市場調查報告書
商品編碼
1587667
到 2030 年的後量子密碼市場預測:按解決方案、服務、組織規模、安全類型、最終用戶和地區進行的全球分析Post-Quantum Cryptography Market Forecasts to 2030 - Global Analysis By Solution, Service, Organization Size, Security Type, End User and By Geography |
根據 Stratistics MRC 的數據,2024 年全球後量子密碼市場規模將達到 3.025 億美元,預計到 2030 年將達到 29.539 億美元,在預測期內複合年成長率為 46.2%。
後量子密碼學 (PQC) 是密碼學的一部分,專注於開發抵抗量子電腦攻擊的加密演算法。雖然 RSA 和 ECC 等傳統加密方案很容易被量子演算法(例如 Scholl 演算法)破解,但 PQC 使用基於格、基於哈希和基於程式碼的系統等量子攻擊,使用被認為具有抵抗力的數學問題。
發展量子計算
RSA 和 ECC 等量子計算方法的進步很容易受到 Scholl 等量子演算法的影響。隨著量子電腦變得更加強大和可用,公司越來越願意投資 PQC 解決方案,以保護敏感資料免受未來的威脅。這種緊迫性正在推動抗量子演算法的研究和開發,並促進學術界和工業界之間的合作。因此,量子時代對安全通訊和資料保護的需求正在推動 PQC 市場的成長。
實施成本高
開發和整合 PQC 解決方案通常需要在研究、硬體和軟體方面進行大量投資,這可能對中小型企業構成障礙。此外,使現有系統適應 PQC 演算法需要進行大量升級和檢修,成本可能很高。組織也可能面臨培養人才來處理這些先進加密解決方案的挑戰。因此,高昂的經濟負擔可能會減緩 PQC 在各個領域的整體採用,並限制市場成長。
金融和國防領域的需求增加
金融和國防領域對強大的安全解決方案的需求不斷增加,需要保護敏感的客戶資料和交易免受潛在的量子攻擊,從而推動了對先進加密方法的投資。同樣,面臨國家安全和敏感通訊威脅的國防部門正在優先考慮 PQC,以保護關鍵資訊免受未來量子運算能力的影響。這兩個行業都認知到迫切需要實施抗量子密碼學,從而促進 PQC 技術的發展和創新,並培育安全的數位環境。
潛在的技術限制
高實施成本可能會限制從遺留系統過渡到先進 PQC 解決方案的可用資金量,從而延遲採用。這種財務障礙也會限制對必要基礎設施、技術人員和持續維護的投資。此外,如果公司認為成本超過潛在收益,他們可能不願意考慮或開發創新應用程式。因此,不願投資會阻礙進步,並使組織容易受到新威脅和技術限制的影響。
COVID-19 的影響
COVID-19 大流行加速了數位轉型,並增加了對包括後量子密碼學在內的強大網路安全措施的需求。隨著企業轉向遠距工作和數位服務,對資料安全的擔憂加劇,暴露了現有加密方法的漏洞。這種緊迫性推動了 PQC 在研發方面的投資,因為各公司都尋求讓其系統在未來免受潛在的量子威脅。此外,疫情凸顯了對安全通訊管道的需求,並進一步提高了人們對保護敏感資訊的先進加密解決方案的興趣。
預計醫療領域將在預測期內成為最大的領域
由於強調安全資料保護的需求,醫療保健領域預計將出現良好的成長。隨著醫療機構擴大採用數位病歷、遠端醫療和物聯網設備,保護病患資料免受網路威脅非常重要。量子電腦打破傳統加密方法的潛力引起了人們對病患隱私和 HIPAA 等法規合規性的擔憂。因此,醫療保健提供者正在投資 PQC 解決方案,以確保敏感資訊的機密性和完整性,從而推動市場需求和成長。
零售和電子商務領域預計在預測期內複合年成長率最高
由於需要增強資料安全性,零售和電子商務領域預計在預測期內複合年成長率最高。隨著網路購物的成長,保護客戶資料、付款資訊和交易詳細資訊變得至關重要。零售商擴大採用 PQC 解決方案來防範量子威脅並確保遵守資料保護條例。此外,數位錢包和線上付款系統的興起增加了對安全加密方法的需求。對安全性的日益關注,加上雲端服務的激增,正在推動對 PQC 技術的進一步投資,以減輕與量子運算相關的潛在風險。
由於數位化和網路安全意識的提高,預計亞太地區在預測期內將佔據最大的市場佔有率。政府和企業正在優先開發抗量子密碼技術,以保護敏感資料免受潛在的量子攻擊。金融、通訊和醫療保健等主要行業正在投資 PQC 以加強其安全框架。此外,學術機構和科技公司之間的合作正在促進抗量子演算法的研究和創新。隨著該地區成為技術進步的中心,對 PQC 解決方案的需求預計將大幅成長。
由於迫切需要保護敏感資料免受潛在的量子攻擊,預計北美在預測期內將經歷最高的複合年成長率。政府機構和私營部門的大量投資正在推動 PQC 解決方案的大力研究和發展。該地區擁有強大的技術基礎設施,促進了領先的網路安全公司和學術機構之間的創新和合作。此外,隨著人們對量子運算影響的認知不斷增強,企業正在採用 PQC 策略來確保長期資料保護並遵守不斷發展的安全標準。
According to Stratistics MRC, the Global Post-Quantum Cryptography (PQC) Market is accounted for $302.5 million in 2024 and is expected to reach $2953.9 million by 2030 growing at a CAGR of 46.2% during the forecast period. Post-Quantum Cryptography (PQC) is a branch of cryptography focused on developing encryption algorithms resilient against attacks by quantum computers. Unlike traditional cryptographic methods like RSA and ECC, which could be easily broken by quantum algorithms (such as Shor's algorithm), PQC uses mathematical problems believed to be resistant to quantum attacks, like lattice-based, hash-based, and code-based systems.
Growing quantum computing advancements
Growing advancements in quantum computing methods, such as RSA and ECC, can be easily compromised by quantum algorithms like Shor's. As quantum computers become more powerful and accessible, organizations are increasingly motivated to invest in PQC solutions to safeguard sensitive data against future threats. This urgency drives research and development in quantum-resistant algorithms, fostering collaboration between academia and industry. Consequently, the need for secure communication and data protection in a quantum era fuels the growth of the PQC market.
High implementation costs
Developing and integrating PQC solutions often requires substantial investment in research, hardware, and software, which can be a barrier for small to medium-sized enterprises. Furthermore, existing systems may need extensive upgrades or overhauls to accommodate PQC algorithms, adding to costs. Organizations may also face challenges in training personnel to handle these advanced cryptographic solutions. As a result, the high financial burden can slow down the overall adoption of PQC in various sectors, limiting market growth.
Increasing demand in financial and defense sectors
The increasing demand for robust security solutions in the financial and defense sectors, the need to protect sensitive customer data and transactions from potential quantum attacks drives investment in advanced cryptographic methods. Similarly, the defense sector, facing threats to national security and sensitive communications, prioritizes PQC to safeguard critical information against future quantum computing capabilities. As both sectors recognize the urgency of implementing quantum-resistant encryption, they contribute to the growth and innovation of PQC technologies, fostering a secure digital environment.
Potential technological limitations
High implementation costs can struggle to allocate sufficient budgets for transitioning from traditional systems to advanced PQC solutions, resulting in delayed adoption. This financial barrier can also limit investments in necessary infrastructure, skilled personnel, and ongoing maintenance. Moreover, if businesses perceive the costs as outweighing potential benefits, they may hesitate to explore or develop innovative applications. Consequently, this reluctance to invest can stifle advancements, keeping organizations vulnerable to emerging threats and technological limitations.
Covid-19 Impact
The COVID-19 pandemic accelerated digital transformation increased the demand for robust cybersecurity measures, including Post-Quantum Cryptography (PQC). As businesses shifted to remote work and digital services, concerns over data security intensified, highlighting vulnerabilities in existing encryption methods. This urgency propelled investments in PQC research and development, as organizations sought to future-proof their systems against potential quantum threats. Additionally, the pandemic emphasized the need for secure communication channels, further driving interest in advanced cryptographic solutions to safeguard sensitive information.
The healthcare segment is expected to be the largest during the forecast period
The healthcare segment is estimated to have a lucrative growth, due to emphasizing the need for secure data protection. As healthcare organizations increasingly adopt digital health records, telemedicine, and IoT devices, safeguarding patient data from cyber threats becomes critical. The potential of quantum computers to breach traditional encryption methods raises concerns about patient privacy and compliance with regulations like HIPAA. Consequently, healthcare providers are investing in PQC solutions to ensure the confidentiality and integrity of sensitive information, driving demand and growth of the market.
The retail & ecommerce segment is expected to have the highest CAGR during the forecast period
The retail & ecommerce segment is anticipated to witness the highest CAGR growth during the forecast period, due to the need for enhanced data security. As online shopping expands, protecting customer data, payment information, and transaction details becomes crucial. Retailers increasingly adopt PQC solutions to safeguard against quantum threats, ensuring compliance with data protection regulations. Additionally, the rise of digital wallets and online payment systems amplifies the demand for secure encryption methods. This heightened focus on security, coupled with the growing adoption of cloud services, further fuels investments in PQC technologies to mitigate potential risks associated with quantum computing.
Asia Pacific is projected to hold the largest market share during the forecast period due to increased digitalization and cybersecurity awareness. Governments and enterprises are prioritizing the development of quantum-resistant encryption to safeguard sensitive data against potential quantum attacks. Key industries such as finance, telecommunications, and healthcare are investing in PQC to enhance their security frameworks. Additionally, collaborations between academic institutions and technology firms are fostering research and innovation in quantum-resistant algorithms. As the region becomes a hub for technological advancements, the demand for PQC solutions is expected to grow significantly.
North America is projected to have the highest CAGR over the forecast period, owing to the urgency to safeguard sensitive data against potential quantum attacks. With significant investments from government agencies and private sectors, there's a strong push for research and development in PQC solutions. The region benefits from a robust technology infrastructure, fostering innovation and collaboration among leading cybersecurity firms and academic institutions. Additionally, rising awareness of quantum computing's implications encourages businesses to adopt PQC strategies, ensuring long-term data protection and compliance with evolving security standards.
Key players in the market
Some of the key players profiled in the Post-Quantum Cryptography (PQC) Market include Google, IBM, Microsoft, NXP Semiconductors, Intel Corporation, Huawei Technologies Co., Ltd., Cisco Systems, Inc., Infineon Technologies AG, Amazon Web Services (AWS), Qualcomm, CryptoNext Security, PQShield, Crypto4A Technologies, Thales, ISARA, Post-Quantum, Rambus, Sandbox AQ, Starkware and VMware.
In October 2024, Google launched several new AI features for Google Workspace, designed to enhance productivity and collaboration. These features include improved AI-driven suggestions in Docs and Sheets, making it easier for teams to collaborate in real-time.
In September 2024, Google Cloud has partnered with Sony Interactive Entertainment (SIE) to enhance PlayStation's cloud gaming capabilities. This partnership aims to leverage Google's AI and machine learning technologies to improve game streaming experiences for users.
In August 2024, Google announced a partnership with Shopify to integrate its e-commerce tools more effectively into the Shopify platform. This partnership aims to help retailers reach a wider audience through enhanced advertising solutions and seamless shopping experiences.
Note: Tables for North America, Europe, APAC, South America, and Middle East & Africa Regions are also represented in the same manner as above.