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Report ID: AG0024
Pages: 168
Base Year: 2023
Format: PDF
Historical Date: 2019-2022
MARKET SCOPE:
The global smart crop monitoring market is projected to grow significantly, registering a CAGR of 17.2% during the forecast period (2024 – 2032).
Smart crop monitoring involves the application of advanced technologies, including satellite imagery, drones, sensors, and data analytics, to precisely and efficiently monitor and manage agricultural crops. This encompasses real-time data collection, analysis, and interpretation to optimize various farming aspects, such as irrigation, pest control, fertilizer application, and overall crop health. Monitoring crop health empowers farmers to make informed decisions, boost productivity, conserve resources, and embrace sustainable agricultural practices, resulting in enhanced yields and reduced environmental impact. According to the study report of USDA, about 1 billion pounds of conventional pesticides are annually employed in the U.S. to combat weeds, insects, and other pests. Despite the substantial use of pesticides and herbicides, agricultural production has experienced only marginal growth. A significant portion of these chemicals is wasted due to uniform spraying methods. The implementation of smart crop scouting and smart spraying presents significant potential for input optimization and improved crop yields. Precise application of inputs such as pesticides and herbicides allow farmers to use them efficiently and effectively, reducing waste and potentially increasing crop yields.
MARKET OVERVIEW:
Driver: The increase in usage of AI and IoT-based crop monitoring devices is propelling the industry expansion.
The growth of the crop monitoring market is significantly propelled by the emergence of IoT and AI-based devices. The connected environment, coupled with remote monitoring capabilities, has led to increased adoption of these devices. The utilization of smart sensors is becoming prevalent in the agriculture sector, driven by advancements in sensor technology and their increased affordability. Companies like Prospera Technologies (Israel), Blue River Technology (US), Bosch (Germany), CropIn Technology (India), and Sigfox (France) have made a substantial impact on the market by providing advanced technologies such as AI and IoT for enhanced crop monitoring and management. The market is predominantly fueled by the escalating demand for food driven by the expanding global population. The utilization of Internet of Things (IoT) and Artificial Intelligence technology in the agriculture sector is a key factor propelling the crop monitoring market. The increasing prevalence of smartphones among farmers, coupled with wider internet accessibility, is contributing to the heightened adoption of crop monitoring tools. There is an anticipated surge in the demand for IoT-based technology in the agriculture sector in the coming years as farmers express a growing interest in precision farming to reduce operational costs and enhance agricultural productivity.
Opportunities: Increasing concentration on sustainability is expected to provide lucrative opportunity for the market growth during the forecast period.
The increasing global emphasis on sustainability creates a significant opportunity for the smart crop monitoring market and its solution providers. With growing concerns about environmental impact and the need for resource conservation, there is a rising demand for precision agriculture technologies that optimize resource usage and minimize ecological footprint. Equipped with advanced sensors, IoT devices, and data analytics, smart crop monitoring allows farmers to make informed, data-driven decisions. Through precise monitoring of crops, water usage, and pesticide application, farmers can minimize wastage, conserve resources, and reduce the overall environmental impact of their farming practices. For providers of smart crop monitoring solutions, this trend translates into a expanding market for their technologies and services. Farmers and agricultural enterprises are actively seeking sustainable practices and technologies that align with environmental regulations and consumer preferences for eco-friendly products. Smart crop monitoring solutions not only improve crop yields and quality but also promote sustainable farming practices. Providers offering innovative, eco-conscious solutions tailored to diverse agricultural needs have the opportunity to capitalize on this trend. Emphasizing the environmental benefits and long-term sustainability of their offerings can attract environmentally conscious farmers, fostering the adoption of smart crop monitoring technologies in the agriculture sector.
COVID IMPACT:
The major players in the global smart crop monitoring market, including Topcon Corporation, Trimble, The Climate Corporation, Yara International, and CropX Technologies, are anticipated to experience a short-term impact from COVID-19 due to disruptions in the supply chain, leading to shortages of devices and equipment. However, advancements in remote sensing technology have enhanced farm operation management and are expected to be less affected by the pandemic. There is a likelihood of significant demand for remote sensing and imagery in the post-COVID-19 world. Companies on the equipment side anticipate sluggish growth in the first three quarters of FY 20-21, with potential growth in the final quarter. Leading original equipment manufacturers (OEMs) in agriculture, such as John Deere, AGCO, and CNH, have adjusted their sales guidance for the first half of FY 20-21, reducing it by 10%-20% due to disruptions in the supply chain. However, the demand for connected agriculture and telematics has shown promising growth even during the pandemic. COVID-19 is expected to accelerate the adoption of IoT-based devices in agriculture farms worldwide to optimize farm operations with reduced labor requirements in the field. The number of connected agricultural devices is anticipated to experience promising growth in the medium to long term. The crop monitoring market is projected to recover from the last quarter of 2020 onwards, with the demand for remote sensing and imagery witnessing significant growth.
SEGMENTATION ANALYSIS:
The crop protection segment is anticipated to grow significantly during the forecast period.
Crop health management services involve adjusting the quantity of crop protection chemicals and fertilizers applied to a specific area to optimize results, leading to significant cost savings and improved yields. According to a study by the UN Food and Agriculture Organization, farmers experience annual losses of approximately 30% to 40% of their produce due to crop diseases and pests. Hence, safeguarding crops from insects, rodents, birds, bacteria, and diseases is crucial for enhancing yield, crop quality, and pricing, while simultaneously reducing wastage. An essential component of soil monitoring involves measuring soil properties by detecting various frequencies of light reflectance, such as mid-infrared, near-infrared, and polarized light spectrums. The soil monitoring concept has gained traction with the availability and introduction of a diverse range of soil monitoring systems, including sensors tailored to meet crop requirements. For instance, Sensoterra, a company specializing in sensor development, is poised to unveil new wireless soil moisture sensors in potential regions like North America, Europe, and Asia-Pacific.
REGIONAL ANALYSIS:
The North American region is set to witness significant growth during the forecast period.
In the region, the market for digital and smart agricultural practices is consistently progressing. The significant growth can be mainly attributed to the increased adoption of technology-driven procedures, a focus on alternative farming methods, and the potential integration of high-investment equipment in the agricultural sector. The implementation of smart crop monitoring has enhanced the production process, presenting an ideal solution to address the region’s food demand. North America is anticipated to lead the global market due to technological advancements. Furthermore, numerous prominent providers of smart crop monitoring, including Robert Bosch GmbH, Microsoft Corporation, and IBM Corporation, are operational in the region. Consequently, numerous major manufacturers of smart crop monitoring equipment and systems are developing advanced solutions to establish a strong foothold in this region.
COMPETITIVE ANALYSIS
The global smart crop monitoring market is reasonably competitive with mergers, acquisitions, and product launches. See some of the major key players in the market.
Scope of the Report
** In – depth qualitative analysis will be provided in the final report subject to market
Primary and Secondary Research
In order to understand the market in detail we conduct primary and secondary research. We collect as much information as we can from the market experts through primary research. We contact the experts from both demand and supply side and conduct interviews to understand the actual market scenario. In secondary research, we study and gather the data from various secondary sources such as company annual reports, press releases, whitepapers, paid databases, journals, and many other online sources. With the help of the primary interviews, we validate the data collected from secondary sources and get a deep understanding on the subject matter. Post this our team uses statistical tools to analyses the data to arrive at a conclusion and draft it in presentable manner.
Market Size Estimations
Understanding and presenting the data collected is a crucial task. Market sizing is a critical part of the data analysis and this task is performed by using Top-down and bottom-up approaches. In this process, we place different data points, market information and industry trends at a suitable space. This placement helps us presume the estimated & forecast values for coming few years. We use several mathematical and statistical models to estimate the market sizes of different countries and segments. Each of this is further added up to outline the total market. These approaches are individually done on regional/country and segment level.
Data Triangulation
As we arrive at the total market sizes, the market is again broken down into segments and subsegments. This process is called as data triangulation and is implementable wherever applicable. This step not only helps us conclude the overall market engineering process, but also gives an assurance on accuracy of the data generated. The data is triangulated based on studying the market trends, various growth factors, and aspects of both demand and supply side.