-tenant WiFi?

Multi-tenant WiFi is a network architecture designed for buildings where many separate households or businesses share the same underlying infrastructure. Four requirements define the category. Guest WiFi, designed for transient visitors, fails on all four.

Privacy between residents

One resident's devices cannot see another resident's devices, even on the same access point.

Continuity within a household

Each resident's own devices recognise each other and work together, the way they do on a home network.

Resident-specific access

Access is provisioned at move-in and stops at move-out. No password changes required for anyone else.

Density for IoT scale

15-25 devices per household. A 200-unit building has 3,000-5,000 devices on the WiFi at any moment.

How it works: the “WiFi bubble”

The technology that makes multi-tenant WiFi possible is iPSK (Identity Pre-Shared Key). Each resident is issued a unique WiFi password during onboarding. All their devices use that password, and the network uses the password to identify which resident a device belongs to.

Free tool

Planning a multi-tenant network layout? Use our free iPSK Subnet Designer (from our free WiFi tools library) to calculate required subnet sizes, IP scopes, and DHCP ranges for your property.

The result is a per-resident WiFi bubble:

  • Every device on resident A’s key sees every other device on resident A’s key. Their phone discovers their Chromecast, their smart speaker pairs with their bulbs, their console finds their TV.
  • No device on resident A’s key sees any device on a different key. Resident B’s devices are invisible to resident A even though they’re on the same access point.
  • Resident A’s password doesn’t work for anyone else. When they move out, their key is revoked without affecting any other resident.

To the resident, it feels exactly like a home network. To the operator, it’s one network with strong tenant isolation. iPSK is sometimes called PPSK (Aruba) or Personal Private Network (Cisco Meraki). The terminology varies by vendor; the concept is the same. See RADIUS-as-a-Service for the auth-engine side and WPA-Enterprise for the underlying standards.

Per-resident WiFi bubbles isolated from each other on shared access points
One network, one per-resident bubble each. Devices on the same key recognise each other; everything else stays invisible.

Multi-tenant WiFi vs guest WiFi: the differences that matter

Operators sometimes ask whether they can use a hotel-style guest WiFi system for residential. The answer is no. A guest WiFi system can serve the visitors to a residential building (delivery drivers, contractors, family of residents). It cannot serve the residents themselves.

DimensionGuest WiFiMulti-tenant WiFi
Device discoveryEvery device isolated from every other, by default.Devices on the same resident's key recognise each other; other residents stay invisible.
Session lengthHours or days, with a captive portal sign-in at the start.Persistent, automatic, across years.
Onboarding modelOne-off sign-in flow per session.Credentials that survive house moves, device replacements, and IoT additions.
Privacy modelUsers don't know each other, treated as transient.Ongoing relationship; expectation closer to home WiFi than to a hotel lobby.
IoT supportAssumes devices have a screen and a person nearby.Smart speakers, lights, plugs, sensors, appliances all supported.

Multi-tenant WiFi by sector

The technology is the same across sectors. The operational model, the commercial case, and the specific requirements vary.

Purple multi-tenant WiFi for Built to Rent (BTR)

Built to Rent (BTR)

Purpose-built rental at BTR / multi-family scale. WiFi-as-amenity included in rent or sold as an upgrade, with same-day move-in readiness and full IoT support.

  • WiFi-as-amenity in rent or upgrade tier
  • Move-in-day activation, no broadband wait
  • Premium speed comparable to home broadband
  • Full IoT and smart home support
See Built to Rent (BTR)
Purple multi-tenant WiFi for Student Accommodation (PBSA)

Student Accommodation (PBSA)

Annual cohort turnover, intense device density, very high streaming expectations. Cohort move-in week is the worst day of the year for any building network. Self-service is mandatory.

  • August-September provisioning for thousands at once
  • Built for laptop + phone + console + smart TV stack
  • Eduroam compatibility for affiliated schemes
  • Cohort-week resilience as the headline metric
See Student Accommodation (PBSA)
Purple multi-tenant WiFi for Social Housing

Social Housing

council and housing-association stock, supported living, and sheltered housing - funded through capital programmes, social tariff partnerships, or service-charge structures. WiFi is increasingly a regulatory and inclusion priority, not just an amenity. Largest unit count, lowest revenue per unit.

  • Affordable per-unit cost in service-charge structures
  • Digital-inclusion programme support (subsidised tiers)
  • Social-tariff / low-cost broadband compatibility
  • Strong safeguarding for vulnerable residents
See Social Housing
Purple multi-tenant WiFi for Coworking

Coworking

Weekly and monthly membership models with business-grade WiFi as table stakes. Per-member isolation, multi-location credential portability, and VPN-friendliness for corporate visitors.

  • Per-member or per-company isolation
  • Separate guest flow for member visitors
  • VPN and corporate-network friendly
  • Credential portability across chain locations
See Coworking

The common multi-tenant challenges (and how iPSK solves them)

Across every sector, the same handful of problems consume operations time. High device density, household IoT, and shared infrastructure create issues that residential broadband doesn’t have. Most resolve to the same answer: per-resident isolation done correctly.

Chromecast and smart home pairing

The most common multi-tenant support ticket. Chromecast (and Apple TV, Echo, Sonos) needs to discover the casting device on the same network. iPSK solves this: devices on the same resident's key can see each other, devices on different keys can't.

Games consoles and NAT type

PlayStation, Xbox, and Switch need NAT type Open (or Type 2 for Sony) for online multiplayer. The fix is correct CGNAT and UPnP handling per resident segment, not a network-wide loosening.

Smart home device onboarding

Most smart home devices use Bluetooth or a temporary local WiFi network for setup, then need adding to the resident's main network. iPSK supports this without exposing the new device to other residents.

Voice assistants and casting

Alexa, Google Home, and HomePod need to be on the same logical network as the devices they control. Done correctly with iPSK, this works as it does at home. Done with guest-style isolation, it doesn't work at all.

Mid-tenancy device additions

Residents add devices throughout their tenancy. Self-service device addition (via a resident app or a captive portal flow that issues the resident's existing key to the new device) is the right approach.

Move-out without breaking everyone

Without unique-per-resident credentials, ending a tenancy means rotating the building-wide password and breaking every other resident's devices. With iPSK, revoking one key affects only that resident.

The business case for managed WiFi as an amenity

For BTR and purpose-built student accommodation operators, WiFi is no longer an optional extra. It’s an amenity comparable to gym access or in-unit laundry, and it carries a measurable commercial return. Benchmarks below cite the British Property Federation and equivalent sector research.

£15-30
per unit per month rent premium (BTR)
5-10 days
shorter void periods, move-in WiFi readiness
30-50%
per-door cost lower than per-unit broadband
Top 5
amenity factor in BTR and PBSA booking research

NOI per door

Combine the rent premium, the void periods reduction, and the retention uplift. Managed WiFi as an amenity is consistently NOI-positive in modelled cases when deployed as software overlay on owned hardware. The model deteriorates when WiFi is bundled with a third-party broadband contract that captures the value.

Marketing differentiation

WiFi quality is a top-five amenity factor in BTR and purpose-built student accommodation booking research. Operators leading on WiFi quality consistently outperform sector averages on amenity satisfaction scores.

Social Housing: a different framing

For social housing, the business case is different. The metric is digital inclusion. The funding model often involves capital programmes, social-tariff partnerships, or service-charge structures rather than market rent uplift. The software-overlay model still applies; the commercial framing changes.

Compliance and resident data privacy

Multi-tenant WiFi sits in a more sensitive privacy context than guest WiFi. Residents have an ongoing relationship with the operator, and the data exposure extends over years rather than minutes.

Resident isolation is itself a privacy requirement

Operators have a duty of care to prevent one resident from being able to discover or interact with another resident's devices. iPSK is the technical mechanism that delivers this.

Individual analytics is restricted

Aggregate footfall and dwell-time analytics in common areas are generally fine. Individual resident behaviour tracking inside their unit is not.

Short default retention

Resident-identifiable WiFi logs should be retained only as long as required for security, compliance, and operations. Six months is a common ceiling.

Selectable data residency

Purple data is stored in EU, UK, or US regions, chosen at provision.

Applicable framework in your market: UK GDPR. Equivalents elsewhere: EU GDPR, CCPA / CPRA (California), PIPEDA (Canada), LGPD (Brazil). Full detail on the data privacy page.

Hardware compatibility

Multi-tenant WiFi runs on the same enterprise access point hardware as guest WiFi and staff WiFi. The differentiator is the software layer that issues iPSK keys per resident and manages the per-resident isolation.

Purple’s multi-tenant platform works with:

Cisco Meraki
Cisco Catalyst
HPE Aruba (PPSK-native)
Ruckus
Juniper Mist
Ubiquiti UniFi
Cambium Networks
Extreme Networks

The key technical capability the access point needs is per-device VLAN assignment based on the iPSK key used for authentication. All current enterprise-grade access points support this; older equipment may not.

For new-build BTR and PBSA schemes, specifying hardware at design-and-build stage avoids retrofitting later. For retrofit on existing buildings, Purple’s overlay model means the existing access points typically work without replacement, provided they’re enterprise-grade. IEEE 802.11 WPA-PSK is the foundational standard; WPA3 Personal is the current state of the art.

How to choose a multi-tenant WiFi platform

A practical checklist for evaluating multi-tenant WiFi software.

iPSK / PPSK native support

Foundational. Solutions without per-resident pre-shared keys aren't multi-tenant solutions.

Self-service resident onboarding

A resident app or self-service portal that handles key issuance, device addition, and house moves.

Hardware independence

Avoid platforms that lock you into a specific AP vendor or a bundled broadband contract.

IoT and smart home support

Test specifically with Chromecast, Sonos, voice assistants, and games consoles before commitment.

Multi-site management

Portfolio operators need one dashboard across multiple buildings. Per-building admin doesn't scale.

PMS integration

Yardi, MRI, RealPage, Spareroom - move-in / move-out automation that fits your stack.

Compliance

UK GDPR or local equivalent, plus sector-specific requirements (safeguarding, social-tariff rules).

Transparent per-unit pricing

Per-unit pricing scales predictably. Per-AP or per-bandwidth models distort building design.

Sector-aware support SLA

Cover during lettings velocity peaks (August-September for student, January / September for BTR).

Frequently asked questions

What is multi-tenant WiFi?

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Multi-tenant WiFi is a network architecture that serves multiple separate households or businesses on shared underlying infrastructure, with each resident's devices isolated from other residents' devices but visible to each other. It's used in Build to Rent (BTR), purpose-built student accommodation, social housing, and coworking.

What's the difference between iPSK and PPSK?

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The same concept under different vendor names. iPSK (Identity Pre-Shared Key) is the term most associated with Cisco. PPSK (Private Pre-Shared Key) is the Aruba term. Both deliver per-device or per-resident unique pre-shared keys for tenant isolation.

Can I use guest WiFi for residents?

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No. Guest WiFi isolates every device from every other device, which breaks resident scenarios like Chromecast, smart home pairing, and voice assistant control. Multi-tenant WiFi is a different architecture designed for ongoing residential use.

How does Chromecast work on multi-tenant WiFi?

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Properly deployed iPSK lets a resident's devices see each other while remaining isolated from other residents. Chromecast discovers casting devices on the same resident's key. The "Chromecast won't connect" problem is symptomatic of a guest-WiFi-style deployment in a residential building, not of multi-tenant WiFi in general.

Do residents need to install an app?

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Optional. Self-service onboarding via a resident app is the most operationally efficient model and gives the resident control over device additions. The alternative is a captive portal-driven sign-up at first connection. Both work; the app model scales better for portfolios.

How is multi-tenant WiFi different from giving each unit its own broadband?

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Per-unit broadband requires per-unit ISP contracts, per-unit equipment, per-unit setup on move-in, and per-unit support. Multi-tenant WiFi delivers comparable per-resident experience from one network and one contract, with same-day move-in readiness and centralised operations. The per-door cost is typically 30-50% lower than per-unit broadband.

Can residents bring their own WiFi router?

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It depends on the operator's policy. Most BTR and purpose-built student accommodation operators forbid resident-installed routers because they create RF interference with the building-wide system and bypass network security. Where personal routers are allowed (some social housing schemes), the multi-tenant system isolates the router's network from the rest of the building.

Does multi-tenant WiFi support gaming?

+

Yes, when deployed correctly. Games consoles need NAT type Open (or Type 2 for PlayStation), achieved through proper CGNAT configuration and UPnP support per resident segment. This is part of the standard Purple multi-tenant deployment.

How is resident data handled?

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Per the operator's data protection policy and applicable law (UK GDPR or equivalent). Purple is the data processor; the operator is the data controller. Resident-identifiable logs are retained only as long as required for operations and compliance, typically six months or less. Aggregate analytics on common areas is fine; individual resident behaviour tracking is not appropriate.

Can the same network support guests and visitors as well as residents?

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Yes. Multi-tenant WiFi platforms typically run a separate guest SSID alongside the resident SSIDs, served by the same access points. Visitors (contractors, delivery drivers, resident family) connect via a captive portal flow with short session lengths and full isolation. Residents connect via their iPSK with persistent access.

Cluster guides in this series

Deep-dive guides that support this pillar. Each goes further on one part of deploying WiFi across multi-tenant and multi-dwelling buildings.

Soluzioni WiFi per appartamenti: una guida completa per le aziende

Questa guida copre l'architettura, l'implementazione e il business case per le soluzioni WiFi per appartamenti nelle proprietà Build to Rent e nelle unità abitative plurifamiliari. Spiega come la tecnologia Identity Pre-Shared Key (iPSK) crei bolle di rete sicure e isolate per ogni residente, supportando al contempo i dispositivi intelligenti e l'IoT. Gli sviluppatori immobiliari, i proprietari e gli operatori BTR troveranno indicazioni pratiche per l'implementazione, dati sul ROI e scenari di implementazione pratici.

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Progettazione di reti WiFi per edifici per uffici multi-tenant

Questa guida fornisce a responsabili IT, architetti di rete e CTO un modello indipendente dal fornitore per la progettazione di reti WiFi scalabili, sicure e isolate in edifici per uffici multi-tenant. Copre la segmentazione VLAN in conformità a IEEE 802.1Q, l'assegnazione dinamica delle VLAN tramite 802.1X e RADIUS, la pianificazione RF per ambienti ad alta densità e le considerazioni di conformità ai sensi di GDPR e PCI DSS. Gli operatori delle strutture e i gestori degli edifici troveranno linee guida sull'architettura pratiche, casi di studio reali ed errori di configurazione da evitare prima della distribuzione.

Read guide →

Mean time to innocence: come dimostrare che non è colpa del WiFi

Il Mean time to innocence (MTTI) è la metrica critica che definisce il tempo speso dai team IT per dimostrare che un problema di rete non è di loro responsabilità. Questa guida descrive una metodologia di osservabilità in cinque passaggi per eliminare il rimpallo di responsabilità negli ambienti multi-tenant, sostituendo le accuse con prove condivise per ridurre il mean time to resolution (MTTR).

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Requisiti legali e di conformità per l'infrastruttura WiFi condivisa

Questa guida di riferimento tecnico autorevole delinea i requisiti legali, normativi e architetturali critici per la distribuzione e la gestione di un'infrastruttura WiFi condivisa. Fornisce ai responsabili IT, agli architetti di rete e ai gestori di sedi framework operativi per garantire una solida protezione dei dati, una rigorosa conformità alla sicurezza dei pagamenti e un isolamento dei tenant ad alte prestazioni utilizzando standard enterprise.

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Gestione della larghezza di banda e Quality of Service (QoS) negli spazi di co-working

Una guida di riferimento tecnico autorevole per IT manager, network architect e direttori delle operazioni della struttura sull'implementazione di solidi framework di gestione della larghezza di banda e Quality of Service (QoS) negli ambienti di co-working. Questa guida illustra dettagliatamente la segmentazione della rete, la prioritizzazione del traffico, le configurazioni neutrali rispetto ai vendor e le metriche di ROI reali per fornire connettività di livello enterprise. Copre gli standard IEEE 802.11e/WMM, la progettazione delle VLAN, la limitazione della tariffa per utente e le strategie di risoluzione dei problemi con risultati aziendali misurabili.

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Best Practice per la Segmentazione VLAN in Ambienti Multi-Tenant

Questa guida fornisce a IT manager, architetti di rete, CTO e direttori operativi delle strutture una guida autorevole e indipendente dai vendor per l'implementazione della segmentazione VLAN in ambienti WiFi multi-tenant. Copre lo standard IEEE 802.1Q, l'assegnazione dinamica delle VLAN tramite 802.1X e RADIUS, e una guida passo-passo per l'implementazione in strutture alberghiere, retail, stadi e settore pubblico. Una corretta segmentazione VLAN è il controllo fondamentale per la conformità PCI DSS e GDPR, la prevenzione dei movimenti laterali e l'erogazione di connettività wireless ad alte prestazioni su un'infrastruttura fisica condivisa.

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Gestione dell'esaurimento degli IP pubblici negli alloggi per studenti

Questa guida fornisce un riferimento tecnico definitivo per gli architetti di rete che distribuiscono Carrier-Grade NAT (CGNAT) e Port Address Translation (PAT) per gestire l'esaurimento degli IPv4 in ambienti WiFi ad alta densità per alloggi per studenti e multi-tenant. Copre l'architettura NAT444, lo spazio di indirizzamento condiviso RFC 6598, il dimensionamento della Port Block Allocation, le strategie di logging conformi al GDPR e un percorso di migrazione dual-stack IPv6. La guida è essenziale per qualsiasi operatore che gestisca centinaia o migliaia di dispositivi simultanei su un pool di IP pubblici limitato, fornendo indicazioni di configurazione pratiche, casi di studio reali e analisi del ROI.

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Gestione della larghezza di banda nelle reti di alloggi per studenti

Questa guida fornisce ai responsabili IT, agli architetti di rete e ai direttori delle operazioni immobiliari un riferimento tecnico indipendente dai fornitori per la gestione della larghezza di banda WiFi in ambienti ad alta densità come gli alloggi per studenti. Copre la segmentazione VLAN, la progettazione delle policy di Quality of Service (QoS), il traffic shaping basato sull'identità e la visibilità a livello applicativo - i quattro pilastri di una rete scalabile e ad accesso equo. Con scenari di implementazione reali, risultati misurabili e framework decisionali, questo è il manuale operativo per qualsiasi team responsabile dell'infrastruttura di rete residenziale su larga scala.

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Risoluzione delle interferenze WiFi negli edifici MDU ad alta densità

Questa guida di riferimento tecnica fornisce ai responsabili IT e ai gestori di immobili strategie pratiche per eliminare le interferenze WiFi negli edifici ad alta densità Multi-Dwelling Unit (MDU). Copre le cause principali delle interferenze co-canale e adiacenti, la transizione architetturale verso un'infrastruttura WLAN gestita centralmente e le tecniche di isolamento sicuro degli inquilini. L'implementazione di queste strategie riduce i costi di supporto, migliora la soddisfazione degli inquilini e trasforma la connettività in un servizio che genera entrate.

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Best practice di micro-segmentazione per reti WiFi condivise

Questa guida di riferimento tecnica fornisce strategie pratiche per implementare la micro-segmentazione su infrastrutture WiFi condivise. Descrive dettagliatamente come i responsabili IT e gli architetti di rete possono isolare in modo sicuro il traffico di ospiti, IoT e personale per mitigare i rischi, garantire la conformità e ottimizzare le prestazioni della rete.

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Come funziona l'assegnazione Dynamic VLAN negli edifici multitenant

Questa guida di riferimento tecnica dettaglia l'architettura e l'implementazione dell'assegnazione Dynamic VLAN utilizzando 802.1X e RADIUS in ambienti multitenant. Fornisce indicazioni pratiche per IT manager e progettisti di rete per ridurre il sovraccarico di SSID, applicare l'isolamento a livello Layer 2 e garantire una connettività sicura e scalabile all'interno di edifici condivisi.

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WiFi per centri commerciali: guida per property manager

Questa guida fornisce un piano tecnico e commerciale completo per l'implementazione del WiFi in un intero centro commerciale. Copre l'architettura di rete a tre livelli, la progettazione RF ad alta densità, l'acquisizione di dati conforme al GDPR e le strategie di monetizzazione dei media retail. I property manager, i team IT e i CTO troveranno indicazioni operative per l'implementazione, insieme a un chiaro framework ROI per trasformare la connettività degli ospiti in un asset di dati di prima parte.

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Student WiFi: What Universities Need to Get Right

Questa guida autorevole descrive in dettaglio l'architettura critica, i protocolli di sicurezza e gli strumenti di analytics necessari per erogare student WiFi ad alte prestazioni su scala. Fornisce ai responsabili IT strategie attuabili per gestire la densità BYOD, implementare un'autenticazione robusta e sfruttare l'intelligence di rete per la gestione del patrimonio immobiliare.

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MDU Login: Simplifying WiFi Access in Multi-Dwelling Units

Questa guida di riferimento tecnico fornisce a IT manager, network architect e CTO un framework definitivo per l'implementazione e la gestione dell'accesso WiFi nelle Multi-Dwelling Units (MDU), analizzando i compromessi tra i modelli di autenticazione PSK condivisa, WPA3-Enterprise 802.1X e Identity PSK (iPSK). Il documento affronta le principali sfide operative legate alle interferenze RF, alla segmentazione della sicurezza e alla gestione del ciclo di vita dei residenti, dimostrando come una piattaforma WiFi gestita come Purple trasformi la connettività da un centro di costo a una risorsa di ricavo misurabile. Basandosi su scenari di implementazione reali e facendo riferimento a standard quali IEEE 802.1X, WPA3, GDPR e PCI DSS, la guida fornisce ai gestori delle strutture l'architettura, le fasi di implementazione e le metriche di ROI necessarie per prendere una decisione di investimento informata in questo trimestre.

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Cloud-Managed WiFi vs Controller-Based WiFi: Which Should You Choose?

Questa guida offre un confronto tecnico e neutrale rispetto ai fornitori tra le architetture WiFi gestite in cloud e quelle basate su controller (on-premise), aiutando IT manager, network architect e CTO a prendere decisioni di implementazione informate. Copre i compromessi architetturali in termini di scalabilità, sovranità dei dati, modello di costo e resilienza offline, con casi di studio reali provenienti dai settori dell'ospitalità, del retail e del settore pubblico. Spiega inoltre come la piattaforma di WiFi intelligence di Purple si integra con entrambe le architetture per offrire gestione della guest experience, acquisizione di dati di prima parte e analisi conformi al GDPR.

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WiFi Multi-Tenant: Architettura e Gestione

Questa guida di riferimento tecnica autorevole fornisce ai responsabili IT, agli architetti di rete e ai gestori di location un framework completo per la progettazione, l'implementazione e la gestione di reti WiFi multi-tenant in ambienti complessi come hotel, centri commerciali, stadi e unità abitative plurifamiliari (MDU). Copre le differenze architetturali critiche tra installazioni a sede singola e multi-tenant, con particolare attenzione all'isolamento dei tenant, alla gestione della larghezza di banda e alla conformità. Sfruttando la piattaforma di enterprise WiFi intelligence di Purple, le organizzazioni possono trasformare un'infrastruttura di rete condivisa in un servizio sicuro, scalabile e di valore commerciale.

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