Author: Shankar Roddam

  • Un rebobinado de la evolución de 1G a 5G

    Un rebobinado de la evolución de 1G a 5G

    De 1G a 5G

    El viaje de 1G a 5G parece reciente y el tiempo realmente ha volado. Por medio del blog a continuación, he intentado proporcionar un resumen rápido del viaje y cómo nos fue.

    Hacia el final, también puede ver el impacto de los ingresos en unas pocas empresas de telecomunicaciones seleccionadas cuidadosamente de todo el mundo con la evolución de cada generación de telecomunicaciones.

    Capture

    “Fue FENOMENAL pero no fue suficiente”.

    ¿Qué pasó aquí?

    • El ingeniero Neil Papworth envió el primer SMS el 3 de diciembre de 1992, cuando escribió “Feliz Navidad” en una computadora y lo envió al teléfono celular del director de Vodafone, Richard Jarvis.
    • Inicio de la tecnología AMPS (Advanced Mobile Phone System) a partir del IMPS (Sistema de telefonía móvil mejorado) preexistente para la transmisión de voz.
    • La conectividad estableció una conectividad móvil fluida que introdujo servicios de voz móviles.
    • 1G introdujo la voz analógica.

    ¿Qué salió mal?

    • Mala calidad de voz
    • Poca duración de la batería
    • Teléfono de gran tamaño
    • Sin seguridad
    • Capacidad limitada
    • Poca confiabilidad

    El impacto en los ingresos:

    En 2018, casi 300 millones de personas se conectaron a Internet móvil por primera vez, lo que elevó la población total conectada a más de 3.500 millones de personas en todo el mundo. Los ingresos no experimentaron un aumento drástico para los operadores, especialmente en los segmentos de nivel 2 y 3, ya que los consumidores exigían una mejor conectividad, mayor capacidad y menor latencia. Esto solo lo podrían permitir los operadores de nivel 1, que simplemente podían permitirse derrochar en la mejora de su red.

    Era 5G 2019 y más allá:

    “5G es más que una generación, es una promesa al país de las maravillas”

    • 5G nos mira con una nueva experiencia en velocidades de datos más rápidas, mayor densidad de conexión, latencia mucho menor, entre otras mejoras.
    • 5G no es una actualización a 4G, pero está en una liga propia, porque nos brinda la capacidad de conectar miles de dispositivos a la vez, lo que brinda al usuario la verdadera sensación de experiencia en “tiempo real”.
    • Esto significa que la informática y el procesamiento pueden pasar a la nube y dar como resultado dispositivos de IoT más pequeños, lo que reduce el costo de fabricación y mantenimiento al optimizar la red para el operador de telecomunicaciones.
    • IoT tendrá un significado muy diferente con el crecimiento de 5G, ya que los vehículos autónomos pueden convertirse en una realidad incluso en India.
    • Dado que el aumento de la base de suscriptores en las ciudades de nivel 1 ya no es una perspectiva atractiva para las empresas de telecomunicaciones, buscarán generar nuevos flujos de ingresos con la madurez de MU-MIMO y lograr velocidades de datos de hasta 35 Gbps.
    • La tecnología 5G puede utilizar una variedad de bandas de espectro, incluido el espectro de radio de onda milimétrica (mmWave), que puede transportar grandes cantidades de datos a corta distancia.
    • La tecnología móvil 5G puede marcar el comienzo de nuevas experiencias inmersivas como la realidad virtual y la realidad aumentada con velocidades de datos más rápidas y uniformes, menor latencia y menor costo por bit.
    • 5G puede habilitar nuevos servicios que pueden transformar industrias con enlaces ultra confiables, disponibles y de baja latencia, como el control remoto de infraestructura crítica, vehículos y procedimientos médicos.

    Aquí hay algunos casos de uso revolucionarios que traerá 5G:

      • Alimentando la agricultura de precisión: incluso el algodón que se encuentra en un vestido simple usa 5G.
      • Habilitar una conectividad IoT inalámbrica confiable en los centros de transporte
      • Esencial para los vehículos autónomos del futuro con V2X y logística inteligente a nuestro alcance.
      • Para colaboraciones más estrechas en el lugar de trabajo utilizando información en tiempo real y XR.
      • Ofrecer al consumidor experiencias de compra personalizadas virtuales inmersivas en cualquier lugar.
      • Impulsando la próxima revolución industrial con fabricación flexible con ejecución guiada XR, vigilancia inteligente, visibilidad de la cadena de suministro en tiempo real usando blockchain y mantenimiento predictivo.
      • Con seguimiento de activos en tiempo real y entrega eficiente mediante drones.

    chart

    revenue

    Valor de ingresos representado en millones de USD

    Referencias:

    https://www.statista.com/statistics/226065/global-mobile-subscriber-forecast/

    https://www.sciencedirect.com/topics/engineering/advanced-mobile-phone-system

    https://mse238blog.stanford.edu/2017/07/ssound/1g-2g-5g-the-evolution-of-the-gs/

    https://www.gsma.com/aboutus/history

    https://www.itu.int/en/ITU-D/Documents/WTDC_1994_FINAL_REPORT.PDF

    https://www.itu.int/ITU-D/ict/publications/wtdr_99/material/wtdr99s.pdf

    https://www.itu.int/dms_pub/itu-d/opb/ind/D-IND-WTDR-2006-SUM-PDF-E.pdf

    https://www.qualcomm.com/media/documents/files/download-the-evolution-of-mobile-technologies-1g-to-2g-to-3g-to-4g-lte-qualcomm.pdf

    https://www.qualcomm.com/invention/5g/economy

    https://www.qualcomm.com/invention/5g/what-is-5g

    https://www.igi-global.com/chapter/evolution-technologies-standards-deployment-networks/17444

    http://protei.me/blog/telecom-news/the-mobile-wireless-communication-technology-journey/

    Informes de ingresos anuales oficiales:

    Verizon: 1993-2019
    Telstra: 1993-2019
    Sprint: 1993-2019
    Batelco: 1993-2019
    Tigo: 1993-2019

    Shankar Roddam

    Chief Operating Officer  (Director de operaciones)

    Shankar es el C.O.O, responsable de Ventas, Marketing, Ingeniería y Entrega. Aporta cerca de dos décadas y media de experiencia en Telecomunicaciones, Cloud y PaaS. Tiene una amplia experiencia internacional y capacidad para escalar negocios en entornos competitivos, particularmente en el espacio SaaS. Shankar se unió a nosotros procedente de Plivo, donde era el Jefe de Crecimiento. Tiene un título en administración de IMDR Pune, con una especialización en ventas y marketing con especialización en sistemas. Es licenciado en Ingeniería Electrónica de Telecomunicaciones y licenciado en Triple Matemática.

  • A rewind of the evolution from 1G to 5G

    A rewind of the evolution from 1G to 5G

    From 1G to 5G

    The journey from 1G to 5G seems to recent and time has really flown. By means of the below blog, I have attempted to provide a quick summary of the journey and how we fared.

    Towards the end, you can also see the revenue impact on a select few Telcos handpicked from across the globe with the evolution of each Generation of Telecom.

    1G Era 1987-1991

    It was PHENOMENAL but was not enough.”

    What Happened Here?

    • Engineer Neil Papworth sent the first SMS on December 3rd, 1992, when he wrote “merry Christmas” on a computer and sent it to the cell phone of Vodafone director Richard Jarvis
    • Inception of AMPS (Advanced Mobile Phone System) technology from the pre-existing IMPS (Improved Mobile Telephone System) for voice transmission.
    • Connectivity established seamless mobile connectivity introducing mobile voice services.
    • 1G Introduced Analog voice.

    What went wrong?

    • Poor voice quality
    • Poor battery life
    • Large phone size
    • No security
    • Limited capacity
    • Poor reliability

    The Revenue Impact:

    Since the call rates were too high & the users too less, this was only the beginning of the Telecom revolution and at this point, service providers were focused on technological strides as success stories over revenue generation or acquiring subscriber base. This was essential for the operators as it defined their level of readiness to capture the market faster and better in the coming days.

    2G Era 1991-2001:

    “A revolutionary milestone in telecommunication sector”

    What Happened here:

    • 2G: First Wireless digital transmission came with 2G in 1991.
    • GSM – Global Systems for Mobile Communication enabled Data transfer on top of voice at a speed of 30-35 kbps (A joke in modern telecommunication terms).
    • 2G was developed, primarily, to transfer voice, fax, MMS and SMS services.
    • By use of digital voice compression, the TDMA (Time Division Multiple Access) standards supported three times as many voice channels in the same bandwidth as the old analog systems.
    • The ‘E’ & ‘G’ Symbols on the mobile network were seen first during the 2G era.
    • Data was responsible for constant spike in revenues in telecom operators in addition to the voice revenues. 40% of the revenues were collected for Data.
    • 2.5G saw the introduction of GPRS as enhanced Data services. GPRS can be viewed as a boosted data service for GSM users, but using packet switching and multiplexing techniques. The maximum transfer speed that can be reached via GPRS is approximately 170 Kbps.
    • 2.75G saw the entry of EDGE (Enhanced Data rates for GSM Evolution) technology.
    • Data transmission rate saw 4X increase from 170kbps to 500kbps (practical application). In theory it was said to be 1mbps.
    • EDGE transferred data in fewer seconds if we compare it with GPRS Technology. For example, a typical text file of 40KB was transferred in only 2 seconds as compared to the transfer from GPRS technology, which was 6 seconds.

    What went wrong?

    • Required strong digital signals to help mobile phones work. If there was no network coverage, digital signals weakened.
    • Systems were unable to handle complex data like videos.
    • As the generation moved towards 3G, the user requirement was too complex for 2G to satisfy.

    The Revenue Impact:

    While the biggest highlight of the era may have been the introduction of data transfer capabilities on a mobile device, the maximum revenue impact seems to be created by SMS services. Telecom operators across the globe saw multi-fold increase in their revenue in this period, with some operators reporting 5X growth.

    3G Era 2001-2009

    Showed us the unending potential of Data yet did not fulfil its own potential”

    What Happened Here?

    • 3G network was introduced in 1998, we saw its establishment in the early 2000s.
    • The max speed of 3G was estimated to be around 2 Mbps for stationary devices and 384 Kbps in mobile phones. The theoretical max speed was 21.6 Mbps.
    • It was based on CDMA2000 (Code Division Multiple Access) & EDGE technologies. (EDGE was superior enough to support 3G on its own).
    • 3G introduced media streaming.
    • Data in 3G was broken down into small pieces or packets and then sent to the destination, unlike 2G which used circuit switching.
      • This was revolutionary as users paid only for the data they spent rather than the time spent online.
    • “Data is money” probably started its inception in the mid-2000s as there was a surge in data utilization by consumers.
    • Multimedia, navigation, mobile apps, browsers, conference calls, mobile TV all saw their inception in the early 3G era.
    • 5G was conceptualized and released with HSPA (High Speed Packet Access) marking the iconic ‘H’ symbol on the mobile network.
    • It was all about data in the 3.5G. Data transmission rates went up to 14mbps
    • Saw the release of HSPA+ or as we know it ‘H+’ symbol on the network.
    • Data speeds went up even further with max speed of 42mbps
    • Although 3G did not see operators exponentially increase revenue as the 2G era, tier 1 operators saw significant growth as Data consumption increased.

    What Went Wrong?

    • Messy Architecture
    • Demanded 3G compatible handsets
    • Cost of upgrading to 3G device was too high
    • Power consumption was high

    The Revenue Impact:

    During the mid-2000s towards the dawn of 4G, operators focused on increasing their subscriber base. From 2002 to 2009, they saw an increase of ~4.1Bn. But since data dominated over calls, the spike in revenue was not satisfactory. This period turned out to be a huge revenue booster for device manufacturers as the need to have a 3G compatible device/handset became a necessity as it enabled the transformation of phones into smart phones.

    4G Era 2010-2019:

    “4G introduced us to a faster world with a greater Data capacity”

    What Happened Here?

    • 4G saw an overlap of itself with the 3G as in 2008, 4G technology started to roll out but had issues to commercially announce the then communication system as 4G due to minimum standard requirements which were not fulfilled.
    • The speed of 3G quickly became insufficient as technology & smartphones evolved resulting in heavier files and bulkier data flows.
    • It provided a quality that enriched user experience with advancedgaming services, HD mobile TV, Video Conferencing, 3D TV, IP telephony and other services that demand higher speeds.
    • With the implementation of 4G, some 3G features are removed, such as the radio spectrum technology.
    • A term MAGIC is used to explain the 4G technology.
      • M – Mobile multimedia
      • A – Anytime Anywhere.
      • G – Global mobility support
      • I – Integrated wireless solution
      • C – Customized Personal Service
    • 4G LTE (Long Term Evolution) was a complete redesign and simplification of 3G network architecture, resulting in a significant reduction in transfer latency and thus, increasing efficiency and speeds on the network.
    • Users encountered a problem in accessing data while on a voice call with the 4G LTE, hence the inception of 4G VoLTE which simply meant voice over LTE enabling users to access 4G data and still be able to make calls.
    • 4G carries 3X the data 3G UMTS (Universal Mobile Telecommunications System) carried and 6X the data 2G GSM network carried.
    • 4G bandwidth is 200 Mbps, which meant that one could download a full-length movie in under 10 minutes!

    What Went Wrong?

    • 4G LTE network needs complex hardware
    • 4G technology use many antennae & transmitters resulting in poor battery life.
    • In areas without 4G coverage, consumers downgraded to 3G while still paying the cost of 4G.
    • Higher Data consumption

    The Revenue Impact:

    In 2018, almost 300 million people connected to mobile internet for the first time, bringing the total connected population to more than 3.5 billion people globally. Revenues did not see a drastic increase for the operators especially in the tier 2 & 3 segments, as consumers demanded better connectivity, greater capacity & lower latency. This could only be afforded by the tier 1 operators, who could simply afford splurging on improving their network.

    5G Era 2019 and beyond:

    “5G is more than a generation, it is a promise to wonderland”

    • 5G looks at us with a new experience in faster data rates, higher connection density, much lower latency, among other improvements.
    • 5G is not an upgrade to 4G, but is in a league of its own, because it provides us the ability to connect thousands of devices at once giving the user the true sense of ‘real-time’ experience.
    • This means the computing & processing can move to cloud and resulting in smaller IoT devices, reducing the cost of manufacturing & maintenance by optimizing network for the telecom operator.
    • IoT will mean a lot different with the growth of 5G, as self-driving cars may yet become a reality even in India.
    • Since increasing subscriber base in tier 1 cities is no longer an enticing prospect for Telcos, they will look at generating new streams of revenue with the maturity of MU-MIMO and achieving data speeds of up to 35Gbps.
    • 5Gtechnology may use a variety of spectrum bands, including millimetre wave (mmWave) radio spectrum, which can carry very large amounts of data a short distance.
    • 5G mobile technology can usher in new immersive experiences such as VR and AR with faster, more uniform data rates, lower latency, and lower cost-per-bit.
    • 5Gcan enable new services that can transform industries with ultra-reliable, available, low-latency links like remote control of critical infrastructure, vehicles, and medical procedures.
    • Here are some revolutionary use cases 5G will bring in:
      • Fuelling precision agriculture — even the cotton found in a simple dress uses 5G.
      • Enabling reliable wireless IoT connectivity at transport hubs
      • Essential to the future autonomous vehicles with V2X & smart logistics within our grasp.
      • For closer collaborations at the workplace using real time insights & XRs.
      • Bringing immersive, virtual customized shopping experiences anywhere to the consumer.
      • Driving the next industrial revolution with flexible manufacturing with XR guided execution, smart surveillance, real time supply chain visibility using blockchain & predictive maintenance.
      • With real-time asset tracking and efficient delivery using drones.

    The Revenue Impact:

    As per Qualcomm, 5G will extend its arms out into the enterprise and will see a massive growth. 5G is driving global growth.

    • $13.2 Trillion dollars of global economic output
    • 22.3 Million new jobs create
    • $2.1 Trillion dollars in GDP growth

    Penetration into OEMs, operators, content creators, app developers, and consumers) could alone support up to 22.3 million jobs, or more than one job for every person in Beijing, China.

    Here is a revenue gradient chart for Tier 1, Tier 2 & Tier 3 operators for comparison.

    Revenue value depicted in USD $ Million

    References:

    https://www.statista.com/statistics/226065/global-mobile-subscriber-forecast/

    https://www.sciencedirect.com/topics/engineering/advanced-mobile-phone-system

    https://mse238blog.stanford.edu/2017/07/ssound/1g-2g-5g-the-evolution-of-the-gs/

    https://www.gsma.com/aboutus/history

    https://www.itu.int/en/ITU-D/Documents/WTDC_1994_FINAL_REPORT.PDF

    https://www.itu.int/ITU-D/ict/publications/wtdr_99/material/wtdr99s.pdf

    https://www.itu.int/dms_pub/itu-d/opb/ind/D-IND-WTDR-2006-SUM-PDF-E.pdf

    https://www.qualcomm.com/media/documents/files/download-the-evolution-of-mobile-technologies-1g-to-2g-to-3g-to-4g-lte-qualcomm.pdf

    https://www.qualcomm.com/invention/5g/economy

    https://www.qualcomm.com/invention/5g/what-is-5g

    https://www.igi-global.com/chapter/evolution-technologies-standards-deployment-networks/17444

    http://protei.me/blog/telecom-news/the-mobile-wireless-communication-technology-journey/

    Official Annual Revenue Reports:

    Verizon: 1993-2019
    Telstra: 1993-2019
    Sprint: 1993-2019
    Batelco: 1993-2019
    Tigo: 1993-2019

  • Thoughts from the trenches

    Thoughts from the trenches

    [vc_row][vc_column][vc_column_text]It is just another usual day for the telcos. The industry has weathering so many metaphorical storms for so long, that resilience has become its permanent virtue.

    Over the last 45-60 days, we have all seen numerous research reports and thought papers talking about how the COVID-19 crisis has changed the world, and what it means for telecom operators. This is perhaps one of those rare instances when every industry is trying to draw inferences, make forecasts, finetune strategies and prepare for weathering the storm. Like all other businesses, we too made diligent notes, brainstormed with our brightest minds, and came out with sophisticated presentations on what this situation means for our customers, and how we can add value. However, we did one additional thing. Instead of going by just the reports and studies that were published online, we decided to take firsthand inputs from our customers, and truly understand what the impact means to them. So, we interviewed a dozen or more of our customers, and here are our top 10 takeaways.

    And oh! Just to make sure this doesn’t end up being yet another strategy-heavy blog on “What COVID-19 means for telcos”, we have tried to keep it light. Because, these are observations based on real conversations beyond PowerPoint slides and Excel sheets.[/vc_column_text][vc_row_inner][vc_column_inner width=”1/2″][vc_column_text]1. Capacity is a problem, but addition is not easy

    It is true. People are now dependent on connectivity more than ever. This means, more load on the network, demanding capacity expansion to service existing customers. The only problem is, given the circumstances, adding new capacity by way of additional infrastructure isn’t an easy option. Operators may have purchased infrastructure prior to the lockdown, but with the lack of resources to deploy these on field, capacity addition is not easy. Reallocation of capacity is one option, but some operators are hesitant to do it, thinking it may have to be soon reversed.[/vc_column_text][/vc_column_inner][vc_column_inner width=”1/2″][vc_single_image image=”23829″ img_size=”full”][/vc_column_inner][/vc_row_inner][vc_row_inner el_class=”planning_5g_wrapper”][vc_column_inner width=”1/2″][vc_single_image image=”23832″ img_size=”350×332″][/vc_column_inner][vc_column_inner width=”1/2″][vc_column_text]2. Enterprise focus shifting from latency to bandwidth

    Enterprise business for telcos has always been a different ball game. The customer needs are different, the pricing strategy is different, and even the landscape of offerings is different. The recent report from GSMA highlighted that Enterprise business might finally be able to overtake consumer business for telcos in the next 1-2 years (a big part of this attributed to 5G), and that was good news. The low latency of 5G was meant to redefine the term ‘real-time’, opening up a host of new possibilities for businesses. Enter COVID-19, and all of this is set to change. Well, not all, but at least the low latency part. The crisis has made businesses rethink what ‘essential’ means, and it appears like latency is not as essential as bandwidth and availability for enterprises.[/vc_column_text][/vc_column_inner][/vc_row_inner][vc_row_inner][vc_column_inner width=”1/2″][vc_column_text]3. Consumption is increasing, but revenues aren’t

    This one almost seems borderline unfair but sadly is the reality. With most people working remotely, the dependence on data and connectivity has risen multi-fold for the average consumer. Their usage patterns have also show severe spikes, with some of our customers reporting up to 40% increase in 2 weeks. The usage of fixed broadband has also significantly increased due to the large number of video conferences, virtual events and webinars happening. Even for leisure, the only sources of entertainment seem to be the likes of Netflix, Amazon Prime, Hulu etc., all of which are bandwidth heavy. Furthermore, as a social responsibility, many operators are partnering with governments to roll out online learning programs, which further increase data consumption. While this kind of increase in usage would have been generally seen as good news, in the current circumstances it is not the case. The general economy is not conducive for price-hikes of packages, and operators will struggle to justify it. While operators will try to roll out innovative bundles, the impact of these efforts are yet to be seen.[/vc_column_text][/vc_column_inner][vc_column_inner width=”1/2″][vc_single_image image=”23834″ img_size=”full”][/vc_column_inner][/vc_row_inner][vc_row_inner][vc_column_inner width=”1/2″][vc_column_text]4. Cost pressures to continue till the end of the year

    Barring a handful of industries, this statement is probably applicable to all other businesses for the next few months. While the telecom industry is fairly resilient to the COVID-19 crisis, it is not spared of uncertainty. And, what do we do in such times? We hold on to what we have, and make sure every Dollar spent is extremely thought through. Over the next few months, some reductions in Opex will be inevitable for telcos. Further, Opex optimization might become a more stringent practice, leading to increased dependence on automation.[/vc_column_text][/vc_column_inner][vc_column_inner width=”1/2″][vc_single_image image=”23835″ img_size=”full”][/vc_column_inner][/vc_row_inner][vc_row_inner el_class=”planning_5g_wrapper”][vc_column_inner width=”1/2″][vc_single_image image=”23840″ img_size=”full”][/vc_column_inner][vc_column_inner width=”1/2″][vc_column_text]5. Capex remains same, but priorities change

    An interesting observation that came out from multiple operators is that their Capex spends may largely remain the same, with minor reductions if any. At first, this might seem surprising, but given the fact that lockdown restrictions are beginning to ease out, telcos are looking at ways to meet the increasing demand from customers. The priorities of Capex however seem to be changing from value-add (like 5G) to essentials (capacity enhancement, higher availability, etc.). An important point that became evident is that Capex allocations are now being reassessed and restructured to align with corporate goals in light of the COVID-19 crisis.[/vc_column_text][/vc_column_inner][/vc_row_inner][vc_row_inner][vc_column_inner width=”1/2″][vc_column_text]6. Accelerated Digital Transformation due to COVID

    Over the years, there have been several continued efforts on pushing for digital transformation across telcos, but it appears like COVID-19 has single-handedly acted as the tipping point. Customer expectations have changed permanently, and consumers will now seek a richer omni-channel digital experience and demand higher level of self-service. Be it the use of intelligent algorithms to aid call center agents or the creation of digital stores, telcos are forced to think digital in every aspect. An interesting outcome of this transformation will be the significant increase in the emphasis on trust, because of multiple unknown entities operating behind ‘digital curtains’.[/vc_column_text][/vc_column_inner][vc_column_inner width=”1/2″][vc_single_image image=”23841″ img_size=”full”][/vc_column_inner][/vc_row_inner][vc_row_inner el_class=”planning_5g_wrapper”][vc_column_inner width=”1/2″][vc_single_image image=”23843″ img_size=”full”][/vc_column_inner][vc_column_inner width=”1/2″][vc_column_text]7. 5G rollouts will slow down

    Last year’s MWC was a 5G jungle. Anyone who had been there would come back believing that within a couple of years, we would have doctors performing remote surgeries, autonomous cars becoming common, industrial automation going in full throttle and many more things. However, if you haven’t realized it yet, here is some bad news for those. 5G rollouts will slow down. The reasons are multi-fold, starting with the realignment of Capex priorities, to inability to support additional buildout, the pause in the production of 5G handsets, and the lack of complete clarity on some of the standards. While 5G and related services will eventually benefit from the increased adoption of digital services, in the short term 5G deployments are expected to slow down.[/vc_column_text][/vc_column_inner][/vc_row_inner][vc_row_inner][vc_column_inner width=”1/2″][vc_column_text]8. Functions are keen to utilize allotted budgets

    While newer budgets are not being allocated, or are being scrutinized before approval, functional heads of various departments seem to have the ability to make use of already allotted budgets. These are budgets allotted for strong use cases that remain important and are expected to contribute to the corporate objectives. With the looming threat of budget cuts and cost optimization, there is a sense of urgency to take decisions and move forward on putting some of the already allotted budgets to use. After all, no one wants the already allotted budgets to be rolled back, because they were unutilized, right?[/vc_column_text][/vc_column_inner][vc_column_inner width=”1/2″][vc_single_image image=”23844″ img_size=”full”][/vc_column_inner][/vc_row_inner][vc_row_inner el_class=”planning_5g_wrapper”][vc_column_inner width=”1/2″][vc_single_image image=”23845″ img_size=”full”][/vc_column_inner][vc_column_inner width=”1/2″][vc_column_text]9. Telcos looking at vendors that can think ‘beyond normal’

    They say necessity is the mother of invention. A corollary of this could be to say that crisis is the mother of innovation. It is in situations like the current one that businesses are required to bring innovation to the forefront, in order to survive and thrive. While telcos are certainly on the right track to innovate and improvise, their strength lies in carrying out their business in the best way possible. This is where they expect vendors and partners to bring in interesting perspectives and value propositions to help them do things that are outside the spectrum of normal. So, a clear advise from most telcos to partners like ourselves is “Do not engage with us if you are only talking about what we are doing today. Come to us if you have propositions that differentiate us.”[/vc_column_text][/vc_column_inner][/vc_row_inner][vc_row_inner][vc_column_inner width=”1/2″][vc_column_text]10. New business models are being explored and adopted

    Well, this point may not be a direct impact of COVID-19, but it is certainly happening. The reasons could be multiple, ranging from digital disruption, to OTT services, to non-traditional competition, but the current situation seems to have brought in an urgency to reimagine business models for telcos. At a time when connectivity is of utmost importance, if telcos remain simply as network providers, they’re losing out on tremendous opportunities that will be picked up by hyperscalers like Amazon and Google. The need of the hour – think like disruptors, get into spaces that were earlier ignored, and hack your way into a growth path. Case in point: JioMart[/vc_column_text][/vc_column_inner][vc_column_inner width=”1/2″][vc_single_image image=”23853″ img_size=”full”][/vc_column_inner][/vc_row_inner][vc_row_inner][vc_column_inner][vc_column_text]So, there you have it, folks. Those were the 10 key observations from our recent conversations with customers. If you are in the telecom space, let me know your thoughts in the comments section below, and add any points that I might have missed in this blog.[/vc_column_text][/vc_column_inner][/vc_row_inner][/vc_column][/vc_row]